TW201445845A - Parallel discharge regulation device and regulation method thereof - Google Patents
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Abstract
Description
本發明係有關一種電流調節裝置及其調節方法,特別是有關一種並聯式單向電流調節裝置及其調節方法。 The invention relates to a current regulating device and a regulating method thereof, in particular to a parallel unidirectional current regulating device and a regulating method thereof.
現今電能釋放裝置之技術應用十分廣泛,一般而言,電能釋放裝置例如是電池或發電機,而當中的電池是指可將本身儲存的化學能轉成電能的裝置,包含一次電池、二次電池或燃料電池。而發電機是指可將機械能、熱能、光能等各式的能量轉成電能的裝置。 Nowadays, the technical application of the electric energy release device is very wide. Generally speaking, the electric energy release device is, for example, a battery or a generator, and the battery therein refers to a device capable of converting the stored chemical energy into electric energy, including a primary battery and a secondary battery. Or a fuel cell. A generator is a device that converts various types of energy, such as mechanical energy, thermal energy, and light energy, into electrical energy.
電能釋放裝置可提供功率裝置所需電能,其功率裝置之應用領域例如有筆記型電腦、行動電話、個人數位助理以及平板型電腦等可攜式電子裝置,甚至於電動自行車、電動車等電動載具乃至於電力系統。 The power release device can provide power required by the power device, and the application fields of the power device include a portable computer such as a notebook computer, a mobile phone, a personal digital assistant, and a tablet computer, and even an electric bicycle such as an electric bicycle or an electric vehicle. With the power system.
在實際應用上為避免放電電流過大而傷及電能釋放裝置或功率裝置,因此電能釋放裝置需要有過度放電保護的相關機制,依目前現有的技術而言,大多是以持續電流監測或以中斷截止電流的方式來保護電能釋放裝置,避免使用者用不當且過大電流的方式進行放電,然而這樣的使用方式,在電能釋放裝置應用上將造成非預期的斷電異常等問題。 In practical applications, in order to avoid excessive discharge current and damage the power release device or the power device, the power release device needs to have an excessive discharge protection mechanism. According to the current existing technology, most of the current monitoring is continuous current interruption or interruption. The way of current protection protects the power release device from the user's improper and excessive current discharge. However, such a use mode will cause unexpected power failure abnormalities in the application of the power release device.
因此,如何避免電能釋放裝置之放電電流過大而傷及電能釋放裝置或功率裝置,卻又要避免電能釋放裝置造成非預期的斷電異常,即是個重要的課題。 Therefore, how to avoid the excessive discharge current of the electric energy release device and damage the electric energy release device or the power device, but avoid the unintended power failure abnormality caused by the electric energy release device is an important issue.
有鑑於此,本發明係針對上述之問題,本發明提出一種並聯式放電調節裝置及其調節方法,藉此得以解決以上之缺失。 In view of the above, the present invention is directed to the above problems, and the present invention provides a parallel discharge adjusting device and a regulating method thereof, thereby solving the above drawbacks.
本發明之主要目的,係在提供一種並聯式放電調節裝置及其調節方法,其係利用第一放電調節電路及第二放電調節電路分別根據第一預設電流及第二預設電流,進行調節第一電流及第二電流之流量,並使第一電流及第二電流流入功率裝置,藉以維持二電能裝置之額定電流,進而 可避免二電能裝置過度放電,由於本發明之並聯式放電調節裝置不同於過去單以持續電流監測或中斷截止的電池保護方式,因此,本發明在電池的裝置應用上可以避免非預期的斷電異常等問題,藉以增加裝置使用上的可靠性。 The main object of the present invention is to provide a parallel discharge adjusting device and an adjusting method thereof, which are adjusted according to a first preset current and a second preset current by using a first discharge adjusting circuit and a second discharging adjusting circuit, respectively. a flow of the first current and the second current, and causing the first current and the second current to flow into the power device, thereby maintaining a rated current of the two power devices, and further The two electric energy devices can be prevented from being over-discharged. Since the parallel discharge regulating device of the present invention is different from the battery protection method in the past in which continuous current monitoring or interrupt cut-off is performed, the present invention can avoid unintended power-off in the device application of the battery. Problems such as abnormalities, in order to increase the reliability of the use of the device.
本發明之另一目的,係在提供一種並聯式放電調節裝置及其調節方法,其係利用二放電調節電路應用在兩組電能裝置或以上數量以直接並聯供電給功率裝置,因此本發明可適合於具備不同電池芯特性的電池組並聯使用,或是在不同容量的電能裝置之間亦可以並聯在一起使用,或是在不同充電容量狀態的電能裝置或電能裝置可以並聯一起使用。 Another object of the present invention is to provide a parallel discharge regulating device and a regulating method thereof, which are applied to two sets of electric energy devices or more by the two discharge regulating circuits to directly supply power to the power device in parallel, so the present invention can be adapted The battery packs with different battery core characteristics can be used in parallel, or can be used in parallel between different capacity electric energy devices, or the electric energy devices or electric energy devices in different charging capacity states can be used in parallel.
為達上述之目的,本發明揭示一種並聯式放電調節裝置,包含有第一放電調節電路電性連接第一電能裝置及功率裝置,以接收第一電流,且第一放電調節電路可根據第一預設電流,以調節第一電流之流量,並使第一電流流入功率裝置,第二放電調節電路電性連接第二電能裝置及功率裝置,以接收第二電流,且第二放電調節電路可根據第二預設電流,以調節第二電流之流量,並使第二電流流入功率裝置。 In order to achieve the above object, the present invention discloses a parallel discharge adjusting device, including a first discharge adjusting circuit electrically connected to the first power device and the power device to receive the first current, and the first discharging adjusting circuit can be according to the first Presetting a current to adjust a flow of the first current, and causing the first current to flow into the power device, the second discharge adjusting circuit is electrically connected to the second power device and the power device to receive the second current, and the second discharging adjusting circuit is According to the second preset current, the flow of the second current is adjusted, and the second current flows into the power device.
一種放電調節方法,包含有下列步驟,選擇性接收來自二電能裝置之第一電流及第二電流,根據第一預設電流及第二預設電流,以個別調節第一電流及第二電流之流量,並可選擇性調整第一電流及第二電流流入功率裝置。 A discharge adjusting method includes the steps of: selectively receiving a first current and a second current from two power devices, and individually adjusting the first current and the second current according to the first preset current and the second preset current The flow rate and the selective adjustment of the first current and the second current into the power device.
底下藉由具體實施例配合所附的圖式詳加說明,當更容易瞭解本發明之目的、技術內容、特點及其所達成之功效。 The purpose, technical contents, features and effects achieved by the present invention will be more readily understood by the detailed description of the embodiments and the accompanying drawings.
10‧‧‧並聯式放電調節裝置 10‧‧‧Parallel discharge regulator
12‧‧‧第一電能裝置 12‧‧‧First electrical installation
14‧‧‧第二電能裝置 14‧‧‧Second electrical installation
16‧‧‧功率裝置 16‧‧‧Power devices
18‧‧‧第一放電調節電路 18‧‧‧First discharge regulation circuit
20‧‧‧第二放電調節電路 20‧‧‧Second discharge regulation circuit
22‧‧‧第一調節控制器 22‧‧‧First adjustment controller
24‧‧‧第二調節控制器 24‧‧‧Second adjustment controller
P1‧‧‧第一電性接點 P 1 ‧‧‧First electrical contact
P2‧‧‧第二電性接點 P 2 ‧‧‧second electrical contact
P3‧‧‧第三電性接點 P 3 ‧‧‧3rd electrical contact
P4‧‧‧第四電性接點 P 4 ‧‧‧4th electrical contact
S1‧‧‧第一開關 S 1 ‧‧‧first switch
S2‧‧‧第二開關 S 2 ‧‧‧second switch
D1‧‧‧第一二極體 D 1 ‧‧‧First Diode
D2‧‧‧第二二極體 D 2 ‧‧‧Secondary
F1‧‧‧第一順向端 F 1 ‧‧‧first forward end
R1‧‧‧第一逆向端 R 1 ‧‧‧first reverse end
F2‧‧‧第二順向端 F 2 ‧‧‧second cis end
R2‧‧‧第二逆向端 R 2 ‧‧‧second reverse end
L1‧‧‧第一電感 L 1 ‧‧‧first inductance
L2‧‧‧第二電感 L 2 ‧‧‧second inductance
C1‧‧‧第一電容 C 1 ‧‧‧first capacitor
C2‧‧‧第二電容 C 2 ‧‧‧second capacitor
I1‧‧‧第一電流 I 1 ‧‧‧First current
I2‧‧‧第二電流 I 2 ‧‧‧second current
IL1‧‧‧第一洩漏電流 I L1 ‧‧‧First leakage current
IL2‧‧‧第二洩漏電流 I L2 ‧‧‧second leakage current
ID1‧‧‧第一放電電流 I D1 ‧‧‧First discharge current
ID2‧‧‧第二放電電流 I D2 ‧‧‧second discharge current
第1圖係為本發明第一實施例之並聯式放電調節裝置放電示意圖。 Fig. 1 is a schematic view showing the discharge of the parallel discharge adjusting device of the first embodiment of the present invention.
第2圖係為本發明第一實施例之並聯式放電調節裝置電路方塊圖。 Fig. 2 is a block diagram showing the circuit of the parallel discharge adjusting device of the first embodiment of the present invention.
第3圖係為本發明第二實施例之並聯式放電調節裝置電路方塊圖。 Fig. 3 is a block diagram showing the circuit of the parallel discharge adjusting device of the second embodiment of the present invention.
第4圖係為本發明之放電調節方法流程示意圖。 Figure 4 is a schematic flow chart of the discharge regulation method of the present invention.
本發明在此列舉一裝置實施例,參閱第1圖及第2圖,藉此說明本發明第一實施例之並聯式放電調節裝置放電示意圖及電路方塊圖, 如圖所示,本發明揭示一種並聯式放電調節裝置10,電性連接第一電能裝置12、第二電能裝置14及功率裝置16,並聯式放電調節裝置10包含有第一放電調節電路18電性連接第一電能裝置12及功率裝置16,第二放電調節電路20電性連接第二電能裝置14及功率裝置16。第一放電調節電路18可用於接收第一電流I1,並根據第一預設電流,以調節第一電流I1之流量,使第一電流I1流入功率裝置16,第二放電調節電路20可用於接收第二電流I2,並根據第二預設電流,以調節第二電流I2之流量,使第二電流I2流入功率裝置16。 The present invention is described herein with reference to FIG. 1 and FIG. 2, which illustrate a schematic diagram of a discharge and a circuit block diagram of a parallel discharge regulating device according to a first embodiment of the present invention. As shown, the present invention discloses a The parallel discharge adjusting device 10 is electrically connected to the first power device 12, the second power device 14 and the power device 16. The parallel discharge adjusting device 10 includes a first discharging adjusting circuit 18 electrically connected to the first power device 12 and power. The device 16 and the second discharge regulating circuit 20 are electrically connected to the second power device 14 and the power device 16. A first discharge control circuit 18 is operable to receive a first current I 1, and in accordance with a first predetermined current, to adjust the flow rate of the first current I 1 of the first current I 1 flows into the power device 16, the second discharge control circuit 20 operable to receive a second current I 2, and according to a second predetermined current, to adjust the flow rate of the second current I 2, the current I 2 flowing into the second power device 16.
接著,如第2圖所示,本發明之第一電流I1係由第一電能裝置12釋放第一洩漏電流IL1,在第一放電調節電路18接收第一洩漏電流IL1之後,可轉輸出成第一放電電流ID1,第二電流I2則係由第二電能裝置14釋放第二洩漏電流IL2,且在第二放電調節電路20接收第二洩漏電流IL2可轉輸出成第二放電電流ID2。 Next, as shown in FIG. 2, the first current I 1 of the present invention releases the first leakage current I L1 from the first power device 12, and after the first discharge adjusting circuit 18 receives the first leakage current I L1 , it can be rotated. outputting a first discharge current I D1, a second current I 2 then the system releases the second leakage current I L2 by a second power means 14, 20 and receives the second leakage current I L2 of the second discharge control circuit can be transferred into a first output Two discharge currents I D2 .
此外,本發明之第一電能裝置12及第二電能裝置14係為電池或發電機,功率裝置16係為電動機、用電裝置或電力網路。且前述之電池可以是可充式電池,用電裝置可以為資訊、通信、空調、照明、機械動力或其他用電系統,而電力網路係為上述用電系統組合而成的電力負載網路。換言之,當第一電能裝置12及第二電能裝置14使用如可充式電池,功率裝置16使用如電動機時,本發明之第一預設電流及第二預設電流即係個別針對可充式電池的額定電流實際情況進行設定(意即針對可充式電池的輸出電流做設定),藉以維持第一洩漏電流IL1及第二洩漏電流IL2之流量不超過第一電能裝置12及第二電能裝置14之額定電流,藉此將得以保護第一電能裝置12及第二電能裝置14,藉此避免第一電能裝置12及第二電能裝置14過度放電發生損壞,此外,本發明亦可依據第一預設電流及第二預設電流針對第一放電電流ID1及第二放電電流ID2針對電動機之額定電流進行設定,以避免功率裝置16過度充電發生損壞。 In addition, the first power device 12 and the second power device 14 of the present invention are batteries or generators, and the power device 16 is an electric motor, a power device or a power network. The foregoing battery may be a rechargeable battery, and the electrical device may be information, communication, air conditioning, lighting, mechanical power or other power system, and the power network is an electrical load network composed of the above-mentioned power system. In other words, when the first power device 12 and the second power device 14 use, for example, a rechargeable battery, and the power device 16 uses, for example, an electric motor, the first preset current and the second preset current of the present invention are individually for the rechargeable type. The actual current rating of the battery is set (ie, set for the output current of the rechargeable battery), thereby maintaining the flow of the first leakage current I L1 and the second leakage current I L2 not exceeding the first power device 12 and the second The rated current of the electrical energy device 14 , whereby the first electrical energy device 12 and the second electrical energy device 14 are protected, thereby preventing the first electrical energy device 12 and the second electrical energy device 14 from being excessively discharged and causing damage, and the present invention may also be based on The first preset current and the second preset current are set for the rated current of the motor for the first discharge current I D1 and the second discharge current I D2 to prevent damage of the power device 16 from overcharging.
據上,本發明於此所揭示之並聯式放電調節裝置10,不同於過去單以持續電流監測或中斷截止的電池保護方式,因此,本發明在電能裝置12、14應用上可以避免非預期的斷電異常等問題,藉以增加裝置使用上的可靠性。 According to the present invention, the parallel discharge regulating device 10 disclosed herein is different from the battery protection mode in the past in which continuous current monitoring or interruption is cut off. Therefore, the present invention can avoid unexpected use in the application of the electrical energy devices 12 and 14. Problems such as abnormal power failure, so as to increase the reliability of the device.
此外,本發明於前揭之實施方式,僅是對於本發明之技術思想概略說明,本發明之細部結構元件及具體實施例中之元件結構及操作方式,將於下文中搭配隨附的圖式再作更細部說明。 In addition, the embodiments of the present invention are merely illustrative of the technical idea of the present invention, and the detailed structural elements of the present invention and the component structures and operation modes of the specific embodiments will be hereinafter described with the accompanying drawings. Let's take a more detailed explanation.
復閱第2圖,本發明之並聯式放電調節裝置10,其中第一電能裝置12具有第一電性接點P1及第二電性接點P2,第二電能裝置14具有第三電性接點P3及第四電性接點P4,且第一電性接點P1及第三電性接點P3係為正極,第二電性接點P2及第四電性接點P4係為負極。 Reviewing the FIG. 2, the present invention parallel the discharge adjustment device 10, wherein the first power means 12 having a first electrical contact P 1 and the second electrical contact P 2, 14 second power means having a third electric The first contact P 3 and the fourth electrical contact P 4 , and the first electrical contact P 1 and the third electrical contact P 3 are positive, the second electrical contact P 2 and the fourth electrical The contact P 4 is a negative electrode.
承上所述,本發明之第一放電調節電路18包含有第一調節控制器22,可根據第一預設電流進行調節第一洩漏電流IL1之流量,第一開關S1串接第一電性接點P1,且電性連接第一調節控制器22,第一調節控制器22可根據第一預設電流,來決定第一開關S1之導通次數,進而調節第一洩漏電流IL1之流量。第一二極體D1具有第一順向端F1及第一逆向端R1,第一順向端F1電性連接第一開關S1,第二逆向端R2電性連接第二電性接點P2,第一二極體D1可控制第一洩漏電流IL1之流向路徑,第一電感L1電性連接第一開關S1與第一順向端F1之共接點,以儲存第一洩漏電流IL1,第一電感L1可將第一洩漏電流IL1轉輸出成第一放電電流ID1,第一電容C1串接第一電感L1再電性連接第二電性接點P2及第一逆向端R1之共接點,第一電容C1並聯功率裝置16,以接收並儲存第一洩漏電流IL1,進而提供第一放電電流ID1以流入功率裝置16。 As described above, the first discharge regulation circuit 18 of the present invention includes a first adjustment controller 22 that can adjust the flow rate of the first leakage current I L1 according to the first preset current, and the first switch S 1 is connected in series with the first electrical contacts P 1, and is electrically connected to the first adjustment controller 22, the controller 22 may be adjusted in accordance with a first a first predetermined current, to determine a first switch S 1 is turned on the number of times, thereby regulating the first leakage current I L1 traffic. The first diode D 1 has a first forward end F 1 and a first reverse end R 1 , the first forward end F 1 is electrically connected to the first switch S 1 , and the second reverse end R 2 is electrically connected to the second electrical contacts P 2, a first diode D 1 may control the leakage flow path of the first current I L1 of the first inductor L 1 is electrically connected to the first switch S 1 and a first forward end of the common contact F 1 Point to store the first leakage current I L1 , the first inductor L 1 can output the first leakage current I L1 into the first discharge current I D1 , and the first capacitor C 1 is connected in series with the first inductor L 1 and then electrically connected a common junction of the second electrical contact P 2 and the first reverse terminal R 1 , the first capacitor C 1 is connected in parallel with the power device 16 to receive and store the first leakage current I L1 , thereby providing the first discharge current I D1 Flow into the power device 16.
第二放電調節電路20包含有第二調節控制器24,根據第二預設電流,以調節第二洩漏電流IL2之流量,第二開關S2串接第三電性接點P3,且電性連接第二調節控制器24,第二調節控制器24可根據第二預設電流,來決定第二開關S2之導通次數,進而調節第二洩漏電流IL2之流量,第二二極體D2具有第二順向端F2及第二逆向端R2,第二順向端F2電性連接第二開關S2,第二逆向端R2電性連接第四電性接點P4,且第二二極體D2可控制第二洩漏電流IL2之流向路徑,第二電感L2電性連接第二開關S2與第二順向端F2之共接點,以儲存第二洩漏電流IL2,且第二電感L2可將第二洩漏電流IL2轉輸出成第二放電電流ID2,第二電容C2串接第二電感L2,並電性連接第四電性接點P4及第二逆向端R2之共接點,第二電感L2並聯功率裝置16,以接收並儲存第二洩漏電流IL2,進而提供第二放電電流ID2以流入功率裝置 16。 The second discharge regulation circuit 20 includes a second adjustment controller 24 for adjusting the flow rate of the second leakage current I L2 according to the second preset current, and the second switch S 2 is connected in series with the third electrical contact P 3 , and electrically connected to the second adjustment controller 24, the controller 24 may be a second adjusted according to a second predetermined current, to determine a second switch S 2 is turned on the number of times, thereby regulating the flow rate of the second leakage current I L2, the second diode a second body having a D 2 F 2 and the forward end of the second end of the reverse R 2, the forward end of the second F 2 is electrically connected to the second switch S 2, a second reverse side R 2 is electrically connected to a fourth electrical contact P 4 , and the second diode D 2 can control the flow path of the second leakage current I L2 , and the second inductor L 2 is electrically connected to the common point of the second switch S 2 and the second forward end F 2 storing a second leakage current I L2, and the second inductor L 2 may be the leakage current I L2 of the second rotation is output to a second discharging current I D2, the second capacitor C 2 in series a second inductor L 2, and electrically connects the first a common contact of the fourth electrical contact P 4 and the second reverse terminal R 2 , the second inductor L 2 is connected in parallel with the power device 16 to receive and store the second leakage current I L2 , thereby A second discharge current I D2 is supplied to flow into the power device 16.
據上,第一二極體D1可根據其順向端F1及逆向端R1之間的特性關係,可在第一開關S1導通時間形成逆向偏壓,以控制第一洩漏電流IL1全部流入第一電感L1,當第一開關S1開路時,第一二極體D1形成順向偏壓以繼續第一電感L1的慣性電流,將第一電感L1內的能量轉移到第一電容C1,因此,第一電容C1可接收並儲存第一洩漏電流IL1,進而提供第一放電電流ID1以流入功率裝置16。第二二極體D2根據其順向端F2及逆向端R2之間的特性關係,可在第二開關S2導通時間形成逆向偏壓,以控制第二洩漏電流IL2全部流入第二電感L2,當第二開關S2開路時,第二二極體D2形成順向偏壓以繼續第二電感L2的慣性電流,將第二電感L2內的能量轉移到第二電容C2,因此,第二電容C2可接收並儲存第二洩漏電流IL2,進而提供第二放電電流ID2以流入功率裝置16。 According to the characteristic relationship between the forward end F 1 and the reverse end R 1 , the first diode D 1 can form a reverse bias at the on-time of the first switch S 1 to control the first leakage current I. all the first inductor L1 flows into the L 1, when the first switch S 1 is open, the first diode D 1 is formed to continue the forward bias current of a first inductor L 1 of the inertia, the energy in the first inductor L 1 Transferring to the first capacitor C 1 , the first capacitor C 1 can receive and store the first leakage current I L1 , thereby providing a first discharge current I D1 to flow into the power device 16 . The second diode D 2 can form a reverse bias voltage during the second switch S 2 conduction time according to the characteristic relationship between the forward end F 2 and the reverse end R 2 to control the second leakage current I L2 to flow into the first two inductors L 2, S 2 when the second switch is open, the second diode D 2 is formed to continue the forward bias current of the second inductor L 2 of the inertia, the energy is transferred to the second inductor L 2 of the second The capacitor C 2 , therefore, the second capacitor C 2 can receive and store the second leakage current I L2 , thereby providing a second discharge current I D2 to flow into the power device 16 .
如前所述,依據本發明所揭示之並聯式放電調節裝置10,當第一放電調節電路18於第一洩漏電流IL1小於第一預設電流時,第一調節控制器22可增加第一開關S1導通時間比例,以增加輸出第一洩漏電流IL1之流量,當第一洩漏電流IL1大於第一預設電流時,第一調節控制器22可減少第一開關S1導通時間比例,以減少輸出第一洩漏電流IL1之流量,當第一洩漏電流IL1等於第一預設電流時,第一調節控制器22可恆定第一開關S1導通時間比例,以穩定輸出第一洩漏電流IL1之流量。第二放電調節電路20於第二洩漏電流IL2小於第二預設電流時,第二調節控制器24可增加第二開關S2導通時間比例,增加輸出第二洩漏電流IL2之流量,當第二洩漏電流IL2大於第二預設電流時,第二調節控制器24可減少第二開關S2導通時間比例,減少輸出第二洩漏電流IL2之流量,當第二洩漏電流IL2等於第二預設電流時,第二調節控制器24可恆定第二開關S2導通時間比例,以穩定輸出第二洩漏電流IL2之流量。 As described above, according to the parallel discharge adjusting device 10 disclosed in the present invention, when the first discharge adjusting circuit 18 is less than the first preset current in the first leakage current I L1 , the first adjusting controller 22 may increase the first The switch S 1 is turned on by a time ratio to increase the flow rate of the output first leakage current I L1 . When the first leakage current I L1 is greater than the first preset current, the first adjustment controller 22 can reduce the on-time ratio of the first switch S 1 . To reduce the flow rate of the output first leakage current I L1 , when the first leakage current I L1 is equal to the first preset current, the first adjustment controller 22 can constant the first switch S 1 conduction time ratio to stabilize the output first The flow rate of leakage current I L1 . When the second leakage current I L2 is less than the second preset current, the second regulation controller 24 may increase the on-time ratio of the second switch S 2 and increase the flow rate of the output second leakage current I L2 . When the second leakage current I L2 is greater than the second preset current, the second adjustment controller 24 can reduce the on-time ratio of the second switch S 2 and reduce the flow rate of the output second leakage current I L2 when the second leakage current I L2 is equal to When the second preset current is current, the second adjustment controller 24 can constant the second switch S 2 on-time ratio to stably output the flow rate of the second leakage current I L2 .
再者,同如前述,本發明之第一預設電流及第二預設電流各自針對第一電能裝置12、第二電能裝置14之額定電流情況進行設定只是本發明技術內容其中之一之實施方式,然而,本發明並不以此為限,依據本發明之技術思想,第一預設電流及第二預設電流亦可同時考量第一電能裝置12、第二電能裝置12及功率裝置16之額定電流的實際情況做設定,第 一調節控制器22及第二調節控制器24其導通時間比例的控制方式大致上與前文所述相同,在此不再贅述,惟第一預設電流及第二預設電流之設定方式,將會於下文中搭配隨附的圖式再作更細部說明。 Furthermore, as described above, the setting of the rated current of the first power device 12 and the second power device 14 of the first preset current and the second preset current of the present invention is only one of the technical contents of the present invention. The present invention is not limited thereto. According to the technical idea of the present invention, the first preset current and the second preset current may simultaneously consider the first power device 12, the second power device 12, and the power device 16. The actual situation of the rated current is set, The control mode of the adjustment time ratio of the adjustment controller 22 and the second adjustment controller 24 is substantially the same as that described above, and is not described herein again, but the first preset current and the second preset current are set. A more detailed description will be given below in conjunction with the accompanying drawings.
復閱第2圖,如前所述之並聯式放電調節裝置10,第一放電調節電路18於第一放電電流ID1小於第一預設電流時,第一調節控制器22可增加第一開關S1導通時間比例,以增加輸出第一放電電流ID1之流量,當第一放電電流ID1大於第一預設電流時,第一調節控制器22可減少第一開關S1導通時間比例,以減少輸出第一放電電流ID1之流量,當第一放電電流ID1等於第一預設電流時,第一調節控制器22可恆定第一開關S1導通時間比例,以穩定輸出第一放電電流ID1之流量。第二放電調節電路20於第二放電電流ID2小於第二預設電流時,第二調節控制器24可增加第二開關S2導通時間比例,增加輸出第二放電電流ID2之流量,當第二放電電流ID2大於第二預設電流時,第二調節控制器24可減少第二開關S2導通時間比例,減少輸出第二放電電流ID2之流量,當第二放電電流ID2等於第二預設電流時,第二調節控制器24可恆定第二開關S2導通時間比例,以穩定輸出第二放電電流ID2之流量。 Referring to FIG. 2, the parallel discharge adjusting device 10 as described above, the first discharging regulator circuit 18 can increase the first switch when the first discharging current I D1 is less than the first preset current. S 1 conduction time ratio, to increase the current I D1 at a first discharge flow rate output, when the first discharge current I D1 greater than a first predetermined current, the first controller 22 can be adjusted to reduce a conduction time ratio of the first switch S, To reduce the flow rate of the output first discharge current I D1 , when the first discharge current I D1 is equal to the first preset current, the first adjustment controller 22 can constant the ratio of the on-time of the first switch S 1 to stably output the first discharge. Current I D1 flow. When the second discharge current I D2 is less than the second preset current, the second regulation controller 24 can increase the ratio of the second switch S 2 conduction time and increase the flow rate of the output second discharge current I D2 . When the second discharge current I D2 is greater than the second preset current, the second adjustment controller 24 can reduce the on-time ratio of the second switch S 2 and reduce the flow rate of the output second discharge current I D2 when the second discharge current I D2 is equal to When the second preset current is current, the second adjustment controller 24 can constant the second switch S 2 on-time ratio to stably output the flow rate of the second discharge current I D2 .
此外,由於本發明之第一預設電流及第二預設電流亦可同時針對於第一電能裝置12、第二電能裝置14及功率裝置16的額定電流情況進行設定,因此,當第一電能裝置12及第二電能裝置14使用為電池,功率裝置16使用電動機時,第一預設電流及第二預設電流即針對電池之放電額定電流及電動機之額定最大電流做設定。詳言之,例如當第一電能裝置12及第二電能裝置14所使用的電池具有最大放電電流15安培,而功率裝置16使用額定最大電流為20安培的電動機。由於電動機本身並沒有過大電流的保護或限制的功能,因此,設計者可以設定第一預設電流及第二預設電流為10安培,將得以確保第一電能裝置12與第二電能裝置14的放電電流不會超過其安全界線15安培之外,功率裝置16的輸入電流也不會超過第一電能裝置12與第二電能裝置14的電流總和20安培,如以一來,將可以保護電池與電動機都不會有過大電流而造成損壞。但,假設功率裝置16本身具有控制裝置避免操作電流超過20安培,則設計者可以設定第一預設電流及第二預設電流為15安培,使得電動機在沒有過大電流的情況下,第一電 能裝置12及第二電能裝置14可以有更大的放電調配範圍。 In addition, since the first preset current and the second preset current of the present invention can also be set for the rated current conditions of the first power device 12, the second power device 14, and the power device 16, the first power is The device 12 and the second power device 14 are used as batteries. When the power device 16 uses the motor, the first preset current and the second preset current are set for the discharge rated current of the battery and the rated maximum current of the motor. In particular, for example, the batteries used by the first power device 12 and the second power device 14 have a maximum discharge current of 15 amps, while the power device 16 uses a motor with a rated maximum current of 20 amps. Since the motor itself does not have the function of protecting or limiting the excessive current, the designer can set the first preset current and the second preset current to 10 amps to ensure the first power device 12 and the second power device 14 The discharge current will not exceed 15 amps above its safety limit, and the input current of the power device 16 will not exceed 20 amps of the sum of the currents of the first power device 12 and the second power device 14, as will, in order to protect the battery and The motor will not be damaged by excessive current. However, assuming that the power device 16 itself has a control device to prevent the operating current from exceeding 20 amps, the designer can set the first preset current and the second preset current to 15 amps, so that the motor does not have excessive current, the first electric The energy device 12 and the second power device 14 can have a larger discharge deployment range.
當然,前揭第一實施例之並聯式放電調節裝置10,其技術特徵僅是本發明其中之一裝置實施例,依據本發明之技術內容而言,當然並不以此為限,接續,參閱第3圖,藉此說明本發明第二實施例之並聯式放電調節裝置電路方塊圖,如圖所示,本發明於前所述之第一電能裝置12、第二電能裝置14、功率裝置16、第一放電調節電路18及第二放電調節電路20,其作用及連結方式大致上與該第二實施例相同,相同技術內容在此不再重複贅述。 Of course, the technical characteristics of the parallel discharge adjusting device 10 of the first embodiment are only one of the device embodiments of the present invention, and the technical content of the present invention is not limited thereto. 3 is a block diagram showing the circuit of the parallel discharge regulating device according to the second embodiment of the present invention. As shown in the figure, the first power device 12, the second power device 14, and the power device 16 of the present invention are as described above. The first discharge regulation circuit 18 and the second discharge regulation circuit 20 are substantially the same as the second embodiment, and the same technical content will not be repeated here.
惟本發明之第二實施例不同處在於第一放電調節電路18之第一開關S1串接第二電性接點P2,且電性連接第一調節控制器22,第一二極體D1具有第一順向端F1及第一逆向端R1,第一順向端F1電性連接第一電性接點P1,第一逆向端R1電性連接第一開關S1,且第一二極體D1可控制第一洩漏電流IL1之流向路徑,第一電感L1電性連接第一電性接點P1與第一順向端F1之共接點,以儲存第一洩漏電流IL1,且第一電感L1可將第一洩漏電流IL1轉輸出成第一放電電流ID1,第一電容C1串接第一電感L1,且電性連接於第一開關S1及第一逆向端R1之共接點,第一電容C1並聯功率裝置16以接收並儲存第一放電電流ID1,進而提供第一放電電流ID1以流入功率裝置16。 However, the second embodiment of the present invention is different in that the first switch S 1 of the first discharge adjusting circuit 18 is connected in series with the second electrical contact P 2 , and is electrically connected to the first regulating controller 22 , the first diode D 1 has a first forward end F 1 and a first reverse end R 1 , the first forward end F 1 is electrically connected to the first electrical contact P 1 , and the first reverse end R 1 is electrically connected to the first switch S 1 , and the first diode D 1 can control the flow path of the first leakage current I L1 , and the first inductor L 1 is electrically connected to the common contact point of the first electrical contact P 1 and the first forward end F 1 To store the first leakage current I L1 , and the first inductor L 1 can output the first leakage current I L1 to the first discharge current I D1 , the first capacitor C 1 is connected in series with the first inductor L 1 , and the electrical Connected to the common junction of the first switch S 1 and the first reverse terminal R 1 , the first capacitor C 1 is connected in parallel with the power device 16 to receive and store the first discharge current I D1 , thereby providing the first discharge current I D1 to flow in power Device 16.
接著,第二放電調節電路20之第二開關S2串接第四電性接點P4,且電性連接第二調節控制器20,第二調節控制器D2可根據第二預設電流,來決定第二開關S2之導通次數,進而調節第二洩漏電流IL2之流量,第二二極體D2具有第二順向端F2及第二逆向端R2,且第二順向端F2電性連接第三電性接點P3,第二逆向端R2電性連接第二開關S2,第二二極體D2可控制第二洩漏電流ID2之流向路徑,第二電感L2電性連接第三電性接點P3與第二順向端F2之共接點,以儲存第二洩漏電流IL2,且第二電感L2可將第二洩漏電流IL2轉輸出成第二放電電流ID2,第二電容C2串接第二電感L2,並電性連接第二開關S2及第二逆向端R2之共接點,且第二電感L2並聯功率裝置16,以接收並儲存第二放電電流ID2,進而提供第二放電電流ID2以流入功率裝置16。 Then, the second switch S 2 of the second discharge adjusting circuit 20 is connected in series with the fourth electrical contact P 4 , and is electrically connected to the second adjusting controller 20 , and the second adjusting controller D 2 is configured according to the second preset current , determining the number of conduction times of the second switch S 2 , thereby adjusting the flow rate of the second leakage current I L2 , the second diode D 2 having the second forward end F 2 and the second reverse end R 2 , and the second cis F 2 to the end electrically connected to a third electrical contact P 3, a second reverse side R 2 is electrically connected to the second switch S 2, a second diode D 2 may control a second flow path of the leakage current I D2, The second inductor L 2 is electrically connected to the common junction of the third electrical contact P 3 and the second forward terminal F 2 to store the second leakage current I L2 , and the second inductor L 2 can be the second leakage current I L2 is outputted to a second discharge current I D2 , and the second capacitor C 2 is connected in series with the second inductor L 2 and electrically connected to a common contact of the second switch S 2 and the second reverse end R 2 , and the second inductor L 2 is connected in parallel with the power device 16 to receive and store the second discharge current I D2 , thereby providing a second discharge current I D2 to flow into the power device 16 .
依據本發明前揭之第一實施例及第二實施例之技術內容,可得知第一實施例是將第一開關S1、第一電感L1、第二開關S2及第二電感L2 設置於正端迴路,第二實施例則是將第一開關S1、第一電感L1、第二開關S2及第二電感L2設置於負端迴路,依據第二實施例所揭示之技術內容同樣可達成第一實施例之功效。 According to the technical content of the first embodiment and the second embodiment of the present invention, the first embodiment is that the first switch S 1 , the first inductor L 1 , the second switch S 2 , and the second inductor L are 2 is disposed in the positive terminal loop, and in the second embodiment, the first switch S 1 , the first inductor L 1 , the second switch S 2 , and the second inductor L 2 are disposed in the negative end loop, according to the second embodiment. The technical content can also achieve the effects of the first embodiment.
另外,本發明之第一調節控制器22及第二調節控制器24係以脈衝寬度調變技術,分自進行觸發第一開關S1及第二開關S2。且第一開關S1及第二開關S2係為雙極性電晶體、場效應電晶體、絕緣柵雙極電晶體或切換式開關。 In addition, the first adjustment controller 22 and the second adjustment controller 24 of the present invention respectively perform the triggering of the first switch S 1 and the second switch S 2 by using a pulse width modulation technique. The first switch S 1 and the second switch S 2 are bipolar transistors, field effect transistors, insulated gate bipolar transistors or switched switches.
本發明於此為求說明書應明確且充分揭露,使該發明所屬技術領域中具有通常知識者,能瞭解其內容,並可據以實現,因此,於第1圖、第2圖及第3圖皆是以二組電能裝置12、14作為舉例說明,然而依據本發明之技術思想,本發明之並聯式放電調節裝置10亦可並聯更多數量之第一電能裝置12、第二電能裝置14,此時僅須使第一放電調節電路18、第二放電調節電路20對應相同數量之第一電能裝置12、第二電能裝置14即可。 The present invention should be clearly and fully disclosed herein, and those skilled in the art to which the invention pertains can understand the contents and implement them. Therefore, in FIG. 1, FIG. 2, and FIG. The two sets of power devices 12 and 14 are exemplified. However, according to the technical idea of the present invention, the parallel discharge adjusting device 10 of the present invention can also connect a larger number of the first power device 12 and the second power device 14 in parallel. At this time, the first discharge adjusting circuit 18 and the second discharge adjusting circuit 20 need only correspond to the same number of the first electric energy device 12 and the second electric power device 14.
接著,本發明於此可列舉一方法實施例,參閱第4圖,本發明之放電調節方法流程示意圖,參閱同時復閱第2圖,如圖所示,本發明之一種放電調節方法,包含有下列步驟,如步驟S10,選擇性接收來自二電能裝置之第一電流I1及第二電流I2,接著,如步驟S12,根據第一預設電流及第二預設電流,以個別調節第一電流I1及第二電流I2之流量,步驟S14選擇性調整第一電流I1及第二電流I2流入功率裝置16。此外,本發明前述之二電能裝置分別係為第一電能裝置12及第二電能裝置14,第一電流I1係由第一電能裝置12釋放第一洩漏電流IL1,第一放電調節電路18可接收第一洩漏電流IL1並轉輸出成第一放電電流ID1,第二電流I2係由第二電能裝置14釋放第二洩漏電流IL2,且第二放電調節電路20可接收第二洩漏電流IL2並轉輸出成第二放電電流ID2。 Next, the present invention can be exemplified by a method embodiment. Referring to FIG. 4, a schematic flow chart of the discharge adjusting method of the present invention, and referring to FIG. 2, as shown in the figure, a discharge adjusting method of the present invention includes The following steps, in step S10, selectively receiving the first current I 1 and the second current I 2 from the two power devices, and then, according to step S12, adjusting the first according to the first preset current and the second preset current The flow rate of the current I 1 and the second current I 2 is selectively adjusted to flow into the power device 16 in step S14 by adjusting the first current I 1 and the second current I 2 . In addition, the foregoing two electric energy devices of the present invention are respectively the first electric energy device 12 and the second electric energy device 14, and the first current I 1 is released by the first electric energy device 12 by the first leakage current I L1 , and the first electric discharge adjusting circuit 18 The first leakage current I L1 may be received and outputted to the first discharge current I D1 , the second current I 2 is released by the second electrical energy device 14 and the second leakage current I L2 is received, and the second discharge regulating circuit 20 may receive the second The leakage current I L2 is outputted to the second discharge current I D2 .
據上,本發明之放電調節方法,其中第一洩漏電流IL1及第二洩漏電流IL2與第一放電電流ID1及第二放電電流ID2之流量係以第一調節控制器22及第二調節控制器24分自控制第一開關S1及第二開關S2進行調節,且第一調節控制器22可根據第一預設電流,決定第一開關S1之導通次數,第二調節控制器24可根據第二預設電流,決定第二開關S2之導通次數。 According to the discharge regulation method of the present invention, the flow rates of the first leakage current I L1 and the second leakage current I L2 and the first discharge current I D1 and the second discharge current I D2 are based on the first regulation controller 22 and the The second adjustment controller 24 is controlled by the first switch S 1 and the second switch S 2 , and the first adjustment controller 22 determines the number of times the first switch S 1 is turned on according to the first preset current, and the second adjustment The controller 24 determines the number of times the second switch S 2 is turned on according to the second preset current.
因此,當第一洩漏電流IL1小於第一預設電流時,第一調節控制器22可增加第一開關S1導通時間比例,以增加輸出第一洩漏電流IL1之流量,當第一洩漏電流IL1大於第一預設電流時,減少第一開關S1導通時間比例,以減少輸出第一洩漏電流IL1之流量,當第一洩漏電流IL1等於第一預設電流時,恆定第一開關S1導通時間比例,以穩定輸出第一洩漏電流IL1之流量。 Therefore, when the first leakage current I L1 is less than the first preset current, the first adjustment controller 22 may increase the on-time ratio of the first switch S 1 to increase the flow rate of the output first leakage current I L1 when the first leakage When the current I L1 is greater than the first preset current, the ratio of the on-time of the first switch S 1 is reduced to reduce the flow rate of the output first leakage current I L1 , and when the first leakage current I L1 is equal to the first preset current, the constant A switch S 1 is turned on to proportionally to stabilize the flow of the first leakage current I L1 .
當第二洩漏電流IL2小於第二預設電流時,第二調節控制器24可增加第二開關S2導通時間比例,以增加輸出第二洩漏電流IL2之流量,當第二洩漏電流IL2大於第二預設電流時,減少第二開關S2導通時間比例,以減少輸出第二洩漏電流IL2之流量,當第二洩漏電流IL2等於第二預設電流時,恆定第二開關S2導通時間比例,以穩定輸出第二洩漏電流IL2之流量。 When the second leakage current I L2 is less than the second preset current, the second adjustment controller 24 may increase the on-time ratio of the second switch S 2 to increase the flow rate of the output second leakage current I L2 when the second leakage current I when L2 is greater than the second preset current, reducing the conduction time ratio of the second 2 switch S, a second output in order to reduce the leakage current I L2 of the flow, when the second leakage current I L2 is equal to a second predetermined current, a second switch constant The S 2 conduction time ratio is used to stably output the flow rate of the second leakage current I L2 .
再者,本發明於前所揭示之第一預設電流及第二預設電流係個自針對第一電能裝置12、第二電能裝置14之額定電流情況進行設定,然而此技術特徵只是本發明技術內容其中之一之實施方式,本發明並不以此為限,依據本發明之技術思想,於此可在列舉另一調節方式,使第一預設電流及第二預設電流可同時考量第一電能裝置12、第二電能裝置12及功率裝置16之額定電流的實際情況做設定,而第一調節控制器22及第二調節控制器24其導通時間比例的控制方式大致上與前文所述相同,相同技術內容在此不再贅述,惟第一預設電流及第二預設電流之設定方式,將會於下文中搭配隨附的圖式再作更細部說明。 Furthermore, the first preset current and the second preset current disclosed in the present invention are set from the rated current conditions of the first power device 12 and the second power device 14, but the technical feature is only the present invention. The embodiment of the present invention is not limited thereto. According to the technical idea of the present invention, another adjustment mode may be cited, so that the first preset current and the second preset current can be simultaneously considered. The actual conditions of the rated currents of the first power device 12, the second power device 12, and the power device 16 are set, and the first adjustment controller 22 and the second regulation controller 24 control the on-time ratio substantially as described above. The same technical content will not be described here, but the first preset current and the second preset current setting method will be further described in the following with the accompanying drawings.
如第2圖所示,本發明之另一調節方式,其技術內容在於當第一放電電流ID1小於第一預設電流時,第一調節控制器22可增加第一開關S1導通時間比例,以增加輸出第一放電電流ID1之流量,當第一放電電流ID1大於第一預設電流時,減少第一開關S1導通時間比例,以減少輸出第一放電電流ID1之流量,當第一放電電流ID1等於第一預設電流時,恆定第一開關S1導通時間比例,以穩定輸出第一放電電流ID1之流量。 As shown in FIG. 2, another embodiment of the present invention is adjusted, its technical content is that when the first discharge current I D1 smaller than the first predetermined current, a first regulation controller 22 may increase the first switch S 1 is on-time ratio In order to increase the flow rate of the output first discharge current I D1 , when the first discharge current I D1 is greater than the first preset current, reduce the on-time ratio of the first switch S 1 to reduce the flow rate of the output first discharge current I D1 , When the first discharge current I D1 is equal to the first preset current, the first switch S 1 is turned on for a proportional time ratio to stably output the flow rate of the first discharge current I D1 .
當第二放電電流ID2小於第二預設電流時,第二調節控制器24可增加第二開關S2導通時間比例,以增加輸出第二放電電流ID2之流量,當第二放電電流ID2大於第二預設電流時,減少第二開關S2導通時間比例,以減少輸出第二放電電流ID2之流量,當第二放電電流ID2等於第二預設電流 時,恆定第二開關S2導通時間比例,以穩定輸出第二放電電流ID2之流量。 When the second discharge current I D2 is less than the second preset current, the second adjustment controller 24 may increase the on-time ratio of the second switch S 2 to increase the flow rate of the output second discharge current I D2 when the second discharge current I when D2 is greater than the second preset current, reducing the conduction time ratio of the second 2 switch S, to reduce the output flow of the second current I D2 of the discharge, when the second discharging current I D2 equal to the second predetermined current, a second switch constant The S 2 conduction time ratio is used to stably output the flow rate of the second discharge current I D2 .
綜上所述,本發明另一調節方式主要是用於考量功率裝置16額定電流之限制進行調節,因此利用第一調節控制器22及第二調節控制器24分別根據第一預設電流及第二預設電流針對功率裝置16所能接受的最大第一放電電流ID1及第二放電電流ID2,進行調節流量,使第一放電電流ID1及第二放電電流ID2流入功率裝置16的流量不超過功率裝置16額定電流之限制,如此一來,將可避免功率裝置16過度放電,進而降低功率裝置16過度充放電而受到損壞或壽命減損的機會。 In summary, another adjustment mode of the present invention is mainly for adjusting the limitation of the rated current of the power device 16, so that the first adjustment controller 22 and the second adjustment controller 24 are respectively configured according to the first preset current and the first The preset current is adjusted for the maximum first discharge current I D1 and the second discharge current I D2 that the power device 16 can accept, so that the first discharge current I D1 and the second discharge current I D2 flow into the power device 16 . The flow rate does not exceed the limit of the rated current of the power device 16, and as such, the power device 16 can be prevented from being over-discharged, thereby reducing the chance of damage or loss of life of the power device 16 due to excessive charging and discharging.
此外,本發明之放電調節方法,其中第一洩漏電流IL1及第二洩漏電流IL2調節方式係為第一調節控制器22及第二調節控制器24以脈衝寬度調變技術,分自進行觸發第一開關S1及第二開關S2。且第一電能裝置12、第二電能裝置14係為電池或發電機,功率裝置16係為電動機、直流用電裝置或電力網路。且前述之用電裝置可以為資訊、通信、空調、照明、機械動力或其他用電系統,而電力網路係為上述用電系統組合而成的電力負載網路。第一開關S1及第二開關S2係為雙極性電晶體、場效應電晶體、絕緣柵雙極電晶體或切換式開關。 In addition, in the discharge adjusting method of the present invention, the first leakage current I L1 and the second leakage current I L2 are adjusted by the first adjustment controller 22 and the second adjustment controller 24 by pulse width modulation technology. The first switch S 1 and the second switch S 2 are triggered. The first power device 12 and the second power device 14 are batteries or generators, and the power device 16 is an electric motor, a DC power device, or a power network. The foregoing electrical device may be information, communication, air conditioning, lighting, mechanical power or other power system, and the power network is an electrical load network composed of the above-mentioned power system. The first switch S 1 and the second switch S 2 are bipolar transistors, field effect transistors, insulated gate bipolar transistors or switched switches.
綜上所述,依據本發明所揭示之並聯式放電調節裝置10,其係可應用在兩組第一電能裝置12及第二電能裝置14或以上數量以直接並聯供電給功率裝置16,並聯式放電調節裝置10可適合於具備不同電池芯特性的電池組並聯使用,例如鋰錳電池與磷酸鋰鐵電池可以並聯在一起使用,不會因特性差異而使任一第一電能裝置12或第二電能裝置14之額定電流超過其承受的範圍,在不同容量的第一電能裝置12或第二電能裝置14之間亦可以並聯在一起使用,例如不同額定電流之10安時與20安時的電能裝置12或電能裝置14可並聯使用,或是在不同充電容量狀態的第一電能裝置12或第二電能裝置14可以並聯一起使用,例如一個充飽的第一電能裝置12與剩餘一半電量的第二電能裝置14可以並聯使用。 In summary, the parallel discharge adjusting device 10 according to the present invention can be applied to two sets of the first electric energy device 12 and the second electric energy device 14 or above to directly supply power to the power device 16 in parallel, in parallel. The discharge adjusting device 10 can be suitably used in parallel with a battery pack having different battery core characteristics. For example, a lithium manganese battery and a lithium iron phosphate battery can be used in parallel without any first electric power device 12 or second due to a difference in characteristics. The rated current of the electrical energy device 14 exceeds the range of the electrical energy device 14 and can be used in parallel between the first electrical energy device 12 or the second electrical energy device 14 of different capacities, for example, 10 ampere-hours and 20 ampere-hours of different rated currents. The device 12 or the electrical energy device 14 can be used in parallel, or the first electrical energy device 12 or the second electrical energy device 14 in different charging capacity states can be used in parallel, for example, a fully charged first electrical energy device 12 and the remaining half of the electrical energy The two electrical energy devices 14 can be used in parallel.
此外,對於電動車而言,電動車騎乘距離與電池組容量有相當大的關係,但電池組體積較大就不易搬動,因此一般人能夠隨意抽取之體積與重量也將有所限制,依據工業局的標準,10公斤的電池模組重量為一般使用者所能夠輕易抽取交換的最高重量上限。然因電池模組容量之較 大者需要較多之鋰電池所組成,相對的重量與體積也較重與大,因此,若需航程則需改善電源裝置,即需使用一個以上的電池模組。 In addition, for electric vehicles, the riding distance of electric vehicles has a considerable relationship with the capacity of the battery pack, but the battery pack is difficult to move when it is large in size, so the volume and weight that can be extracted by ordinary people will also be limited. According to the standards of the Industrial Bureau, the weight of a 10 kg battery module is the maximum weight limit that can be easily exchanged by the average user. However, due to the capacity of the battery module The larger ones need more lithium batteries, and the relative weight and volume are heavier and larger. Therefore, if the voyage is required, the power supply device needs to be improved, that is, more than one battery module is needed.
使用一個以上的電池模組對同一個功率裝置進行供電時,由於各個電池組的特性皆不相同,因此可能會發生模組負擔電流不均甚或造成單顆模組過載之情形。為解決此一問題,依據本發明之技術思想,即可提供輕型電動車開發抽取式可並聯鋰電池儲電模組,而此處所謂抽取式可並聯鋰電池儲電模組裝置,即係為本發明之並聯式放電調節裝置10,利用第一放電調節電路18及第二放電調節電路20之獨立模組及平均且穩定的分擔功率裝置16之能力,主要是為了改善電源裝置擴充所遭受的限制。 When more than one battery module is used to supply power to the same power device, since the characteristics of each battery pack are different, it may happen that the module burdens current unevenness or even causes a single module to be overloaded. In order to solve this problem, according to the technical idea of the present invention, it is possible to provide a light-duty electric vehicle to develop a removable parallel lithium battery storage module, and the so-called removable parallel lithium battery storage module device is The parallel discharge regulating device 10 of the present invention utilizes the independent modules of the first discharge regulating circuit 18 and the second discharging regulating circuit 20 and the ability to share the power device 16 evenly and stably, mainly for improving the expansion of the power supply device. limit.
此外,本發明之第一放電調節電路18及第二放電調節電路20採模組化設計更有以下優點:在輸出功率增加時,可直接並聯增加模組來達到所需要的功率輸出;而當其中之一第一放電調節電路18或第二放電調節電路20故障時,可快速替換模組,以維持裝置運作之高可靠度。 In addition, the modular design of the first discharge adjusting circuit 18 and the second discharging adjusting circuit 20 of the present invention has the following advantages: when the output power is increased, the module can be directly connected in parallel to achieve the required power output; When one of the first discharge regulating circuit 18 or the second discharging regulating circuit 20 fails, the module can be quickly replaced to maintain high reliability of the device operation.
如上所述,使用本發明之並聯式放電調節裝置10,更可以解決過去技術在電池組(包含過電流斷路裝置)並聯之前必須先確保各並聯電池組之間的容量與阻抗平衡,以確保不會因為功率裝置之額定電流的分配不均而造成斷電的問題。 As described above, by using the parallel discharge adjusting device 10 of the present invention, it is possible to solve the prior art that the capacity and impedance balance between the parallel battery packs must be ensured before the parallel connection of the battery pack (including the overcurrent breaking device) to ensure that no There is a problem of power failure due to uneven distribution of the rated current of the power device.
雖然,本發明前述之實施例揭露如上,然其並非用以限訂本發明。在不脫離本發明之精神和範圍內所為之更動與潤飾,均屬於本發明專利範圍之主張。關於本發明所界定之專利範圍請參考所附之請求項。 The foregoing embodiments of the present invention are disclosed above, but are not intended to limit the invention. Modifications and modifications made without departing from the spirit and scope of the invention are claimed in the scope of the invention. Please refer to the attached request for the scope of patents defined by the present invention.
10‧‧‧並聯式放電調節裝置 10‧‧‧Parallel discharge regulator
12‧‧‧第一電能裝置 12‧‧‧First electrical installation
14‧‧‧第二電能裝置 14‧‧‧Second electrical installation
16‧‧‧功率裝置 16‧‧‧Power devices
18‧‧‧第一放電調節電路 18‧‧‧First discharge regulation circuit
20‧‧‧第二放電調節電路 20‧‧‧Second discharge regulation circuit
22‧‧‧第一調節控制器 22‧‧‧First adjustment controller
24‧‧‧第二調節控制器 24‧‧‧Second adjustment controller
P1‧‧‧第一電性接點 P 1 ‧‧‧First electrical contact
P2‧‧‧第二電性接點 P 2 ‧‧‧second electrical contact
P3‧‧‧第三電性接點 P 3 ‧‧‧3rd electrical contact
P4‧‧‧第四電性接點 P 4 ‧‧‧4th electrical contact
S1‧‧‧第一開關 S 1 ‧‧‧first switch
S2‧‧‧第二開關 S 2 ‧‧‧second switch
D1‧‧‧第一二極體 D 1 ‧‧‧First Diode
D2‧‧‧第二二極體 D 2 ‧‧‧Secondary
F1‧‧‧第一順向端 F 1 ‧‧‧first forward end
R1‧‧‧第一逆向端 R 1 ‧‧‧first reverse end
F2‧‧‧第二順向端 F 2 ‧‧‧second cis end
R2‧‧‧第二逆向端 R 2 ‧‧‧second reverse end
L1‧‧‧第一電感 L 1 ‧‧‧first inductance
L2‧‧‧第二電感 L 2 ‧‧‧second inductance
C1‧‧‧第一電容 C 1 ‧‧‧first capacitor
C2‧‧‧第二電容 C 2 ‧‧‧second capacitor
I1‧‧‧第一電流 I 1 ‧‧‧First current
I2‧‧‧第二電流 I 2 ‧‧‧second current
IL1‧‧‧第一洩漏電流 I L1 ‧‧‧First leakage current
IL2‧‧‧第二洩漏電流 I L2 ‧‧‧second leakage current
ID1‧‧‧第一放電電流 A first discharge current I D1 ‧‧‧
ID2‧‧‧第二放電電流 I D2 ‧‧‧second discharge current
Claims (26)
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TW102118514A TW201445845A (en) | 2013-05-24 | 2013-05-24 | Parallel discharge regulation device and regulation method thereof |
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TW102118514A TW201445845A (en) | 2013-05-24 | 2013-05-24 | Parallel discharge regulation device and regulation method thereof |
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TW201445845A true TW201445845A (en) | 2014-12-01 |
TWI489722B TWI489722B (en) | 2015-06-21 |
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TW102118514A TW201445845A (en) | 2013-05-24 | 2013-05-24 | Parallel discharge regulation device and regulation method thereof |
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Cited By (1)
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TWI685167B (en) * | 2016-05-27 | 2020-02-11 | 大陸商恩斯邁電子(深圳)有限公司 | Current regulation system |
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WO2018151110A1 (en) * | 2017-02-14 | 2018-08-23 | ヤマハ発動機株式会社 | Power supply circuit |
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US7929325B2 (en) * | 2008-05-27 | 2011-04-19 | General Electric Company | High efficiency, multi-source photovoltaic inverter |
TWI387191B (en) * | 2009-06-02 | 2013-02-21 | Richtek Technology Corp | Voltage mode switching regulator and control circuit and method therefor |
CN101707439A (en) * | 2009-11-24 | 2010-05-12 | 南京航空航天大学 | Multi-input Buck direct-current converter and control system thereof |
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TWI685167B (en) * | 2016-05-27 | 2020-02-11 | 大陸商恩斯邁電子(深圳)有限公司 | Current regulation system |
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TWI489722B (en) | 2015-06-21 |
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