CN104899687B - Calculator room equipment position automatic identifier and application method - Google Patents
Calculator room equipment position automatic identifier and application method Download PDFInfo
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Abstract
本发明涉及机房设备自动管理技术领域,是一种机房设备位置自动辨识装置及使用方法,其包括机柜、传动装置、扫描器和控制模块,传动装置包括两个传送定滑轮、传送皮带、电机和滑轨,两个传动定滑轮分别固定在机柜的顶部和底部,两个传送定滑轮的外轮之间通过传送皮带连接,传送定滑轮的内轴与电机通过传送皮带连接,两条滑轨分别垂直固定在机柜柜顶和柜底上且设在传送皮带的外侧,扫描器安装在滑轨上且其垂直固定在传送皮带的一侧,控制模块包括电机驱动控制模块和数据处理模块,控制模块驱动电机转动,带动扫描器进行扫描。本发明通过自动扫描器可实现设备位置信息的自动更新,大幅降低人工进行设备盘点和设备位置确定的工作量,提高工作效率。
The invention relates to the technical field of automatic management of equipment in a computer room, and relates to a device for automatically identifying the location of equipment in a computer room and a method for using it. It includes a cabinet, a transmission device, a scanner and a control module. Slide rails, two transmission fixed pulleys are respectively fixed on the top and bottom of the cabinet, the outer wheels of the two transmission fixed pulleys are connected by a transmission belt, the inner shaft of the transmission fixed pulley is connected to the motor by a transmission belt, and the two slide rails are respectively vertical It is fixed on the top and bottom of the cabinet and set outside the conveyor belt. The scanner is installed on the slide rail and fixed vertically on one side of the conveyor belt. The control module includes a motor drive control module and a data processing module. The control module drives The motor rotates to drive the scanner to scan. The invention can realize automatic update of equipment position information through the automatic scanner, greatly reduces the workload of manual equipment inventory and equipment position determination, and improves work efficiency.
Description
技术领域technical field
本发明涉及机房设备自动管理技术领域,是一种机房设备位置自动辨识装置及使用方法。The invention relates to the technical field of automatic management of equipment in a computer room, and relates to a device for automatically identifying the location of equipment in a computer room and a method for using it.
背景技术Background technique
目前机房设备资产管理主要通过设备资产标签、条码标签、二维码标签、RFID标签等方式实现机柜内设备信息的标示。另有,采用RFID技术的机柜可通过机柜上的RFID天线对柜内设备进行自动盘点。在现有的设备中,还无法实现设备在机柜内的空间位置信息自动获取,当设备在机柜内的上下位置发生变化,或设备被调整至其他机柜后,还需人工对设备具体位置信息进行核实并修改,特别是在机房搬迁或大量设备位置调整时,还需耗费大量人力对设备位置信息进行重新盘点和信息修改,无法真正实现设备的全自动资产管理。At present, equipment asset management in the computer room mainly realizes the labeling of equipment information in the cabinet through equipment asset labels, barcode labels, two-dimensional code labels, and RFID labels. In addition, cabinets using RFID technology can automatically take inventory of the equipment in the cabinet through the RFID antenna on the cabinet. In the existing equipment, it is still impossible to automatically obtain the spatial location information of the equipment in the cabinet. When the upper and lower positions of the equipment in the cabinet change, or the equipment is adjusted to other cabinets, the specific location information of the equipment needs to be manually checked. Verification and modification, especially when the computer room is relocated or a large number of equipment locations are adjusted, it takes a lot of manpower to re-inventory and modify the equipment location information, and it is impossible to truly realize fully automatic asset management of equipment.
发明内容Contents of the invention
本发明提供了一种机房设备位置自动辨识装置,克服了上述现有技术之不足,其能有效解决现有技术中无法实现机房设备自动管理及机柜内设备空间位置信息无法自动获取的问题。The present invention provides an automatic identification device for machine room equipment, which overcomes the above-mentioned deficiencies in the prior art, and can effectively solve the problems in the prior art that automatic management of machine room equipment and automatic acquisition of space position information of equipment in the cabinet cannot be achieved.
本发明的技术方案是通过以下措施来实现的:一种机房设备位置自动辨识装置,其特征在于包括机柜、传动装置、扫描器和控制模块,所述的传动装置包括两个传送定滑轮、传送皮带、电机和滑轨,两个传动定滑轮分别固定在机柜的顶部和底部,两个传送定滑轮的外轮之间连接有传送皮带,电机与其中一个传送定滑轮的内轴通过皮带连接,两条滑轨的两端垂直固定在机柜柜顶和柜底上且分别固定在传送皮带的两侧,扫描器安装在滑轨上且其垂直固定在传送皮带一侧;控制模块包括电机驱动控制模块和数据处理模块,电机驱动控制模块的输入端与电机通过导线电连接,电机驱动控制模块的输出端与数据处理模块的输入端通过导线电连接,扫描器的数据传输接口端与数据处理模块通过排线电连接。The technical solution of the present invention is achieved through the following measures: an automatic identification device for machine room equipment, which is characterized in that it includes a cabinet, a transmission device, a scanner and a control module, and the transmission device includes two transmission fixed pulleys, a transmission Belts, motors and slide rails, two transmission fixed pulleys are respectively fixed on the top and bottom of the cabinet, a transmission belt is connected between the outer wheels of the two transmission fixed pulleys, and the motor is connected to the inner shaft of one of the transmission fixed pulleys through a belt. The two ends of the slide rails are vertically fixed on the top and bottom of the cabinet and are respectively fixed on both sides of the conveyor belt. The scanner is installed on the slide rail and is vertically fixed on one side of the conveyor belt; the control module includes a motor drive control module and the data processing module, the input end of the motor drive control module is electrically connected to the motor through a wire, the output end of the motor drive control module is electrically connected to the input end of the data processing module through a wire, and the data transmission interface end of the scanner is connected to the data processing module through Cable connection.
下面是对上述实用新型技术方案的进一步优化或/和改进:Below is the further optimization or/and improvement to above-mentioned utility model technical scheme:
上述所述的数据处理模块可包括电源转换器、以太网控制器、MCU控制器和反相器,通过电源转换器将交流电源转换为直流电源,以太网控制器的输入端通过导线连接在直流电源上,以太网控制器的输出端通过导线电连接有直流接地端,MCU控制器的输入端与以太网控制器的另一个输出端通过导线电连接,扫描器数据接口端与MCU控制器的通信端口电连接,MCU控制器的输出端与其中一个反相器的输入端通过导线电连接,两个反相器之间通过导线电连接,反相器的输出端与相对应的电机驱动电路的输入端通过导线电连接,电机驱动电路的输出端与电机的输入端通过导线电连接。The above-mentioned data processing module may include a power converter, an Ethernet controller, an MCU controller and an inverter, and the AC power is converted into a DC power by the power converter, and the input of the Ethernet controller is connected to the DC power by a wire. On the power supply, the output end of the Ethernet controller is electrically connected to the DC ground end through a wire, the input end of the MCU controller is electrically connected to the other output end of the Ethernet controller through a wire, and the scanner data interface end is connected to the MCU controller. The communication port is electrically connected, the output end of the MCU controller is electrically connected to the input end of one of the inverters through a wire, the two inverters are electrically connected through a wire, and the output end of the inverter is connected to the corresponding motor drive circuit The input end of the motor drive circuit is electrically connected to the input end of the motor through a wire, and the output end of the motor driving circuit is electrically connected to the input end of the motor through a wire.
上述还可包括设备台账管理系统,在所述的以太网控制器上设有RJ45接口,设备台账管理系统通过RJ45接口与以太网控制器进行数据通信。The above can also include an equipment ledger management system, the Ethernet controller is provided with an RJ45 interface, and the equipment ledger management system communicates with the Ethernet controller through the RJ45 interface.
上述所述的电机驱动控制模块可包含有两个电机驱动电路,电机驱动电路的输入端均通过导线电连接在直流电源上,电机驱动电路的输出端均通过导线电连接在直流接地端上。The motor drive control module mentioned above may include two motor drive circuits, the input ends of the motor drive circuits are electrically connected to the DC power supply through wires, and the output ends of the motor drive circuits are electrically connected to the DC ground terminal through wires.
上述在机柜内设有设备安装立柱,在设备安装立柱上有设备安装位置标示;或/和,机柜内存放的设备上均贴有设备编码,且超过2个设备安装位置的设备再次贴上该设备编码。As mentioned above, there are equipment installation columns in the cabinet, and equipment installation positions are marked on the equipment installation columns; or/and, equipment codes are pasted on the equipment stored in the cabinet, and the equipment with more than 2 equipment installation positions is affixed with this code again. equipment number.
本发明的技术方案之二是通过以下措施来实现的:一种使用所述的机房设备位置自动辨识装置的方法,按照下述步骤进行:The second technical solution of the present invention is achieved through the following measures: a method for using the device for automatically identifying the position of equipment in a computer room is carried out according to the following steps:
步骤一:根据数据处理模块和电机驱动控制模块接收到的设备启动信号,开始对设备进行盘点,完成机柜中的数据处理模块与设备台账管理系统的握手,之后进入步骤二。Step 1: According to the equipment startup signal received by the data processing module and the motor drive control module, start to take inventory of the equipment, complete the handshake between the data processing module in the cabinet and the equipment account management system, and then enter step 2.
步骤二:数据处理模块驱动电机使扫描器到达第一台设备编码处,扫描器读取设备编码,并上传至数据处理模块,由数据处理模块上传至设备台账管理系统,并向下移动扫描器准备扫描设备安装位置标示,之后进入步骤三;Step 2: The data processing module drives the motor to make the scanner reach the first equipment code, the scanner reads the equipment code, and uploads it to the data processing module, and the data processing module uploads it to the equipment ledger management system, and moves downward to scan The device is ready to scan the device installation location mark, and then go to step 3;
步骤三:读取机柜立柱上设备安装位置标示,并上传至数据处理模块,由数据处理模块上传至设备台账管理系统,之后进入步骤四;Step 3: Read the equipment installation position mark on the column of the cabinet, and upload it to the data processing module, which uploads it to the equipment account management system, and then enters step 4;
步骤四:设备台账管理系统对同一机柜在本次数据采集周期内上传的数据进行查询判断,首先查询此设备安装位置上原安装设备信息,之后将此信息与本周期内传回的设备编码进行比对;若相同则直接进入步骤六,若不同则执行步骤五;Step 4: The equipment ledger management system queries and judges the data uploaded by the same cabinet during this data collection cycle. First, it queries the information of the original installed equipment on the installation location of the equipment, and then compares this information with the equipment code sent back in this period. Compare; if they are the same, go directly to step 6, and if they are different, go to step 5;
步骤五:对本安装位置上安装设备信息进行更新,之后进入步骤六;Step 5: Update the information of the equipment installed on this installation location, and then go to Step 6;
步骤六:信息比对完毕后,判断是否为本机柜最后一个安装位置,若是则结束此机柜设备盘点,若不是则执行步骤七;Step 6: After the information comparison is completed, judge whether it is the last installation location of the cabinet, if so, end the equipment inventory of this cabinet, if not, go to step 7;
步骤七:若判断还未到达本机柜最后一个设备安装位置,则驱动电机控制扫描器到达下一设备位置,并进行步骤三至步骤六的循环,直到确定扫描完本机柜最后一个安装位置,则机柜盘点结束。Step 7: If it is judged that the last equipment installation position of the cabinet has not been reached, drive the motor to control the scanner to reach the next equipment position, and perform the cycle from step 3 to step 6 until it is determined that the last installation position of the cabinet is scanned, then The cabinet inventory is over.
本发明将自动扫描器集成在设备机柜中,实现了机柜内设备管理条码自动扫描。通过自动获取扫描机柜安装位置识别码、设备识别码及后台数据纠错逻辑控制端,精确定位各台设备在机房中的安装位置,对采集数据进行准确性判断,可防止出现设备位置与实际位置不符,同一设备出现在两个位置或同一位置出现两台设备的情况,大幅降低人工进行设备盘点和设备位置确定的工作量,提高了扫描速度和精度,有效提高了盘点工作的效率。The invention integrates the automatic scanner in the equipment cabinet, and realizes the automatic scanning of the equipment management barcode in the cabinet. By automatically obtaining the scanning cabinet installation location identification code, equipment identification code and background data error correction logic control terminal, accurately locate the installation location of each equipment in the computer room, and judge the accuracy of the collected data, which can prevent the occurrence of equipment location and actual location Inconsistency, the same device appears in two locations or two devices appear in the same location, which greatly reduces the workload of manual equipment inventory and equipment location determination, improves scanning speed and accuracy, and effectively improves the efficiency of inventory work.
附图说明Description of drawings
附图1为本发明条码自动扫描控制装置示意图。Accompanying drawing 1 is the schematic diagram of the barcode automatic scanning control device of the present invention.
附图2为本发明设备位置标记方式示意图。Accompanying drawing 2 is the schematic diagram of the equipment position marking method of the present invention.
附图3为本发明控制模块示意图。Accompanying drawing 3 is the schematic diagram of the control module of the present invention.
附图4为本发明工作流程图。Accompanying drawing 4 is work flowchart of the present invention.
附图中的编码分别为:101为传送定滑轮,102为传送皮带,103为电机,104为滑轨,105为扫描器,106为电机驱动控制模块,107为数据处理模块,108为排线,201为机柜标示ID,202为设备编码,203为设备安装位置标示,301为电源转换器,302为直流电源,303为直流接地端,304为RJ45接口,305为以太网控制器,306为MCU控制器,307为反相器Ⅰ,308为反相器Ⅱ,309为电机驱动控制电路Ⅰ,309为电机驱动控制电路Ⅰ,310为电机驱动控制电路Ⅱ,311为设备台账管理系统,312为扫描器数据接口端。The codes in the drawings are: 101 is the transmission fixed pulley, 102 is the transmission belt, 103 is the motor, 104 is the slide rail, 105 is the scanner, 106 is the motor drive control module, 107 is the data processing module, 108 is the cable , 201 is the ID of the cabinet, 202 is the equipment code, 203 is the installation location of the equipment, 301 is the power converter, 302 is the DC power supply, 303 is the DC ground terminal, 304 is the RJ45 interface, 305 is the Ethernet controller, 306 is the MCU controller, 307 is the inverter I, 308 is the inverter II, 309 is the motor drive control circuit I, 309 is the motor drive control circuit I, 310 is the motor drive control circuit II, 311 is the equipment account management system, 312 is the scanner data interface port.
具体实施方式Detailed ways
本发明不受下述实施例的限制,可根据本发明的技术方案与实际情况来确定具体的实施方式。The present invention is not limited by the following examples, and specific implementation methods can be determined according to the technical solutions of the present invention and actual conditions.
下面结合实施例及附图对本发明作进一步描述:Below in conjunction with embodiment and accompanying drawing, the present invention will be further described:
实施例一:如附图1所示,该机房设备位置自动辨识装置包括机柜、传动装置、扫描器和控制模块,所述的传动装置包括两个传送定滑轮101、传送皮带102、电机103和滑轨104,两个传动定滑轮101分别固定在机柜的顶部和底部,两个传送定滑轮101的外轮之间连接有传送皮带102,电机103与其中一个传送定滑轮101的内轴通过皮带连接,两条滑轨104的两端垂直固定在机柜柜顶和柜底上且分别固定在传送皮带102的两侧,扫描器105安装在滑轨104上且其垂直固定在传送皮带102的一侧;控制模块包括电机驱动控制模块106和数据处理模块107,电机驱动控制模块106的输入端与电机103通过导线电连接,电机驱动控制模块106的输出端与数据处理模块107的输入端通过导线电连接,扫描器105的数据传输接口端与数据处理模块107通过排线电连接。在使用过程中,扫描器105与机柜采用集成一体的设计,在机柜门108内靠近合页位置安装设备滑轨104,并在机柜门顶部安装电机103、电机驱动控制模块106及数据处理模块107,并在机柜门的顶部和底部分别安装传动定滑轮101,两定滑轮之间通过传送皮带102连接。扫描器105安装在滑轨104上,并与传动皮带102连接,由安装在机柜顶部的控制电路和电机驱动电机,电机带动传送皮带102顺时针或逆时针转动,扫描器105跟随传送皮带102的转动而沿竖直方向上下滑动。扫描器105数据传输接口端通过排线108与安装在机柜门顶部的数据处理模块及电机控制模块连接。每个机柜数据处理模块及电机控制模块均设有唯一的识别ID,以便确定各机柜在机房内的位置。Embodiment 1: As shown in the accompanying drawing 1, the equipment position automatic identification device in the machine room includes a cabinet, a transmission device, a scanner and a control module, and the transmission device includes two transmission fixed pulleys 101, a transmission belt 102, a motor 103 and Slide rail 104, two transmission fixed pulleys 101 are respectively fixed on the top and bottom of the cabinet, a transmission belt 102 is connected between the outer wheels of the two transmission fixed pulleys 101, and the motor 103 is connected to the inner shaft of one of the transmission fixed pulleys 101 through a belt , the two ends of the two slide rails 104 are vertically fixed on the top and the bottom of the cabinet and are respectively fixed on both sides of the conveyor belt 102, and the scanner 105 is installed on the slide rail 104 and is vertically fixed on one side of the conveyor belt 102 The control module includes a motor drive control module 106 and a data processing module 107, the input end of the motor drive control module 106 is electrically connected with the motor 103 through a wire, and the output end of the motor drive control module 106 is electrically connected with the input end of the data processing module 107 through a wire Connected, the data transmission interface end of the scanner 105 is electrically connected with the data processing module 107 through a cable. During use, the scanner 105 and the cabinet adopt an integrated design, and the equipment slide rail 104 is installed in the cabinet door 108 close to the hinge position, and the motor 103, the motor drive control module 106 and the data processing module 107 are installed on the top of the cabinet door , and fixed transmission pulleys 101 are respectively installed on the top and bottom of the cabinet door, and the two fixed pulleys are connected by a transmission belt 102 . Scanner 105 is installed on the slide rail 104, and is connected with transmission belt 102, is driven motor by the control circuit and motor that are installed on the cabinet top, and motor drives transmission belt 102 to rotate clockwise or counterclockwise, and scanner 105 follows the movement of transmission belt 102 Turn to slide up and down vertically. The data transmission interface end of the scanner 105 is connected to the data processing module and the motor control module installed on the top of the cabinet door through a cable 108 . Each cabinet data processing module and motor control module is provided with a unique identification ID so as to determine the position of each cabinet in the machine room.
可根据实际需要,对上述实施例一作进一步优化或/和改进:According to actual needs, the first embodiment above can be further optimized or/and improved:
如附图1、3所示:所述的数据处理模块107包括电源转换器301、以太网控制器305、MCU控制器306、反相器Ⅰ307和反相器Ⅱ308,通过电源转换器301将交流电源转换为直流电源302,以太网控制器305的输入端通过导线连接在直流电源302上,以太网控制器305的输出端通过导线电连接有直流接地端303,MCU控制器306的输入端与以太网控制器305的另一个输出端通过导线电连接,扫描器数据接口端312与MCU控制器306的通信端口电连接,MCU控制器306的输出端与反相器Ⅰ307的输入端通过导线电连接,反相器Ⅰ307和反相器Ⅱ308之间通过导线电连接,反相器Ⅰ307和反相器Ⅱ308的输出端分别与相对应的电机驱动控制模块106的输入端通过导线电连接,电机驱动控制模块106的输出端与电机103的输入端通过导线电连接。在使用过程中,电源转换器301将220V交流电源转化为5V直流电源VCC302,且在电源火线处配有200V/1A熔丝保险,确保模块出现故障时能及时与设备PDU断开,防止因模块故障导致为设备供电PDU跳闸,造成设备中断,303为模块直流接地端,确保各模块用电安全。As shown in Figures 1 and 3: the data processing module 107 includes a power converter 301, an Ethernet controller 305, an MCU controller 306, an inverter I 307 and an inverter II 308, and the power converter 301 converts the AC The power supply is converted into a DC power supply 302, the input terminal of the Ethernet controller 305 is connected to the DC power supply 302 through a wire, the output terminal of the Ethernet controller 305 is electrically connected to a DC ground terminal 303 through a wire, and the input terminal of the MCU controller 306 is connected to the DC power supply 302 through a wire. The other output end of the Ethernet controller 305 is electrically connected through a wire, the scanner data interface end 312 is electrically connected with the communication port of the MCU controller 306, and the output end of the MCU controller 306 is electrically connected to the input end of the inverter I 307 through a wire. connection, the inverter I 307 and the inverter II 308 are electrically connected through wires, the output terminals of the inverter I 307 and the inverter II 308 are respectively electrically connected with the input terminals of the corresponding motor drive control module 106 through wires, and the motor drives The output terminal of the control module 106 is electrically connected with the input terminal of the motor 103 through wires. During use, the power converter 301 converts the 220V AC power into a 5V DC power VCC302, and is equipped with a 200V/1A fuse fuse at the live wire of the power supply to ensure that the module can be disconnected from the equipment PDU in time when the module fails, preventing the The fault causes the PDU that powers the equipment to trip, causing the equipment to be interrupted. 303 is the DC ground terminal of the module to ensure the safety of power consumption of each module.
如附图1、3所示:电机驱动控制模块106包含有电机驱动电路Ⅰ309和电机驱动电路Ⅱ310,电机驱动电路Ⅰ309和电机驱动电路Ⅱ310的输入端均通过导线电连接在直流电源302上,电机驱动电路309的输出端均通过导线电连接在直流接地端303上。在使用过程中,反相器Ⅰ307和反相器Ⅱ308的输出端与相对应的电机驱动电路Ⅰ309和电机驱动电路Ⅱ310的输入端通过导线电连接,电机驱动电路Ⅰ309和电机驱动电路Ⅱ310的输出端与电机103的输入端通过导线电连接。电机驱动控制模块106为现有公知技术。As shown in Figures 1 and 3: the motor drive control module 106 includes a motor drive circuit I 309 and a motor drive circuit II 310, the input terminals of the motor drive circuit I 309 and the motor drive circuit II 310 are electrically connected to the DC power supply 302 through wires, and the motor The output terminals of the driving circuit 309 are electrically connected to the DC ground terminal 303 through wires. During use, the output ends of the inverter I 307 and the inverter II 308 are electrically connected to the corresponding input ends of the motor drive circuit I 309 and the motor drive circuit II 310 through wires, and the output ends of the motor drive circuit I 309 and the motor drive circuit II 310 It is electrically connected with the input end of the motor 103 through wires. The motor drive control module 106 is a known technology.
如附图1、3所示:该装置还包括设备台账管理系统311,在所述的以太网控制器305上设有RJ45接口304,设备台账管理系统311通过RJ45接口304与以太网控制器305进行数据通信。在使用过程中,MCU控制器306负责通过扫描器105的扫描数据接口端311采集扫描器105内的数据,并通过以太网控制器305上的以太网RJ45接口304与设备台账管理系统311进行通信,并将该数据发送至设备台账管理系统311进行数据比对处理,接受设备台账管理系统311发回的控制命令,再经以太网控制器305处理后,产生对电机103的驱动信号,通过反相器1 307、反相器2 308和电机驱动控制模块309最终产生电机驱动信号,控制电机103正转或反转来调整扫描器105的位置,从而实现对不同位置的设备信息进行扫描读数。设备台账管理系统311为现有公知技术。As shown in accompanying drawings 1 and 3: the device also includes an equipment ledger management system 311, an RJ45 interface 304 is provided on the Ethernet controller 305, and the equipment ledger management system 311 communicates with the Ethernet control through the RJ45 interface 304 305 for data communication. During use, the MCU controller 306 is responsible for collecting the data in the scanner 105 through the scan data interface 311 of the scanner 105, and communicates with the equipment ledger management system 311 through the Ethernet RJ45 interface 304 on the Ethernet controller 305. Communication, and send the data to the equipment ledger management system 311 for data comparison processing, accept the control command sent back by the equipment ledger management system 311, and then process it through the Ethernet controller 305 to generate a drive signal for the motor 103 Inverter 1 307, inverter 2 308, and motor drive control module 309 finally generate a motor drive signal to control the motor 103 to rotate forward or reverse to adjust the position of the scanner 105, thereby realizing device information at different positions. Scan readings. The equipment ledger management system 311 is an existing known technology.
实施例二:为定位安装各设备的机柜位置,本实施例提供了设备位置定位标记方式,如附图1、2所示,定位设备安装机柜:由各机柜的条码扫描器扫描数据处理模块及电机驱动控制模块的唯一标识ID确定各机柜的位置。Embodiment 2: In order to locate the position of the cabinet where each device is installed, this embodiment provides a device position positioning mark method, as shown in Figures 1 and 2, to locate the cabinet where the device is installed: the barcode scanner of each cabinet scans the data processing module and The unique identification ID of the motor drive control module determines the position of each cabinet.
如附图1、2所示,定位机柜设备安装位置:在机柜内设有设备安装立柱,在设备安装立柱上有设备安装位置标示203。设备安装位置标示203用于扫描器105根据该标示确定该位置用于安装设备。在使用过程中,在机柜内的设备安装立柱上,用设备安装位置标示203对各标准安装位置进行标记,标准安装位置在实际设置编码的过程中被标记为“U”,例如第42U标记为“02042”,02表示数据类型且表示机柜中“U”的个数,42表示第42U。此标记方式在各机柜中相同。As shown in Figures 1 and 2, locate the installation position of the cabinet equipment: there is an equipment installation column in the cabinet, and there is an equipment installation position mark 203 on the equipment installation column. The device installation position mark 203 is used for the scanner 105 to determine the position for installing the device according to the mark. During use, on the equipment installation column in the cabinet, each standard installation position is marked with the equipment installation position mark 203, and the standard installation position is marked as "U" in the process of actually setting the code, for example, the 42nd U is marked as "02042", 02 indicates the data type and the number of "U" in the cabinet, and 42 indicates the 42nd U. This marking is the same across enclosures.
可根据实际需要,对上述实施例二作进一步优化或/和改进:According to actual needs, the above-mentioned embodiment 2 can be further optimized or/and improved:
如附图1、2所示,定位设备标识:机柜内存放的设备均贴有设备编码202,且超过2个设备标准安装位置的设备,再次贴上该设备的设备编码202。例如:在设备的左上角固定位置粘贴设备编码202,如“03200800001”,03标示数据类型且03标示设备编码,200800001为该设备的唯一编码,通过此编码与设备台账管理系统311中对应的设备具体信息进行关联,可查出该设备的具体信息。对安装位置超过2U的设备,需在该设备最后一标准安装位置处再贴一个设备编码202,这样系统就能通过同一机柜中两个相同的设备编码202计算出设备所占U数,完成设备管理系统中设备安装U数字段。在实际使用中设备安装位置标示203粘贴在设备编码202的对应位置下方。通过条码标示设计,实现对跨多个安装位置设备实际占安装位置U数自动计算,并对机柜空余安装位置进行自动统计分析,提高了工作效率。As shown in Figures 1 and 2, locate the equipment identification: the equipment stored in the cabinet is all affixed with equipment code 202, and the equipment with more than 2 standard installation positions of the equipment shall be affixed with the equipment code 202 of the equipment again. For example: Paste the equipment code 202 at a fixed position in the upper left corner of the equipment, such as "03200800001", 03 indicates the data type and 03 indicates the equipment code, 200800001 is the unique code of the equipment, through this code and the corresponding one in the equipment ledger management system 311 The specific information of the device can be associated to find out the specific information of the device. For equipment whose installation position exceeds 2U, another equipment code 202 needs to be pasted at the last standard installation position of the equipment, so that the system can calculate the number of Us occupied by the equipment through two identical equipment codes 202 in the same cabinet, and complete the equipment. Device installation U number field in the management system. In actual use, the equipment installation position mark 203 is pasted below the corresponding position of the equipment code 202 . Through the design of barcode marking, the automatic calculation of the number of Us actually occupied by the equipment across multiple installation locations is realized, and the automatic statistical analysis of the vacant installation locations of the cabinets is carried out, which improves the work efficiency.
实施例三:一种使用机房设备位置自动辨识装置的方法,按照下述步骤进行:Embodiment 3: A method for using an automatic identification device for the location of equipment in a computer room is carried out according to the following steps:
步骤一:根据数据处理模块107和电机驱动控制模块106接收到的设备启动信号,开始对设备进行盘点,完成机柜中的数据处理模块107与设备台账管理系统311的握手,之后进入步骤二。Step 1: According to the device startup signal received by the data processing module 107 and the motor drive control module 106, start inventorying the device, complete the handshake between the data processing module 107 in the cabinet and the device account management system 311, and then enter step 2.
步骤二:数据处理模块107驱动电机103使扫描器105到达第一台设备编码处,扫描器105读取设备编码202,并上传至数据处理模块107,由数据处理模块107上传至设备台账管理系统311,并向下移动扫描器105准备扫描设备安装位置标示203,之后进入步骤三;Step 2: The data processing module 107 drives the motor 103 to make the scanner 105 reach the first device code, the scanner 105 reads the device code 202, and uploads it to the data processing module 107, and the data processing module 107 uploads it to the device ledger management system 311, and move the scanner 105 downwards to prepare for scanning the equipment installation position mark 203, and then enter step three;
步骤三:读取机柜立柱上设备安装位置标示203,并上传至数据处理模块107,由数据处理模块107上传至设备台账管理系统311,之后进入步骤四;Step 3: Read the equipment installation position mark 203 on the column of the cabinet, and upload it to the data processing module 107, and the data processing module 107 uploads it to the equipment account management system 311, and then enter step 4;
步骤四:设备台账管理系统311对同一机柜在本次数据采集周期内上传的数据进行查询判断,首先查询此设备安装位置上原安装设备信息,之后将此信息与本周期内传回的设备编码202进行比对;若相同则直接进入步骤六,若不同则执行步骤五;Step 4: The equipment ledger management system 311 queries and judges the data uploaded by the same cabinet in this data collection cycle, first queries the information of the original installed equipment on the installation location of the equipment, and then compares this information with the equipment code sent back in this period 202 for comparison; if they are the same, then go directly to step 6, and if they are different, then perform step 5;
步骤五:对本安装位置上安装设备信息进行更新,之后进入步骤六;Step 5: Update the information of the equipment installed on this installation location, and then go to Step 6;
步骤六:信息比对完毕后,判断是否为本机柜最后一个安装位置,若是则结束此机柜设备盘点,若不是则执行步骤七;Step 6: After the information comparison is completed, judge whether it is the last installation location of the cabinet, if so, end the equipment inventory of this cabinet, if not, go to step 7;
步骤七:若判断还未到达本机柜最后一个设备安装位置,则驱动电机103控制扫描器105到达下一设备位置,并进行步骤三至步骤六的循环,直到确定本机柜最后一个安装位置,则机柜盘点结束。Step 7: If it is judged that the last device installation position of the cabinet has not been reached, the drive motor 103 controls the scanner 105 to reach the next device position, and the cycle from step 3 to step 6 is performed until the last installation position of the cabinet is determined, then The cabinet inventory is over.
在实际使用过程中,进入设备盘点工作模式后,首先根据电机驱动控制模块106和数据处理模块107接收到的设备启动信号,开始对设备进行扫描,完成机柜中的数据处理模块107与设备台账管理系统311的握手;由数据处理模块107驱动电机103使扫描器105到达第一台设备的设备编码202处,扫描器105读取设备编码202,并上传至数据处理模块107,由数据处理模块107上传至设备台账管理系统311,并向下移动扫描器105准备扫描设备安装位置标示203;扫描器105读取机柜立柱上的设备安装位置标示203,并上传至数据处理模块107,由数据处理模块107上传至设备台账管理系统311,设备台账管理系统311对同一机柜在本次数据采集周期内上传的数据进行查询判断,首先查询确定此设备安装位置上原安装设备信息,之后将此信息与本周期内传回的设备编码202进行比对,判断是否为本机柜最后一个安装位置,若是则结束此机柜设备盘点,若不是则还未到达本机柜最后一个设备安装位置,再由数据处理模块107驱动电机控制扫描器到达下一设备位置,直到确定扫描器105扫描完本机柜最后一个设备安装位置标示203,则机柜盘点结束。In the actual use process, after entering the equipment inventory work mode, firstly, according to the equipment startup signal received by the motor drive control module 106 and the data processing module 107, start scanning the equipment, and complete the data processing module 107 in the cabinet and the equipment ledger. The handshake of the management system 311; the data processing module 107 drives the motor 103 to make the scanner 105 reach the device code 202 of the first device, and the scanner 105 reads the device code 202 and uploads it to the data processing module 107, and the data processing module 107 is uploaded to the equipment ledger management system 311, and the scanner 105 is moved downward to prepare to scan the equipment installation position mark 203; the scanner 105 reads the equipment installation position mark 203 on the column of the cabinet, and uploads it to the data processing module 107. The processing module 107 uploads to the equipment ledger management system 311. The equipment ledger management system 311 queries and judges the data uploaded by the same cabinet in this data collection period. Compare the information with the equipment code 202 sent back in this period to determine whether it is the last installation position of the cabinet. If so, end the equipment inventory of this cabinet. The processing module 107 drives the motor to control the scanner to reach the next equipment position until it is determined that the scanner 105 scans the last equipment installation position mark 203 of the cabinet, and then the cabinet inventory ends.
以上技术特征构成了本发明的实施例,其具有较强的适应性和实施效果,可根据实际需要增减非必要的技术特征,来满足不同情况的需求。The above technical features constitute the embodiment of the present invention, which has strong adaptability and implementation effect, and non-essential technical features can be increased or decreased according to actual needs to meet the needs of different situations.
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