JPS60134604A - Antenna device - Google Patents
Antenna deviceInfo
- Publication number
- JPS60134604A JPS60134604A JP24321383A JP24321383A JPS60134604A JP S60134604 A JPS60134604 A JP S60134604A JP 24321383 A JP24321383 A JP 24321383A JP 24321383 A JP24321383 A JP 24321383A JP S60134604 A JPS60134604 A JP S60134604A
- Authority
- JP
- Japan
- Prior art keywords
- antenna device
- level
- section
- antenna
- map
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
- 239000007788 liquid Substances 0.000 claims abstract description 4
- 230000003028 elevating effect Effects 0.000 abstract 3
- 238000010586 diagram Methods 0.000 description 5
- 230000000694 effects Effects 0.000 description 3
- HCHKCACWOHOZIP-UHFFFAOYSA-N Zinc Chemical compound [Zn] HCHKCACWOHOZIP-UHFFFAOYSA-N 0.000 description 1
- 238000004587 chromatography analysis Methods 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 239000011701 zinc Substances 0.000 description 1
- 229910052725 zinc Inorganic materials 0.000 description 1
Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01Q—ANTENNAS, i.e. RADIO AERIALS
- H01Q1/00—Details of, or arrangements associated with, antennas
- H01Q1/12—Supports; Mounting means
- H01Q1/125—Means for positioning
Landscapes
- Variable-Direction Aerials And Aerial Arrays (AREA)
- Support Of Aerials (AREA)
Abstract
Description
【発明の詳細な説明】
〔発明の技術分野〕
この発明は静止衛星と地上間のマイクロ波通信に使用さ
れ、−次放射器と反射鏡系からなるアンテナ部と、上記
アンテナ部によって放射される電波の主ビームの方向を
調整する方向調整部とから構成されるアンテナ装置の改
良に関するものであるO
静止衛星と地上間のマイクロ波通信に使用されるアンテ
ナ装置においては、上記アンテナ装置における主ビーム
の方向を上記静止衛生の方向に向ける必要がある。例え
ば12GH,帝で使用される開口径的1mのアンテナの
主ビームのビーム幅は約1度であり、0.2度程度の精
度で方向調整を行なう必要がある。[Detailed Description of the Invention] [Technical Field of the Invention] The present invention is used for microwave communication between a geostationary satellite and the ground, and includes an antenna section consisting of a -order radiator and a reflector system, and a radio wave radiated by the antenna section. This relates to improvement of an antenna device comprising a direction adjustment unit that adjusts the direction of the main beam of radio waves. must be oriented in the direction of the stationary hygiene. For example, the beam width of the main beam of an antenna with an aperture diameter of 1 m used in the 12 GH system is about 1 degree, and it is necessary to adjust the direction with an accuracy of about 0.2 degrees.
また、地上から見た静止衛星の方向は、静止衛星の位置
および地上の緯度、経度によって定まり。Also, the direction of a geostationary satellite as seen from the ground is determined by the position of the geostationary satellite and the latitude and longitude of the ground.
上記方向は地上の各都市によってそれぞれ異なる。The above directions differ depending on each city on the ground.
例えば静止衛星の位置を東経110度の静止軌道上とす
ると、方位角および仰角は表1に示す値となる。For example, if a geostationary satellite is located on a geostationary orbit at 110 degrees east longitude, the azimuth and elevation angles will be the values shown in Table 1.
表1
〔従来技術〕
従来、パラボラ形式によるこのようなアンテナ装置は第
1図に示すように一次放射器(1)9反射鏡(2)、方
位角−牌整部(3)、仰角調整部(4)、シンクロトラ
ンスミッタ(5a)t (5b)および角度表示部(6
)とから構成され、上記アンテナ装置の主ビームの方向
がジンクロト2ンスミツタ(5a)(5b)を利用して
角度表示部(6)に表示されていた。そしてこの角度を
参考にして方向調整を行なっていた。このようなアンテ
ナ装置ではシンクロトランスミッタ(5a)(5b)お
よび角度表示部(6)を必要とするために高価になると
bう問題点がめった。また、このようなアンテナ装置の
設置場所が異なる場合9例えば東京あるいは札幌という
場合にはそれぞれ静止衛星の方向が異なるので、それら
の方向を示した資料が必要になるという問題点があった
。Table 1 [Prior Art] Conventionally, as shown in Fig. 1, such a parabolic antenna device consists of a primary radiator (1), 9 reflectors (2), an azimuth angle adjustment section (3), and an elevation angle adjustment section. (4), synchro transmitter (5a)t (5b) and angle display section (6)
), and the direction of the main beam of the antenna device was displayed on the angle display section (6) using the zinc chromatography detectors (5a) and (5b). The direction was then adjusted using this angle as a reference. Such an antenna device often has the problem of being expensive because it requires synchro transmitters (5a) (5b) and an angle display section (6). Furthermore, when such antenna devices are installed in different locations, 9 for example in Tokyo or Sapporo, the directions of the geostationary satellites are different, so there is a problem in that materials showing these directions are required.
また、82図に示すようにシンクロトランスミッタおよ
び角度表示部を用いない安価なアンテナ装置の場合には
、受信器などの受信レベルモニター機器(7)を参考に
して方向調整を行なう必要があった0僅って上記アンテ
ナ装置のビーム幅が狭い場合には受信レベルの強い範囲
が狭いので方向調整が難しいという欠点があった。In addition, as shown in Figure 82, in the case of an inexpensive antenna device that does not use a synchro transmitter or an angle display section, it is necessary to adjust the direction using a reception level monitor device (7) such as a receiver. If the beam width of the antenna device is slightly narrow, the range where the reception level is strong is narrow, making it difficult to adjust the direction.
(発明の概要〕 この発明はこのような欠点を除去するために。(Summary of the invention) This invention aims to eliminate such drawbacks.
アンテナ装置に水平度を測る水準器と方位角を測る磁石
盤、あるいは水準器と磁石盤を組み合わせた機器を組み
込むことによって、アンテナ装置の主ビームの方向調整
を改善したもので、以下図面を用いて詳細に説明する。This improves the direction adjustment of the main beam of the antenna device by incorporating a spirit level to measure horizontality and a magnetic disk to measure azimuth, or a device that combines a level and a magnetic disk. This will be explained in detail.
第3図はこの発明によるアンテナ装置の構成を示す図で
、−次放射器(1)1反射鏡(2)、方位角調整部(3
)、仰角調整部(4)、水準器(8)および磁石盤(9
)とから構成されている。反射鏡(2)の裏側に方位角
調整部(3)、仰角調整部(4)、水準器(8)および
磁石盤(9)を設けており、水準器(8)と磁石盤(9
)を参考にして反射鏡(2)の傾き角と方向を調整する
ことができる。FIG. 3 is a diagram showing the configuration of the antenna device according to the present invention, which includes a -order radiator (1), a reflector (2), and an azimuth adjustment section (3).
), elevation adjustment section (4), spirit level (8) and magnetic disk (9)
). An azimuth adjustment section (3), an elevation adjustment section (4), a spirit level (8), and a magnetic disc (9) are provided on the back side of the reflector (2).
) can be used to adjust the tilt angle and direction of the reflector (2).
すなわち2反射鏡(2)で反射され静止衛星の方向へ向
かうべき電波の方向を調整することかで筺る〇水準器(
8)は第4図に示すように1円弧状に曲げられたパイプ
顛を1反射ill! (2)と−緒に動く構造物(11
,51)に取り付けた構造とし、上記パイプ01の中の
姐絢f12が反計鐘(2)の傾鳶にあわせて動くように
なっている。上記パイプ員の表面あるいは周囲の台には
、目盛と都市名9県名あるいはこれらに類する地名が記
入されており、上記気泡aりを希望の地名の位置に合わ
せることによって容易に仰角の方向調整を行なうことが
できる。In other words, by adjusting the direction of the radio waves that are reflected by the 2 reflecting mirrors (2) and directed toward the geostationary satellite, a level gauge (
8) As shown in Figure 4, the pipe length bent into an arc is reflected once! (2) Structures that move together (11
, 51), and the second bell f12 in the pipe 01 moves in accordance with the tilting of the counter bell (2). On the surface of the pipe member or the surrounding stand, there are scales and names of cities, nine prefectures, or similar place names written on them, and the direction of the elevation angle can be easily adjusted by aligning the bubble a to the position of the desired place name. can be done.
磁石盤(9)は第5図(a)、 (b)に示すように、
水平面内でのみ動く構造物(llb)に取り付けた構造
とし。As shown in Fig. 5(a) and (b), the magnetic disk (9) is
A structure attached to a structure (llb) that moves only in the horizontal plane.
反射鏡(2)の方向と逆方向に指示部αlが動くように
なっている。指示部a鴎の周囲の台には、目盛と都市名
あるいは県名あるいはこれらに類する地名が記入されて
おり、磁石盤(9)の指示部0!19を希望の地名の位
置に合わせることによって容易に方位角の方向調整を行
なうことができる。The indicator αl is configured to move in a direction opposite to the direction of the reflecting mirror (2). Indicator A On the stand around the seagull, a scale and a city name, prefecture name, or similar place name are written.By aligning the indicator 0!19 of the magnetic disc (9) to the position of the desired place name, Azimuth can be easily adjusted.
また、水準器と磁石盤を組み合わせた機器としては、第
6図に示すように、液体a階を入れた殻Iの中に磁石盤
(9)を浮かせた構造の装置がある。上記磁石盤(9)
は上記殻α棒の中で自由に動くことが可能で699反射
鏡(2)と−緒に動く構造物(lla)に取り付けれに
上記磁石盤(9)の指示部(L!9を利用して。Furthermore, as a device combining a spirit level and a magnetic disk, there is a device having a structure in which a magnetic disk (9) is suspended in a shell I containing liquid a, as shown in FIG. The above magnetic disk (9)
can move freely within the shell α rod, and is attached to a structure (lla) that moves together with the 699 reflector (2) by using the indicator (L!9) of the magnetic disk (9). hand.
仰角と方位角を知ることができる。従って、上記指示部
αωの示す方向と、地上の各位置における方位角と仰角
が一致するように、上記殻(14)の表面に日本の地図
−を描いておけば、上記指示部a最の示す方向を希望の
地図上の位置に合わすことによって、容易に仰角と方位
角を静止衛星の方向に合わすことができる。You can know the angle of elevation and azimuth. Therefore, if a map of Japan is drawn on the surface of the shell (14) so that the direction indicated by the indicator αω coincides with the azimuth and elevation angle at each position on the ground, then By aligning the indicated direction with the desired location on the map, the elevation angle and azimuth angle can be easily aligned with the direction of the geostationary satellite.
なお、ここでは水準器および磁石盤あるいはこれらを組
み合わせた機器をアンテナ部に固定した場合について説
明したが、取りはずし可能な構造としても同様の効果を
得ることができる。さらにここではパラボラ形式のアン
テナ装置について説明したが、複数枚の反射鏡から構成
されるアンテナ装置の場合には、−次放射器から放射さ
れた電波を最後に反射させる反射鏡の裏側に、水準器と
磁石盤あるいはこれらを組み合わせた機器、および方向
調整部を設けることによって同様の効果を得ることがで
きる。Although a case has been described here in which a spirit level, a magnetic disk, or a combination thereof is fixed to the antenna section, the same effect can be obtained even if the device is of a removable structure. Furthermore, although we have described a parabolic antenna device here, in the case of an antenna device consisting of multiple reflecting mirrors, a level A similar effect can be obtained by providing a device, a magnetic disk, or a combination thereof, and a direction adjustment section.
以上説明したようにこの発明によるアンテナ装置を用い
れば、−次放射器から放射された電波な最後に反射させ
る反射鏡の裏側に、水準器と磁石盤、あるいはこれらを
組み合わせた機器と方向調整部を設けているので、主ビ
ームの方向調整が容易にでき、各指示部の目盛の値の代
わりに都市名あるいは県名などの地名を用いたり、地図
を用いているので、容易に主ビームの方向を静止衛星の
方向に向けることができる〇As explained above, if the antenna device according to the present invention is used, a level, a magnetic disc, or a device combining these and a direction adjustment unit are installed on the back side of the reflector that finally reflects the radio waves radiated from the -order radiator. This makes it easy to adjust the direction of the main beam, and the use of place names such as city or prefecture names or maps instead of the scale values on each indicator makes it easy to adjust the direction of the main beam. It is possible to direct the direction towards the geostationary satellite.
第1図は従来のアンテナ装置の構造図、第2図は従来の
アンテナ装置の他の構成図、第3図はこの発明によるア
ンテナ装置の構成図、第4図、第5図および第6図はそ
れぞれこの発明によるアンテナ装置の部分的な構造図で
ある。図中、(1)は−次放射器、(2)は反射鏡、(
3)は方位角調整部、(4)は仰角調整部、(5)はシ
ンクロトランスミフタ、(6)は角度表示部、(7)は
受信レベルモニター機器、(8)は水準器、(9)は磁
石盤、 (11はパイプ、aυは構造物。
Q3は気泡、a騰は液体、α荀は殻、a9は指示部、0
eは地図である。
なお1図中同一あるいは相当部分には同一符号を付して
示しである0
代理人大岩増雄
第 1 図
(α)(b)
第2図
(α)(b)
第5図
(α)
Iζ
第6図
5FIG. 1 is a structural diagram of a conventional antenna device, FIG. 2 is a structural diagram of another conventional antenna device, FIG. 3 is a structural diagram of an antenna device according to the present invention, and FIGS. 4, 5, and 6 2A and 2B are partial structural diagrams of an antenna device according to the present invention, respectively. In the figure, (1) is a -order radiator, (2) is a reflector, (
3) is the azimuth adjustment section, (4) is the elevation adjustment section, (5) is the synchro transmitter, (6) is the angle display section, (7) is the reception level monitor device, (8) is the spirit level, ( 9) is a magnetic disk, (11 is a pipe, aυ is a structure, Q3 is a bubble, a is a liquid, α is a shell, a9 is an indicator, 0
e is a map. Identical or equivalent parts in Figure 1 are indicated with the same reference numerals. 6 figure 5
Claims (3)
、−次放射器と反射鏡系からなるアンテナ部と、上記ア
ンテナ部を送信側とした場合に放射される電波の主ビー
ムの方向を調整する方向調整部とを備えたアンテナ装置
において、上記−次放射器から放射された電波を最後に
反射させる反射鏡の裏側に、水平度を測る水準器と方位
角を測る磁石盤を設は九ことを特徴とするアンテナ装置
。(1) It is used for microwave communication between geostationary satellites and the ground, and is composed of an antenna section consisting of a -order radiator and a reflector system, and the direction of the main beam of radio waves emitted when the antenna section is on the transmitting side. In the antenna device equipped with a direction adjustment unit, a level for measuring horizontality and a magnetic disc for measuring azimuth are installed on the back side of the reflector that finally reflects the radio waves emitted from the -order radiator. An antenna device characterized by nine things.
たことを特徴とする特許請求の範囲第(1)項記載のア
ンテナ装置。(2) The antenna device according to claim (1), characterized in that it is constituted by a device that combines a spirit level and a magnetic disk.
りに、都市名1県名、地方基あるいはこれらに類する地
名を用いたことを特徴とする特許請求の範囲第(1)項
又は第(2)項記載のアンテナ装置〇(4)表面に地図
を描いた殻の中に、水準器と磁石盤を組み合わせ九機器
が上記殻の中で自由に動くように液体と一緒に入れられ
、上記機器による方位角と仰角の指示部が、上記地図の
一部を示す構造となっていることを特徴とする特許請求
の範囲第1項又は第2項記載のアンテナ装置。(3) Claim (1) characterized in that a city name, a prefecture name, a local base, or a place name similar to these is used instead of the value of a spirit level, a magnetic disk, or a scale of the device; or Antenna device described in paragraph (2)〇(4) In a shell with a map drawn on the surface, a spirit level and a magnetic disk are combined and nine devices are placed together with liquid so that they can move freely within the shell. 3. The antenna device according to claim 1 or 2, wherein the azimuth angle and elevation angle indicating section by the device is structured to indicate a part of the map.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP24321383A JPS60134604A (en) | 1983-12-23 | 1983-12-23 | Antenna device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP24321383A JPS60134604A (en) | 1983-12-23 | 1983-12-23 | Antenna device |
Publications (1)
Publication Number | Publication Date |
---|---|
JPS60134604A true JPS60134604A (en) | 1985-07-17 |
Family
ID=17100505
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP24321383A Pending JPS60134604A (en) | 1983-12-23 | 1983-12-23 | Antenna device |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS60134604A (en) |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH01129506A (en) * | 1987-11-13 | 1989-05-22 | Matsushita Electric Works Ltd | Satellite radio wave arrival confirming device |
JPH034100U (en) * | 1989-05-31 | 1991-01-16 | ||
WO1995034101A1 (en) * | 1994-06-07 | 1995-12-14 | International Mobile Satellite Organization | Method and apparatus for determining direction |
FR2753007A1 (en) * | 1996-09-04 | 1998-03-06 | Bourquin Patrick | SATELLITE RECEPTION ANTENNA |
-
1983
- 1983-12-23 JP JP24321383A patent/JPS60134604A/en active Pending
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH01129506A (en) * | 1987-11-13 | 1989-05-22 | Matsushita Electric Works Ltd | Satellite radio wave arrival confirming device |
JPH034100U (en) * | 1989-05-31 | 1991-01-16 | ||
JPH0628319Y2 (en) * | 1989-05-31 | 1994-08-03 | ケイアンドケイ工業株式会社 | Pyramid figurine |
WO1995034101A1 (en) * | 1994-06-07 | 1995-12-14 | International Mobile Satellite Organization | Method and apparatus for determining direction |
US5894674A (en) * | 1994-06-07 | 1999-04-20 | International Mobile Satellite Organization | Method and apparatus for determining direction |
FR2753007A1 (en) * | 1996-09-04 | 1998-03-06 | Bourquin Patrick | SATELLITE RECEPTION ANTENNA |
WO1998010486A1 (en) * | 1996-09-04 | 1998-03-12 | Tele-Equipement | Satellite reception antenna |
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