JPS62171238A - Radio telemeter repeater - Google Patents

Radio telemeter repeater

Info

Publication number
JPS62171238A
JPS62171238A JP1276386A JP1276386A JPS62171238A JP S62171238 A JPS62171238 A JP S62171238A JP 1276386 A JP1276386 A JP 1276386A JP 1276386 A JP1276386 A JP 1276386A JP S62171238 A JPS62171238 A JP S62171238A
Authority
JP
Japan
Prior art keywords
data
circuit
observation
polling signal
collection
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
Application number
JP1276386A
Other languages
Japanese (ja)
Inventor
Takeo Takasaki
武夫 高崎
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Japan Radio Co Ltd
Original Assignee
Japan Radio Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Japan Radio Co Ltd filed Critical Japan Radio Co Ltd
Priority to JP1276386A priority Critical patent/JPS62171238A/en
Publication of JPS62171238A publication Critical patent/JPS62171238A/en
Pending legal-status Critical Current

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  • Arrangements For Transmission Of Measured Signals (AREA)
  • Selective Calling Equipment (AREA)
  • Radio Relay Systems (AREA)

Abstract

PURPOSE:To contribute to the effective utilization of a radio wave by providing a function for data collection to a repeater, collecting the data under the control of the repeater mainly, sending the data to a supervisory equipment altogether after the end of collection of all data so as to constitute the system by one radio frequency. CONSTITUTION:When a data collection operation start command sent from a supervisory equipment 11 is detected by a data collection command detection circuit 4, the command is fed to a polling signal output circuit 7 as a data collection command. An observation data is received by an observation data reception circuit 5 to check an error in transmission and when the data is discriminated to be normal, the result is outputted to a storage circuit 6 and an observing device polling signal output request is given to the circuit 7. Then the transmission of the polling signal and the reception of the observation data are repeated to collect the data of all the observing equipment. Since the transmitter and the receiver are not operated at the same time in the repeater, the relay function is realized by one radio frequency.

Description

【発明の詳細な説明】 (歩業上の利用分野) 本発明は、無線中継所を経由して広範囲に点在する雨量
・水位観測所等のデータを収集する無線式テレメータシ
ステムに関し、特に中継波を節約してデータ収集を実現
する無線式テレメータ中継装置に関する。
[Detailed Description of the Invention] (Field of Industrial Use) The present invention relates to a wireless telemeter system that collects data from rainfall and water level observation stations scattered over a wide area via wireless relay stations, and in particular relay stations. This invention relates to a wireless telemeter relay device that saves waves and collects data.

(従来の技術) 従来のこの種の無線式テレメータシステムの構成例を第
3図に示す。11は監視装置、12は中継装置、13は
観測装置群、F3 F2は無線周波数である。監視装置
11は無線周波数F1でポーリング信号(データ返送要
求信号)を送信し、無線周波数F2で返送データを受信
する。中継浸漬12は無線周波数F1でポーリング信号
または返送データが受信されると、受信した信号を無線
周波数F2で送信し中継する。一方観測装置群13は、
無線周波数F2でポーリング信号が受信されろと、■−
■のうち該当する観測装置のみが計則したデータを無線
周波数F1で送信する。
(Prior Art) An example of the configuration of a conventional wireless telemeter system of this type is shown in FIG. 11 is a monitoring device, 12 is a relay device, 13 is a group of observation devices, and F3 and F2 are radio frequencies. The monitoring device 11 transmits a polling signal (data return request signal) at the radio frequency F1, and receives return data at the radio frequency F2. When a polling signal or return data is received at the radio frequency F1, the relay dipping 12 transmits and relays the received signal at the radio frequency F2. On the other hand, the observation equipment group 13 is
If a polling signal is received on radio frequency F2, ■-
Among (2), only the data measured by the corresponding observation device is transmitted on the radio frequency F1.

(発明が解決しようとする間贋点) 無線中継所を必要とする様な山間地に前述した様な無線
式テレメータシステムを設置スる場合に、F+ 、 F
2の2波の無線周波数を必要とすることは、電波の有効
利用の面で障害であり、不経済である。
(Intervals that the invention seeks to solve) When installing a wireless telemeter system like the one described above in a mountainous area that requires a wireless relay station, F+, F
The need for two radio frequencies (2) is an impediment to the effective use of radio waves and is uneconomical.

(問題点を解決するための手段) 本発明は、電波を有効利用する目的で、無線中継所を必
要とする無線式テレメータシステムを、1波の無線周波
数のみで実現できる様にするため、無線中継装置に、デ
ータ収集のための諸機能と、各観測装置からの各種デー
タを全データの収集が完了するまで一時記憶しておく機
能とを持たせたデータ収集手段と、観測装置からのデー
タ収集に使用した周波数と同一無線周波数で観視装置へ
一括して送出する手段とを備えたもので、第1図にその
ブロック図を示す。
(Means for Solving the Problems) The present invention provides a wireless telemeter system that uses only one radio frequency to realize a wireless telemeter system that requires a wireless relay station in order to effectively utilize radio waves. A data collection means in which the relay device has various functions for data collection and a function to temporarily store various data from each observation device until all data collection is completed, and data collection from the observation device. It is equipped with a means for transmitting data all at once to a viewing device at the same radio frequency as the frequency used for collection, and a block diagram thereof is shown in FIG.

11は監視装置、12は中継装置、13は観測装置群、
14はデータ収集回路、】5はデータ送出回路、1は空
中線、2は送信・受信切換器である。
11 is a monitoring device, 12 is a relay device, 13 is a group of observation devices,
14 is a data collection circuit, 5 is a data transmission circuit, 1 is an antenna, and 2 is a transmitting/receiving switch.

(実施例) 第2図は、本発明の一実施例のブロック図で、1は送信
・受信兼用の空中線、2は送信・受信切換器、3は無線
受信機、4は監視装置から無線回線を通じて受信される
データ収集動作開始指令を検出するデータ収集指令検出
回路、5は観測装置から無線回線を通じて受信されろ観
測データを受信する観測データ受信回路、6は観測され
た全データを記憶する観測データ記憶回路、7は観測装
置に対してポーリング信号を順次出力するポーリング信
号出力回路、8は無線送信機、9は観測装置向のポーリ
ング信号と監視装置向の1ヌ集デ一タ出力信号とを切り
替える送信内容切換器、10は記憶されている観測デー
タを一括して連続的に監視装置に送信する収集データ出
力回路である。
(Embodiment) Fig. 2 is a block diagram of an embodiment of the present invention, in which 1 is an antenna for both transmitting and receiving, 2 is a transmitting/receiving switch, 3 is a wireless receiver, and 4 is a wireless line from a monitoring device. 5 is an observation data receiving circuit that receives observation data from the observation device via the wireless line; 6 is an observation circuit that stores all observed data; a data storage circuit; 7 a polling signal output circuit that sequentially outputs polling signals to the observation device; 8 a wireless transmitter; 9 a polling signal for the observation device and a data output signal for the monitoring device; 10 is a collected data output circuit that continuously transmits the stored observation data all at once to the monitoring device.

この無線式テレメータ中継装置を使用するテレメータシ
ステムでは、各観測装置13(0、・・・、■は送受信
の無線周波数が同じになる他は何ら従来のものと変わり
はないが、監視装置11においては、各観測装置に対す
る個別のポーリング信号を送信する代りに一括のデータ
収集動作開始指令を送信する回路が、また各@副装置か
らの個別の観測デーヨを受信する代りに収集データを一
括受信する回路がそれぞれ必要となる。
In a telemeter system using this wireless telemeter relay device, each observation device 13 (0, . . . , In this case, instead of sending individual polling signals to each observation device, the circuit sends a batch data collection start command, and instead of receiving individual observation data from each sub-device, it receives collected data all at once. A separate circuit is required.

(作 用) 監視装置11から送信されて来るデータ収集動作開始指
令が空中@1−送信・受信切換器2−受信機3を経てデ
ータ収集指令検出回路4で検出されると、データ収集指
令としてポーリング信号出力回路7に供給される。
(Function) When the data collection operation start command transmitted from the monitoring device 11 is detected by the data collection command detection circuit 4 via the air @ 1 - transmission/reception switch 2 - receiver 3, it is detected as a data collection command. The polling signal is supplied to the polling signal output circuit 7.

ポーリング信号出力画1洛7では、データ収集指令が入
力されると、各観測装置に対してポーリング信号を出力
すると同時に送信機8を起動するとともに、送信・受信
切換器2を送信側に切り換えて、空中線1を経てポーリ
ング信号を各観測装置に送信する。
In polling signal output image 1 Raku 7, when a data collection command is input, a polling signal is output to each observation device, the transmitter 8 is activated at the same time, and the transmitter/receiver switcher 2 is switched to the transmitter side. , transmits a polling signal to each observation device via the antenna 1.

ポーリング信号の出力が完了すると送信機8を停市させ
、送信・受信切換器2を受信側にもどす。
When the output of the polling signal is completed, the transmitter 8 is stopped and the transmission/reception switch 2 is returned to the receiving side.

ポーリング信号を受信した該当観測装置は観測データを
送信して来るので、空中線1−送信・受信切換器2−受
信機3を経て観、則データ受信回路5で受信する。@副
データ受信回路5では、伝送上の誤まり検定を行ない正
常と判定された場合に、受信されたデータを観測データ
記憶回路6に出力するとともに、ポーリング信号出力回
路7に対して次観測装置ポーリング信号出力要求を行な
う。異常と判定された場合は、1〜2回程度を限度とし
て再度同一観測装置に対するポーリング信号出力要求を
行なう。
Since the corresponding observation device that has received the polling signal transmits observation data, the observation data is viewed via the antenna 1, the transmission/reception switch 2, and the receiver 3, and is received by the regular data reception circuit 5. @The sub-data receiving circuit 5 performs a transmission error check, and if it is determined to be normal, outputs the received data to the observation data storage circuit 6, and also outputs the received data to the next observation device to the polling signal output circuit 7. Makes a polling signal output request. If it is determined that there is an abnormality, a polling signal output request is made to the same observation device once or twice.

以後ポーリング信号の送信および観測データの受信を繰
り返えして、全観測装置のデータ収集動作を行なう。
Thereafter, the transmission of polling signals and reception of observation data are repeated to perform data collection operations for all observation devices.

一方書測データ記憶回路6では、観測データ受信回路5
からの@副データを順次全観測装置収集完了するまで記
憶し、収集データ出力口1@10に供給する。
On the other hand, in the graphometric data storage circuit 6, the observation data receiving circuit 5
@Sub data from is sequentially stored until all observation devices have been collected and supplied to the collected data output port 1@10.

収集データ出力回路10は、観測データ受信回路5から
の全観測装置収集完了信号が検出されると、収集データ
出力回路10に記憶されている全データを一括して連続
的に出力すると同時へ送信内容切換器9を収集データ出
力側に切り換え、送信機8を起動するとともに送信・受
信切換器2を送信側に切り換えて、空中線1を経て監視
装置11に送信する。
When the collected data output circuit 10 detects the all observation device collection completion signal from the observation data receiving circuit 5, the collected data output circuit 10 continuously outputs all the data stored in the collected data output circuit 10 at once and transmits the data simultaneously. The content switch 9 is switched to the collected data output side, the transmitter 8 is activated, and the transmission/receive switch 2 is switched to the transmit side to transmit the data to the monitoring device 11 via the antenna 1.

収集デー4の一括出力が完了すると送信機8を停止させ
、送信・受信切換器2を受信側に、送信内容切換器9を
ポーリング信号側にそれぞれもどす。
When the batch output of the collected data 4 is completed, the transmitter 8 is stopped, the transmission/reception switch 2 is returned to the receiving side, and the transmission content switch 9 is returned to the polling signal side.

この様に作用するから、該無線式テレメータ中継装置で
は、送信機と受信機が同時に動作する事が鳴いため、−
波の無線周波数で中継機能を実現する事ができる。
Because it works in this way, in the wireless telemeter relay device, the transmitter and receiver operate at the same time, which causes a noise.
A relay function can be realized using the radio frequency of waves.

なお、信頼性を向上させるために、中継装置を2重化す
る必要が有る場合は、空中線1および送信・受信切換器
2を除(部分を二重化し、データ収集動作開始指令を2
種類用意して各々の中継装置に割り合ててお(事により
、監視装置主導型で容易に実現可能となる。
In addition, if it is necessary to duplicate the relay equipment in order to improve reliability, remove the antenna 1 and the transmit/receive switch 2 (duplicate the parts, and set the data collection operation start command to 2).
By preparing different types and assigning them to each relay device, it can be easily realized by monitoring device-led.

(発明の効果) 以上説明した様に、従来は監視装置が有していたデータ
収集のための機能を中継装置に持たせ、中継装置主導で
データ収集を行なわせ、全データ収集完了後一括して監
視装置に送信する様にしたため、−波の無線周波数でシ
ステムが構成でき、電波の有効利用に貢献できろととも
に応用範囲の拡大も期待できる利点がある。
(Effects of the Invention) As explained above, the relay device is equipped with the data collection function that conventionally had a monitoring device, the relay device takes the lead in data collection, and the data is collected all at once after all data collection is completed. Since the information is transmitted to the monitoring device, the system can be constructed using -wave radio frequencies, which has the advantage of contributing to the effective use of radio waves and also being expected to expand the range of applications.

【図面の簡単な説明】[Brief explanation of drawings]

第1図は本発明の構成を示すブロック図、第2図は本発
明の一実施例のブロック図、第3図は従来の無線式テレ
メータシステムの構成例を示すブロック図である。 11・・・・・・監視装置、12・・・・・・中継装置
、13・・・・・・観測装置群、14・・・・・・デー
タ収集回路、15・・・・・・データ送出回路、1・・
・空中線、2・・・送信・受信切換器、3・・・無線受
信機、4・・・データ収集指令検出回路、5・・・観測
データ受信回路、6・・・観測データ記憶回路、7・・
・ポーリング信号出力回路、8・・・無線送信機、9・
・・送信内容切換器、10・・・収集データ出力回路
FIG. 1 is a block diagram showing the configuration of the present invention, FIG. 2 is a block diagram of an embodiment of the present invention, and FIG. 3 is a block diagram showing an example of the configuration of a conventional wireless telemeter system. 11...Monitoring device, 12...Relay device, 13...Observation device group, 14...Data collection circuit, 15...Data Sending circuit, 1...
- Antenna, 2... Transmission/reception switch, 3... Radio receiver, 4... Data collection command detection circuit, 5... Observation data receiving circuit, 6... Observation data storage circuit, 7・・・
・Polling signal output circuit, 8... Wireless transmitter, 9.
...Transmission content switch, 10...Collected data output circuit

Claims (1)

【特許請求の範囲】[Claims] 遠隔地に点在する観測装置の各種データを無線回線を通
じて収集する無線式テレメータシステムにおいて、中継
装置に、データ収集の機能と全観測装置からのデータを
記憶しておく機能とを持たせたデータ収集手段と、収集
に使用した周波数と同一無線周波数で監視装置へデータ
を送出する手段とを備えたことを特徴とする無線式テレ
メータ中継装置。
In a wireless telemeter system that collects various data from observation devices scattered in remote locations via wireless lines, data in which the relay device has the function of data collection and the function of storing data from all observation devices. 1. A wireless telemeter relay device comprising a collection means and a means for transmitting data to a monitoring device at the same radio frequency as the frequency used for collection.
JP1276386A 1986-01-23 1986-01-23 Radio telemeter repeater Pending JPS62171238A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1276386A JPS62171238A (en) 1986-01-23 1986-01-23 Radio telemeter repeater

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1276386A JPS62171238A (en) 1986-01-23 1986-01-23 Radio telemeter repeater

Publications (1)

Publication Number Publication Date
JPS62171238A true JPS62171238A (en) 1987-07-28

Family

ID=11814438

Family Applications (1)

Application Number Title Priority Date Filing Date
JP1276386A Pending JPS62171238A (en) 1986-01-23 1986-01-23 Radio telemeter repeater

Country Status (1)

Country Link
JP (1) JPS62171238A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106205098A (en) * 2016-08-30 2016-12-07 广东柯内特环境科技有限公司 Environment Internet of Things data acquisition transmission terminal

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS56106441A (en) * 1980-01-28 1981-08-24 Mitsubishi Electric Corp Remote monitor controlling device
JPS57157664A (en) * 1981-03-24 1982-09-29 Fujitsu Ltd Remote monitoring system

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS56106441A (en) * 1980-01-28 1981-08-24 Mitsubishi Electric Corp Remote monitor controlling device
JPS57157664A (en) * 1981-03-24 1982-09-29 Fujitsu Ltd Remote monitoring system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106205098A (en) * 2016-08-30 2016-12-07 广东柯内特环境科技有限公司 Environment Internet of Things data acquisition transmission terminal

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