JP2007181057A - Transmission power control system and method thereof - Google Patents

Transmission power control system and method thereof Download PDF

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JP2007181057A
JP2007181057A JP2005379018A JP2005379018A JP2007181057A JP 2007181057 A JP2007181057 A JP 2007181057A JP 2005379018 A JP2005379018 A JP 2005379018A JP 2005379018 A JP2005379018 A JP 2005379018A JP 2007181057 A JP2007181057 A JP 2007181057A
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transmission power
gps
gps data
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communication
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JP4779647B2 (en
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Taku Himoto
卓 樋本
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Kenwood KK
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a transmission power control system and a method thereof whereby the transmission power of a mobile wireless apparatus can automatically be optimized, unnecessary crosstalk to other mobile wireless apparatuses can be avoided and the depletion of the battery can be reduced. <P>SOLUTION: In the case of an individual calling for communication, a control microcomputer 12 of the mobile wireless apparatus 100 generates its own apparatus GPS data on the basis of a GPS signal received by a GPS reception section 11 via a GPS antenna 10, allows a transmission section 13 to transmit its own apparatus GPS data to an opposite mobile wireless apparatus via an antenna 15, receives opposite apparatus GPS data of the opposite mobile wireless apparatus received by a reception section 14 via the antenna 15, calculates a distance between both the mobile wireless apparatuses on the basis of the its own apparatus GPS data and the opposite apparatus GPS data, and controls the transmission power of the mobile wireless apparatus on the basis of the distance between both the mobile wireless apparatuses to start the communication. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は、携帯無線機間の個別通信における送信電力の制御方式に係り、詳しくは、GPSデータを基に算出された携帯無線機間の相互距離により、送信電力を制御する送信電力制御方式及びその方法に関する。   The present invention relates to a transmission power control method in individual communication between portable wireless devices, and more specifically, a transmission power control method for controlling transmission power based on a mutual distance between portable wireless devices calculated based on GPS data, and It relates to that method.

様々な現場環境において、携帯無線機により連絡を取りながら業務を遂行する機会が増加している。図5は、携帯無線機による交信を示す模式図である。無線機Aと無線機Bとが、現場において互いに連絡を取りながら業務を進めているとする。重要な情報を確実に相手に伝えたい場合や、電波が弱く交信が途切れがちな場合などにおいては、無線機A、Bは互いに送信出力を上げて、確実に交信しようとする。   In various field environments, opportunities to perform business while communicating with mobile radio devices are increasing. FIG. 5 is a schematic diagram showing communication by a portable wireless device. Assume that the wireless device A and the wireless device B are working on the site while communicating with each other. When it is desired to convey important information to the other party securely, or when radio waves are weak and communication tends to be interrupted, the wireless devices A and B try to reliably communicate with each other by increasing the transmission output.

ところが携帯無線機は、電池により動作しているため、必要以上に送信電力を上げると電池の消費量が多く、長時間の交信に耐えられなくなる。送信電力を上げる操作は面倒であるばかりでなく、何度も電池の交換をしたり、予備の電池を常に余裕を持って携帯するなどの煩わしさがあった。また不用意に送信電力を上げると、他の携帯無線機に混信を与えるトラブルが発生していた。特許文献1には、GPSアンテナとスピーカーとマイクとを内蔵したスピーカーマイク装置を備えた携帯用無線機の記載がされている。
特開平9−139691号公報
However, since the portable wireless device is operated by a battery, if the transmission power is increased more than necessary, the battery consumption is large, and it becomes impossible to withstand long-time communication. The operation of increasing the transmission power is not only troublesome, but also has the trouble of changing batteries many times and always carrying spare batteries with plenty of room. In addition, if the transmission power is increased carelessly, there has been a problem of causing interference with other portable wireless devices. Patent Document 1 describes a portable wireless device including a speaker microphone device that incorporates a GPS antenna, a speaker, and a microphone.
Japanese Patent Laid-Open No. 9-139691

本発明は、このような問題を解決するためになされたものであり、その目的は、送信電力が自動的に最適化され、他の携帯無線機への不要な混信と、電池の消耗とを軽減できる送信電力制御方式及びその方法の提供にある。   The present invention has been made to solve such problems, and its purpose is to automatically optimize transmission power, and to prevent unnecessary interference with other portable wireless devices and battery consumption. The present invention provides a transmission power control method and method that can be reduced.

本発明の送信電力制御方式は、携帯無線機が互いに交信するための送信電力制御方式であって、携帯無線機は、GPSアンテナとGPS受信部と制御マイコンと、送信部と受信部とアンテナとを有し、携帯無線機の前記制御マイコンは、交信の個別呼び出し時において、GPS受信部がGPSアンテナを介して受信したGPS信号をもとに、自機GPSデータを作成し、送信部からアンテナを介して相手携帯無線機に自機GPSデータを送信すると共に、アンテナを介して受信部が受信した相手携帯無線機の相手機GPSデータを受信し、自機GPSデータと相手機GPSデータとから携帯無線機間の距離を算出し、携帯無線機間の距離を基に送信部の送信電力を制御して、交信を開始し、携帯無線機間の距離を算出することが適切でないか、又は複数の携帯無線機との交信においては、既定の送信電力を設定して交信を開始することを特徴とする。   The transmission power control method of the present invention is a transmission power control method for communication between portable radios, and the portable radio includes a GPS antenna, a GPS receiver, a control microcomputer, a transmitter, a receiver, and an antenna. The control microcomputer of the portable wireless device creates its own GPS data based on the GPS signal received by the GPS receiving unit via the GPS antenna at the time of individual call of communication, and transmits the antenna from the transmitting unit to the antenna. The other party's GPS data is transmitted to the other party's portable radio via the antenna, and the other party's GPS data of the other party's portable radio received by the receiving unit is received via the antenna. Is it appropriate to calculate the distance between portable wireless devices, calculate the distance between portable wireless devices by controlling the transmission power of the transmitter based on the distance between portable wireless devices and starting communication Or in communication with the plurality of mobile radios, characterized in that to start the communication by setting the default transmit power.

本発明の送信電力制御方式の制御マイコンは、個別呼び出し時における受信部のRSSI信号を検知し、RSSI信号レベルに応じて設定される送信部の送信電力と携帯無線機間の距離を基に設定される送信部の送信電力とを比較して、大きいほうの送信電力により交信を開始することを特徴とする。   The control microcomputer of the transmission power control system of the present invention detects the RSSI signal of the reception unit at the time of individual call, and is set based on the transmission power of the transmission unit set according to the RSSI signal level and the distance between the portable wireless devices Compared with the transmission power of the transmitter, the communication is started with the larger transmission power.

本発明の送信電力制御方式の携帯無線機は、さらに、交信中における音声状況に応じて電力制御が行える電力制御キーを有することを特徴とする。   The transmission power control type portable wireless device of the present invention further includes a power control key capable of performing power control according to a voice situation during communication.

本発明の送信電力制御方法は、携帯無線機が互いに交信するための送信電力制御方法であって、携帯無線機に電源が投入され交信の手続が始まると、個別呼び出しか否かの判定を行うステップと、個別呼び出しであれば、自機GSPデータを作成し、相手携帯無線機へ送信するステップと、受信した相手機GPSデータの測位状態データから、位置情報データが正常に受信されているか否かの判定を行うステップと、正常に受信され位置データが既知であれば、相手機GPSデータの日付と世界協定時と相手機GPSデータを受信した日付と時刻との時間差が、所定の時間内にあるか否かの判定を行うステップと、所定の時間内にあれば、時間差と、相手機GPSデータの速度との積による距離が、所定の距離内にあるか否かの判定を行うステップと、所定の範囲内にあれば、自機GPSデータと相手機GPSデータの緯度、経度情報から携帯無線機間の距離を計算するステップと、計算された距離に応じた送信出力を設定するステップと、RSSIに応じた送信電力を計算するステップと、距離に応じた送信電力とRSSIに応じた送信電力との大きいほうに送信電力を設定して交信を開始するステップと、個別呼び出しでない場合、また位置情報が正常に受信されず位置データが既知でないない場合は、既定の送信電力に設定して交信を開始するステップと、所定に時間内にない場合、また所定の距離内にない場合は、相手機GPSデータを破棄して所定の送信電力に設定して交信を開始するステップとから成ることを特徴とする。   The transmission power control method according to the present invention is a transmission power control method for communication between portable radio devices, and when the portable radio device is turned on and the communication procedure starts, it is determined whether or not it is an individual call. If it is a step and an individual call, whether or not the position information data has been normally received from the step of creating its own GSP data and transmitting it to the other party's portable radio and the positioning state data of the other party's GPS data received If the position data is normally received and the position data is known, the time difference between the date of the other party GPS data and the date and time when the other party GPS data was received is within a predetermined time. And if it is within a predetermined time, a step is performed to determine whether the distance by the product of the time difference and the speed of the counterpart GPS data is within the predetermined distance. If it is within the predetermined range, the step of calculating the distance between the portable radio device from the latitude and longitude information of the own GPS data and the counterpart GPS data and the transmission output corresponding to the calculated distance are set. The step of calculating the transmission power according to RSSI, the step of setting the transmission power to the larger of the transmission power according to distance and the transmission power according to RSSI, and starting communication, and not individual call If the position information is not received normally and the position data is not known, a step of starting communication with a predetermined transmission power is set, and if not within a predetermined time or not within a predetermined distance In this case, it is characterized by comprising the step of discarding the counterpart device GPS data, setting it to a predetermined transmission power, and starting communication.

本発明によれば、送信電力を自動的に最適化することができるため、他の携帯無線機への不要な混信と、電池の消耗とを軽減することが可能となり、業務を効率よく遂行することができる。   According to the present invention, transmission power can be automatically optimized, so that unnecessary interference with other portable radio devices and battery consumption can be reduced, so that business can be performed efficiently. be able to.

本発明による送信電力制御方式の実施の形態について、図を用いて説明する。図1は、本発明の送信電力制御方式による携帯無線機の構成を示す回路ブロック図である。携帯無線機100は、GPSアンテナ10、GPS受信部11、制御マイコン12、送信部13、受信部14及びアンテナ15を有する。   Embodiments of a transmission power control system according to the present invention will be described with reference to the drawings. FIG. 1 is a circuit block diagram showing the configuration of a portable radio device according to the transmission power control system of the present invention. The portable wireless device 100 includes a GPS antenna 10, a GPS receiver 11, a control microcomputer 12, a transmitter 13, a receiver 14, and an antenna 15.

図1において、GPS受信部11は、1秒間隔など定期的にGPS信号を受信していることから、交信の個別呼び出し時には、GPSアンテナ10を介して天空のGPS衛星から定期的に受信したGPS信号を、制御マイコン12へ送信する。制御マイコン12は、このGPS信号が正常に受信されたことを確認し、自機GPSデータを作成すると、送信部13からアンテナ15を介して相手側携帯無線機に送信する。また受信部14は、アンテナ15を介して、相手側携帯無線機の相手機GPSデータを受信し、制御マイコン12へ送信する。   In FIG. 1, since the GPS receiving unit 11 periodically receives GPS signals such as at intervals of 1 second, the GPS received periodically from the sky GPS satellites via the GPS antenna 10 at the time of individual call for communication. A signal is transmitted to the control microcomputer 12. When the control microcomputer 12 confirms that the GPS signal has been normally received and creates its own GPS data, the control microcomputer 12 transmits the GPS signal from the transmission unit 13 to the counterpart portable radio device via the antenna 15. The receiving unit 14 also receives the counterpart device GPS data of the counterpart portable radio device via the antenna 15 and transmits it to the control microcomputer 12.

制御マイコン12は、正常に受信されたことを確認した相手機GPSデータと、作成した自機GPSデータとから携帯無線機間の距離を算出する。次にこの携帯無線機間の距離を基に、送信部13の送信電力を制御して、交信を開始する。また制御マイコン12は、相手機GPSデータが作成された日時と受信した時点の日時との差の時間が、所定の時間を超えているか、その差の時間と相手携帯無線機の移動速度との積による距離が、所定の値を越えている場合は、携帯無線機間の距離を算出することが適切でないと判断する。この判断を下した場合、及び呼び出しが複数の携帯無線機との交信である場合においては、既定の送信電力を設定して交信を開始する。   The control microcomputer 12 calculates the distance between the portable wireless devices from the counterpart device GPS data that has been confirmed to be normally received and the created own device GPS data. Next, based on the distance between the portable wireless devices, the transmission power of the transmission unit 13 is controlled to start communication. In addition, the control microcomputer 12 determines whether the time difference between the date / time when the counterpart device GPS data was created and the date / time at which the counterpart device GPS data was received exceeds a predetermined time, or the difference time and the moving speed of the partner portable radio device. When the distance by the product exceeds a predetermined value, it is determined that it is not appropriate to calculate the distance between the portable wireless devices. When this determination is made, and when the call is communication with a plurality of portable wireless devices, communication is started by setting a predetermined transmission power.

制御マイコン12は、個別呼び出し時における受信部14のRSSI信号を検知し、RSSI信号レベルに応じて設定される送信部13の送信電力と携帯無線機間の距離を基に設定される送信部13の送信電力とを比較して、大きいほうの送信電力により交信を開始しても良い。これにより、GPSデータから算出した携帯無線機間の距離と、その時点における携帯無線機間の電波環境との2つのパラメータを用いて、送信電力を適正に設定することができる。以上説明した送信電力は、呼び出し時において設定されて交信を開始するだけでなく、所定の時間間隔により、音声通信又はステータスメッセージ通信時に同様に設定されて、交信が継続されても良い。さらに携帯無線機100は、交信中における音声状況に応じて電力制御が行える電力制御キーを設けても良い。これにより、短時間における電波強度の変動を補正して、安定した交信を維持することができる。   The control microcomputer 12 detects the RSSI signal of the reception unit 14 at the time of individual call, and the transmission unit 13 is set based on the transmission power of the transmission unit 13 set according to the RSSI signal level and the distance between the portable wireless devices. The transmission power may be compared with the higher transmission power and the communication may be started. Thereby, it is possible to appropriately set the transmission power using the two parameters of the distance between the portable wireless devices calculated from the GPS data and the radio wave environment between the portable wireless devices at that time. The transmission power described above is not only set at the time of calling and starts communication, but may be set similarly at the time of voice communication or status message communication at a predetermined time interval, and communication may be continued. Furthermore, the portable wireless device 100 may be provided with a power control key that can perform power control according to the voice status during communication. Thereby, the fluctuation | variation of the electromagnetic wave intensity in a short time is correct | amended, and stable communication can be maintained.

図2は、GPS受信部が、GPS信号を基にGPSデータを作成したデータフォーマットである。図2において、GPSデータフォーマットは、世界協定時、測位状態、緯度、北緯/南緯、経度、東経・西経、速度、針路及び日付の9項目で構成されている。個別呼び出し時に、このGPSデータを互いに送信し合うことにより、緯度、経度情報から携帯無線機間の距離が計算される。日付と世界協定時と相手からGPSデータを受信した日付と時刻との差により、受信したGPSデータの新しさが判断できる。また、その時間差と、相手機GPSデータの速度との積により、その時点において、計算された携帯無線機間の距離からさらにどの程度離れているかが判断できる。   FIG. 2 shows a data format in which the GPS receiving unit creates GPS data based on the GPS signal. In FIG. 2, the GPS data format is composed of nine items such as positioning status, latitude, latitude / north latitude, longitude, east / west longitude, speed, course, and date. By transmitting this GPS data to each other at the time of individual call, the distance between the portable wireless devices is calculated from the latitude and longitude information. The newness of the received GPS data can be determined based on the difference between the date, the global agreement time, and the date and time when the GPS data is received from the other party. Further, by the product of the time difference and the speed of the counterpart device GPS data, it can be determined how far away from the calculated distance between the portable wireless devices at that time.

図3は、本発明の送信電力制御方法を示すフローチャートである。図3aにおいて、携帯無線機100に電源が投入され交信の手続が始まると、個別呼び出しか否かの判定が行われる(ステップ105、ステップ110)。個別呼び出しであれば、受信した相手機GPSデータの測位状態データから、位置情報データが正常に受信されているか否かの判定が行われる(ステップ120)。正常に受信され位置データが既知であれば、その世界協定時と相手機GPSデータを受信した時刻との時間差が、所定の時間内にあるか否かの判定が行われる(ステップ130)。所定の時間内にあれば、その時間差と、相手機GPSデータの速度との積による距離が、所定の距離内にあるか否かの判定が行われる(ステップ140)。所定の範囲内にあれば、自機GPSデータと相手機GPSデータの緯度、経度情報から携帯無線機間の距離が計算される(ステップ150)。次に求められた距離に応じた送信出力が設定され、交信が開始されて送信出力の設定を終了する(ステップ160〜180)。ステップ110において個別呼び出しでない場合、またステップ130において位置情報が正常に受信されず位置データが既知でないない場合は、既定の送信電力に設定され交信が開始される(ステップ200、ステップ170)。またステップ130において所定に時間内にない場合、またステップ140において所定の距離内にない場合は、相手機GPSデータを破棄して規定の送信電力に設定する(ステップ190ステップ200)。   FIG. 3 is a flowchart showing the transmission power control method of the present invention. In FIG. 3a, when the portable wireless device 100 is turned on and the communication procedure is started, it is determined whether or not it is an individual call (step 105, step 110). If it is an individual call, it is determined whether or not the position information data is normally received from the positioning state data of the received counterpart device GPS data (step 120). If the position data is normally received and the position data is known, it is determined whether or not the time difference between the time of the global agreement and the time when the counterpart GPS data is received is within a predetermined time (step 130). If it is within the predetermined time, it is determined whether or not the distance by the product of the time difference and the speed of the counterpart GPS data is within the predetermined distance (step 140). If within the predetermined range, the distance between the portable wireless devices is calculated from the latitude and longitude information of the own GPS data and the counterpart GPS data (step 150). Next, the transmission output corresponding to the obtained distance is set, the communication is started, and the setting of the transmission output is finished (steps 160 to 180). If it is not an individual call in step 110, or if position information is not received normally and position data is not known in step 130, communication is started with a predetermined transmission power (step 200, step 170). If it is not within the predetermined time in step 130 or not within the predetermined distance in step 140, the counterpart device GPS data is discarded and set to the prescribed transmission power (step 190, step 200).

通常自機のGPSデータは、音声通信やステータス通信に付随して送信、又は単独でGPSデータとして送信され、相手機の制御マイコンの有する記憶部に保管され、既知状態にある。このような既知状態が事前に行われないシステムの場合は、図3bに示す、ステップ110に続くステップ115において、自機GSPデータを作成して相手携帯無線機へ送信することにより、ステップ120での既知状態を成立させる。   Usually, the GPS data of its own device is transmitted along with voice communication and status communication, or is transmitted as GPS data alone, stored in the storage unit of the control microcomputer of the other device, and in a known state. In the case of a system in which such a known state is not performed in advance, in step 115 shown in FIG. 3b, in step 115 following step 110, the own device GSP data is generated and transmitted to the partner portable wireless device. The known state of is established.

図4は、制御マイコン12が、個別呼び出し時における受信部14のRSSI信号を検知し、RSSI信号レベルに応じて設定される送信部13の送信電力と携帯無線機間の距離を基に設定される送信部13の送信電力とを比較して、大きいほうの送信電力により交信を開始する場合のフローチャートである。ステップ160で距離に応じた送信電力が設定された後、RSSIに応じた送信電力が計算される(ステップ164)。距離に応じた送信電力とRSSIに応じた送信電力の大きいほうに送信電力が設定され、交信が開始される(ステップ168、ステップ170)。   4 is set based on the transmission power of the transmitter 13 set according to the RSSI signal level and the distance between the portable radios when the control microcomputer 12 detects the RSSI signal of the receiver 14 at the time of individual call. 6 is a flowchart in a case where communication is started with a larger transmission power by comparing with the transmission power of the transmission unit 13. After the transmission power corresponding to the distance is set in step 160, the transmission power corresponding to the RSSI is calculated (step 164). The transmission power is set to the larger transmission power according to the distance and transmission power according to the RSSI, and communication is started (steps 168 and 170).

以上説明したように、本発明によると、個別通信を行う携帯無線機の送信電力を、自動的に最適化することができるため、他の携帯無線への不要な混信と、電池の消耗とを軽減することが可能となり、業務を効率よく遂行することができる。   As described above, according to the present invention, the transmission power of a portable wireless device that performs individual communication can be automatically optimized, so unnecessary interference with other portable wireless devices and battery consumption are reduced. It becomes possible to reduce, and work can be performed efficiently.

本発明の送信電力制御方式による携帯無線機の構成を示す回路ブロック図。The circuit block diagram which shows the structure of the portable radio apparatus by the transmission power control system of this invention. GPS信号からGPSデータ化されたGPSデータフォーマット。GPS data format converted from GPS signals to GPS data. 本発明の送信電力制御方法を示すフローチャート。The flowchart which shows the transmission power control method of this invention. RSSI信号を追加利用する送信電力制御方法を示すフローチャート。The flowchart which shows the transmission power control method which additionally uses an RSSI signal. 携帯無線機による交信を示す模式図。The schematic diagram which shows the communication by a portable radio.

符号の説明Explanation of symbols

10 GPSアンテナ
11 GPS受信部
12 制御マイコン
13 送信部
14 受信部
15 アンテナ
100 携帯無線機
DESCRIPTION OF SYMBOLS 10 GPS antenna 11 GPS receiving part 12 Control microcomputer 13 Transmitting part 14 Receiving part 15 Antenna 100 Portable radio | wireless machine

Claims (4)

携帯無線機が互いに交信するための送信電力制御方式であって、
前記携帯無線機は、GPSアンテナとGPS受信部と制御マイコンと、送信部と受信部とアンテナとを有し、
前記携帯無線機の前記制御マイコンは、前記交信の個別呼び出し時において、
前記GPS受信部が前記GPSアンテナを介して受信したGPS信号をもとに、自機GPSデータを作成し、
前記送信部から前記アンテナを介して相手携帯無線機に前記自機GPSデータを送信すると共に、前記アンテナを介して前記受信部が受信した前記相手携帯無線機の相手機GPSデータを受信し、
前記自機GPSデータと前記相手機GPSデータとから前記携帯無線機間の距離を算出し、
前記携帯無線機間の距離を基に前記送信部の送信電力を制御して、交信を開始し、
前記携帯無線機間の距離を算出することが適切でないか、又は複数の携帯無線機との交信においては、既定の送信電力を設定して交信を開始することを特徴とする送信電力制御方式。
A transmission power control method for portable radios to communicate with each other,
The portable wireless device has a GPS antenna, a GPS receiver, a control microcomputer, a transmitter, a receiver, and an antenna.
The control microcomputer of the portable wireless device, at the time of individual call of the communication,
Based on the GPS signal received by the GPS receiver via the GPS antenna, it creates its own GPS data,
While transmitting the own GPS data from the transmitter to the partner portable radio device via the antenna, and receiving the counterpart device GPS data of the partner portable radio device received by the receiver via the antenna,
Calculating the distance between the portable wireless devices from the GPS data of the own device and the GPS data of the counterpart device;
Control the transmission power of the transmitter based on the distance between the portable wireless devices, start communication,
A transmission power control method characterized in that it is not appropriate to calculate the distance between the portable wireless devices, or in communication with a plurality of portable wireless devices, communication is started by setting a predetermined transmission power.
請求項1に記載の送信電力制御方式において、前記制御マイコンは、前記個別呼び出し時における前記受信部のRSSI信号を検知し、前記RSSI信号レベルに応じて設定される前記送信部の送信電力と前記携帯無線機間の距離を基に設定される前記送信部の送信電力とを比較して、大きいほうの送信電力により交信を開始することを特徴とする送信電力制御方式。   2. The transmission power control method according to claim 1, wherein the control microcomputer detects an RSSI signal of the reception unit at the time of the individual call, and the transmission power of the transmission unit set according to the RSSI signal level and the transmission power A transmission power control method characterized by comparing the transmission power of the transmitter set based on the distance between portable wireless devices and starting communication with the larger transmission power. 請求項1又は2に記載の送信電力制御方式において、前記携帯無線機は、さらに、交信中における音声状況に応じて電力制御が行える電力制御キーを有することを特徴とする送信電力制御方式。   3. The transmission power control system according to claim 1, wherein the portable wireless device further includes a power control key capable of performing power control according to a voice condition during communication. 携帯無線機が互いに交信するための送信電力制御方法であって、
携帯無線機に電源が投入され交信の手続が始まると、個別呼び出しか否かの判定を行うステップと、
前記個別呼び出しであれば、自機GSPデータを作成し、相手携帯無線機へ送信するステップと、
受信した相手機GPSデータの測位状態データから、位置情報データが正常に受信されているか否かの判定を行うステップと、
前記正常に受信され位置データが既知であれば、前記相手機GPSデータの日付と世界協定時と前記相手機GPSデータを受信した日付と時刻との時間差が、所定の時間内にあるか否かの判定を行うステップと、
前記所定の時間内にあれば、前記時間差と、前記相手機GPSデータの速度との積による距離が、所定の距離内にあるか否かの判定を行うステップと、
前記所定の範囲内にあれば、前記自機GPSデータと前記相手機GPSデータの緯度、経度情報から携帯無線機間の距離を計算するステップと、
前記計算された距離に応じた送信出力を設定するステップと、
RSSIに応じた送信電力を計算するステップと、
前記距離に応じた送信電力と前記RSSIに応じた送信電力との大きいほうに前記送信電力を設定して交信を開始するステップと、
前記個別呼び出しでない場合、また前記位置情報が正常に受信されず位置データが既知でないない場合は、既定の送信電力に設定して交信を開始するステップと、
前記所定に時間内にない場合、また前記所定の距離内にない場合は、前記相手機GPSデータを破棄して前記所定の送信電力に設定して交信を開始するステップとから成ることを特徴とする送信電力制御方法。
A transmission power control method for portable radios to communicate with each other,
When the portable radio is turned on and the communication procedure begins, it is determined whether or not it is an individual call;
If it is the individual call, the step of creating its own GSP data and transmitting it to the other party portable radio device;
A step of determining whether or not the position information data is normally received from the positioning state data of the received counterpart device GPS data;
Whether the time difference between the date of the counterpart GPS data and the date of the global agreement and the date and time of reception of the counterpart GPS data is within a predetermined time if the position data is known and received normally A step of determining
Determining whether a distance by a product of the time difference and the speed of the counterpart GPS data is within a predetermined distance if within the predetermined time; and
If within the predetermined range, calculating the distance between the portable wireless device from the latitude and longitude information of the own GPS data and the counterpart GPS data;
Setting a transmission power according to the calculated distance;
Calculating transmit power according to RSSI;
Setting the transmission power to the larger of the transmission power according to the distance and the transmission power according to the RSSI, and starting communication;
If it is not the individual call, and if the position information is not normally received and the position data is not known, the step of starting communication by setting a predetermined transmission power,
And if the predetermined time is not within the time, and if not within the predetermined distance, the GPS data of the other party is discarded and set to the predetermined transmission power to start communication. Transmission power control method.
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JP2018533230A (en) * 2015-04-09 2018-11-08 オーアールエー インコーポレイテッドOra Inc. Data transmission method and apparatus

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