JP2972476B2 - Base station selection method and base station selection method for cellular wireless telephone system - Google Patents

Base station selection method and base station selection method for cellular wireless telephone system

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Publication number
JP2972476B2
JP2972476B2 JP2705693A JP2705693A JP2972476B2 JP 2972476 B2 JP2972476 B2 JP 2972476B2 JP 2705693 A JP2705693 A JP 2705693A JP 2705693 A JP2705693 A JP 2705693A JP 2972476 B2 JP2972476 B2 JP 2972476B2
Authority
JP
Japan
Prior art keywords
base station
station
channel
control
auxiliary base
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.)
Expired - Fee Related
Application number
JP2705693A
Other languages
Japanese (ja)
Other versions
JPH06245261A (en
Inventor
喜武 大川
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.)
NIPPON DENKI TSUSHIN SHISUTEMU KK
Original Assignee
NIPPON DENKI TSUSHIN SHISUTEMU KK
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Filing date
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Application filed by NIPPON DENKI TSUSHIN SHISUTEMU KK filed Critical NIPPON DENKI TSUSHIN SHISUTEMU KK
Priority to JP2705693A priority Critical patent/JP2972476B2/en
Publication of JPH06245261A publication Critical patent/JPH06245261A/en
Application granted granted Critical
Publication of JP2972476B2 publication Critical patent/JP2972476B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

PURPOSE:To improve the utilizing efficiency of entire radio channels of the system by installing an auxiliary base station having only a common control radio channel to a zone where service areas by general base stations are overlapped and controlling the auxiliary base station with a control station. CONSTITUTION:General base stations 5-8 each has a common control radio channel and a speech radio channel and have service areas 15-19. An auxiliary base station 4 is installed to areas overlapped by service areas 15-18 and has only a common control radio channel and has a service area 14. Then each of base stations 4-9 is controlled by a control station 1 via communication lines 34-39. For example, when a mobile station 3 on a road 10 makes a call to the auxiliary base station 4 on the service area 14, the auxiliary base station 4 gives a command of deciding a re-calling destination to be a base station 8 having a room for its channel to the mobile station 3. That is, the call transfer destination is prepared in the control station 1 and the traffic of the overlapped service area with an adjacent cell is introduced to one cell.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【産業上の利用分野】本発明はセルラ型無線電話システ
ムの基地局選択方式および基地局選択方法に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a base station selection method and a base station selection method for a cellular radio telephone system.

【0002】[0002]

【従来の技術】従来のセルラ型無線電話システムにおい
ては、移動局は最も電波受信状態の良い無線基地局を選
択し、また、通話中に発生するチャネル切替えを実行す
る際には、直前データとして最も受信状態が良いと判断
される基地局に切替えを行う。
2. Description of the Related Art In a conventional cellular radio telephone system, a mobile station selects a radio base station having the best radio wave reception state. Switching is performed to the base station that is determined to have the best reception state.

【0003】[0003]

【発明が解決しようとする課題】セルラ型無線電話シス
テムにおける基地局の設置点とそのサービスエリアとは
移動局トラヒックの予想分布と電波伝播配置とから最も
望ましい場所を優先的に選択して決定するか、実際の基
地局の設置場所の地理的並びに建造物の構造上の諸条件
から、サービスエリア構成は必ずしも計画の通りではな
い。また、一日の時間帯により移動局トラヒック分布も
大きく変動する。
The installation point of the base station and its service area in the cellular radio telephone system are determined by preferentially selecting the most desirable place from the expected distribution of the mobile station traffic and the radio wave propagation arrangement. Alternatively, the service area configuration is not always as planned due to the geographical location of the actual base station and the structural conditions of the building. In addition, the traffic distribution of the mobile station greatly varies depending on the time of day.

【0004】ここで、従来のセルラ型無線電話システム
では、隣接するセル相互の一方のセルが輻輳し、他方に
余裕があるセルが重なったエリアが生じたとき、移動局
トラヒックの一部を余裕のあるセルに誘導して輻輳セル
を救済することができないという問題点があった。
Here, in the conventional cellular radio telephone system, when one cell of adjacent cells is congested and another cell has an area where there is room in the other cell, a part of the traffic of the mobile station is spared. There is a problem that it is not possible to rescue a congested cell by guiding to a certain cell.

【0005】一方、セルラ型無線電話システムにおける
処理負荷の観点から見ると、チャネル切替えのために使
用される処理量は新しい呼のための通話路設定を行う処
理量に次いで多い傾向にある。また、実際のフィールド
では、チャネル切替えが発生するポイントはほぼ決まっ
ており、その上、短い区間で2度,3度とチャネル切替
えが連続する特異区間も多く形成されることが良く知ら
れている。
On the other hand, from the viewpoint of processing load in the cellular radio telephone system, the processing amount used for channel switching tends to be the second largest after the processing amount for setting a communication path for a new call. Further, in an actual field, it is well known that the point at which channel switching occurs is almost fixed, and moreover, a short section has a large number of unique sections in which channel switching is repeated twice or three times. .

【0006】この特異区間のほとんどは、その時点の最
良セルではなく、十分良好な第2,第3のセルの無線チ
ャネルをアサインすればチャネルの切替え回数を減らす
ことができるが、従来のセルラ型無線電話システムで
は、これができないという問題点があった。
Most of the singular sections are not the best cells at that time, but the number of times of channel switching can be reduced by assigning sufficiently good radio channels to the second and third cells. The wireless telephone system has a problem that this cannot be performed.

【0007】本発明の目的は、一般の基地局で構成され
ているセルラ型無線電話網の複数の基地局による重なっ
たエリアにおいて、時間的なトラヒック変動の大きい特
定地域やチャネル切替えが連続的に発生する特異地点
に、共通制御用無線チャネルのみを有し通話用無線チャ
ネルを持たない補助基地局を設置し、制御局は一般の基
地局と補助基地局の両方を制御することにより、上記問
題点を解決したセルラ型無線電話システムの基地局選択
方式を提供することにある。
[0007] It is an object of the present invention to provide a cellular radiotelephone network composed of general base stations in a plurality of base stations overlapping one another, in which a specific area or channel switching with large temporal traffic fluctuation is continuously performed. By installing an auxiliary base station that has only a common control radio channel and no communication radio channel at a unique point where the problem occurs, the control station controls both the general base station and the auxiliary base station, thereby causing the above problem. It is an object of the present invention to provide a base station selection method for a cellular radio telephone system which solves the above problems.

【0008】[0008]

【課題を解決するための手段】第1の発明によれば、セ
ルラ型無線電話システムにおいて複数の一般の基地局に
よるサービスエリアが重なっている地域に共通制御用無
線チャネルのみを持ち通話用無線チャネルを持たない補
助基地局を設置し、この補助基地局の前記共通制御用無
線チャネルを待受けチャネルとした移動局が発信または
着信呼出しに対する応答を行ったとき前記補助基地局は
あらかじめ制御局から与えられた前記補助基地局がサー
ビスエリアの重なっている前記一般の基地局の1つに再
度発信を行うよう指示する指示手段と、前記移動局が移
動中に前記補助基地局をチャネル切替え先の再優先候補
として前記制御局に切替え要求してきたとき前記制御局
においてあらかじめ定めた前記一般の基地局を優先的に
選択する選択手段とを備えることを特徴とするセルラ型
無線電話システムの基地局選択方式が得られる
According to the first aspect of the present invention , in a cellular radio telephone system, only a common control radio channel is provided in an area where service areas of a plurality of general base stations are overlapped, and a communication radio channel is provided. When an auxiliary base station having no auxiliary base station is installed, and the mobile station that has set the common control radio channel of the auxiliary base station as a standby channel responds to a calling or incoming call, the auxiliary base station is given in advance by the control station. Instruction means for instructing the auxiliary base station to re-transmit to one of the general base stations having overlapping service areas, and re-prioritizing the auxiliary base station to a channel switching destination while the mobile station is moving. Selection means for preferentially selecting the general base station predetermined in the control station when a switching request is issued to the control station as a candidate Cellular type, characterized in that it comprises a
A base station selection scheme for a wireless telephone system is obtained .

【0009】また、第2の発明によれば、移動局が通信
中にチャネル切替えが必要となることに対処するために
切替え先候補基地局をあらかじめ走査・測定し、複数の
前記切替え先候補基地局のデータを前記移動局がシステ
ムへのチャネル切替え要求の際に送信するセルラ型無線
電話システムの基地局選択方であって、通話用無線チ
ャネルを持たず、システム共通制御用無線チャネルの基
地局対移動局の送信機能のみを持ち、且つ待受けチャネ
ルを持たず、送信するデータの基本形式をあらかじめ内
蔵し、システムパラメータの変更と基地局監視とが必要
の都度制御局との間を通信回線で接続し、実際の発信呼
と着信呼出し応答呼を受け付けない補助基地局を他の
複数の一般の基地局によるサービスエリアが重なってい
る地域に設置し、前記移動局が移動中に前記補助基地局
をチャネル切替え先の最優先候補として前記制御局に切
替え要求してきたときは前記制御局において通信中の基
地局との位置関係からあらかじめ定めた前記一般の基地
局を優先的に選択することを特徴とするセルラ型無線電
話システムの基地局選択方法が得られる
According to the second aspect of the present invention , in order to cope with the necessity for the mobile station to perform channel switching during communication, a candidate base station for switching is scanned and measured in advance, and a plurality of candidate base stations for switching are determined. a base station selection how a cellular radiotelephone system data stations the mobile station transmits during a channel switch request to the system, without a call for a radio channel, the base of the system common control radio channel It has only a station-to-mobile station transmission function, does not have a standby channel, has a built-in basic format of data to be transmitted in advance, and communicates with the control station whenever it is necessary to change system parameters and monitor the base station. in connecting, placed not accept the actual outgoing calls and incoming call response call supplementary base station to the area of overlap the service areas according to a plurality of other general base station, When the mobile station has requested the control station to switch to the auxiliary base station as the top priority candidate of the channel switching destination while moving, the general station predetermined from the positional relationship with the base station in communication with the control station in the control station. Cellular wireless system characterized by preferentially selecting a base station
A method for selecting a base station of a talk system is obtained .

【0010】[0010]

【実施例】次に、本発明について図面を参照して説明す
る。
Next, the present invention will be described with reference to the drawings.

【0011】図1は第1の発明の第1の実施例を示すセ
ルラ型無線電話システムのブロック図、図2は図1にお
ける制御局が発信制御並びにチャネル切替え優先基地局
を管理するために内蔵している管理表の一例を示す図で
ある。
FIG. 1 is a block diagram of a cellular radiotelephone system showing a first embodiment of the first invention. FIG. 2 is a block diagram of a control station in FIG. 1 for controlling transmission and controlling a channel switching priority base station. FIG. 6 is a diagram illustrating an example of a management table in operation.

【0012】本実施例のセルラ型無線電話システムは、
図1に示すように一般の基地局5,6,7,8と、補助
基地局4と、制御局1とから構成されている。一般の基
地局5,6,7,8はそれぞれ共通制御用無線チャネル
と通話用無線チャネルとを有し、サービスエリア15,
16,17,18,19を持つ。また、補助基地局4は
サービスエリア15,17,18の重なったエリアに設
置され、通話用無線チャネルは持たず、共通制御用無線
チャネルのみを有し、サービスエリア14を持つ。そし
て、各基地局4,5,6,7,8,9はそれぞれ通信線
34,35,36,37,38,39を介して制御局1
によって制御される。また、制御局1は保守端末2およ
び他の通信網11と接続されている。
The cellular wireless telephone system of the present embodiment is
As shown in FIG. 1, the base station includes general base stations 5, 6, 7, and 8, an auxiliary base station 4, and a control station 1. The general base stations 5, 6, 7, and 8 each have a common control radio channel and a communication radio channel, and
It has 16, 17, 18, and 19. The auxiliary base station 4 is installed in an area where the service areas 15, 17, and 18 are overlapped, has no communication radio channel, has only a common control radio channel, and has a service area 14. Each of the base stations 4, 5, 6, 7, 8, 9 communicates with the control station 1 via a communication line 34, 35, 36, 37, 38, 39, respectively.
Is controlled by The control station 1 is connected to the maintenance terminal 2 and another communication network 11.

【0013】補助基地局4では、図2に示すように14
時から16時までの時間帯は一般の基地局8を発信転換
先基地局とし(発信制御1)、16時から翌日の14時
までの時間帯は一般の基地局7を発信転換先基地局とし
ている(発信制御2)。なお、この管理表は制御局1の
保守端末2(図1に図示)から保守者によって変更する
ことが可能である。
In the auxiliary base station 4, as shown in FIG.
In the time period from 10:00 to 16:00, the general base station 8 is used as the transmission conversion destination base station (transmission control 1), and in the time period from 16:00 to 14:00 on the next day, the general base station 7 is used as the transmission conversion destination base station. (Transmission control 2). This management table can be changed by a maintenance person from the maintenance terminal 2 (shown in FIG. 1) of the control station 1.

【0014】ここで、説明のための条件としてサービス
エリア14は基地局7の電波より強いものとする。ま
た、サービスエリア17は14時から16時までトラヒ
ックが非常に高くなり、基地局7のチャネル全話中がか
なりの頻度で発生する状況であるが、基地局8はこの時
間帯にチャネルの余裕があるものとする。
Here, it is assumed that the service area 14 is stronger than the radio wave of the base station 7 as a condition for explanation. In the service area 17, the traffic becomes very high from 14:00 to 16:00, and the whole channel of the base station 7 is busy at a considerable frequency. It is assumed that there is.

【0015】今、道路10上を走行する移動局3がサー
ビスエリア14において補助基地局4に発信を行うと、
補助基地局4はあらかじめ制御局1から通信線34を介
して与えられている情報により、この地域のサービスエ
リア15,17または18のうちの1つに再発信するよ
う指示を与える。
Now, when the mobile station 3 traveling on the road 10 makes a call to the auxiliary base station 4 in the service area 14,
The auxiliary base station 4 gives an instruction to re-transmit to one of the service areas 15, 17, or 18 in this area based on information previously given from the control station 1 via the communication line 34.

【0016】例えば、補助基地局4は制御局1の指示に
より14時までの間に発信を受けた場合には、再発信先
を基地局8とする指示を移動局3に与える。
For example, when the auxiliary base station 4 receives a call before 14:00 according to the instruction of the control station 1, it gives the mobile station 3 an instruction to set the retransmission destination to the base station 8.

【0017】この発信転換先とスケジュールは図2に示
す管理表として制御局1内に準備され、制御局1はこの
管理表内の開始時刻(FROM HHMM)をシステム
の基地局運用データ更新時と保守者による運用データ変
更時に補助基地局4に転送する。
The call transfer destination and the schedule are prepared in the control station 1 as a management table shown in FIG. 2, and the control station 1 determines the start time (FROM HHMM) in the management table when the base station operation data of the system is updated. The data is transferred to the auxiliary base station 4 when the maintenance data is changed by the maintenance person.

【0018】このように本実施例では、隣接セルとの重
なりサービスエリアのトラヒックを一方のセルに誘導す
ることにより、基地局のサービスエリアを実質的に一部
変更する。
As described above, in this embodiment, the traffic of the overlapping service area with the adjacent cell is guided to one of the cells, so that the service area of the base station is substantially partially changed.

【0019】次に、本実施例における無線チャネル切替
え動作について説明する。
Next, the wireless channel switching operation in the present embodiment will be described.

【0020】まず、補助基地局4を設備する以前の状
態、すなわち従来のシステムについて説明すると、道路
10上を移動局3が図1の下から上へ走行して、地点2
0で基地局5を介して通信を開始する。
First, a state before the auxiliary base station 4 is installed, that is, a conventional system will be described. The mobile station 3 travels on the road 10 from the bottom of FIG.
0 starts communication via the base station 5.

【0021】移動局3は地点21で基地局5のサービス
エリア15の外に出たことで無線チャネル切替え要求を
行う。制御局1は移動局3の報告により基地局7が最善
のセルと判断して無線チャネル切替えを実行する。
The mobile station 3 issues a radio channel switching request when it goes out of the service area 15 of the base station 5 at the point 21. The control station 1 determines that the base station 7 is the best cell based on the report from the mobile station 3 and executes the wireless channel switching.

【0022】次いで、移動局3は地点22においてサー
ビスエリア17の外に出たことで再びチャネル切替えを
要求し、制御局1は移動局3の報告により基地局8を最
善のセルとして選択してチャネル切替えを実行する。
Next, the mobile station 3 requests channel switching again because the mobile station 3 goes out of the service area 17 at the point 22, and the control station 1 selects the base station 8 as the best cell based on the report of the mobile station 3. Perform channel switching.

【0023】この後、移動局3は地点23において再度
チャネル切替え要求を行い、制御局1により基地局9に
チャネルを切り替えたのち、地点24において通信を終
了したものとする。
Thereafter, it is assumed that the mobile station 3 issues a channel switching request again at the point 23, switches the channel to the base station 9 by the control station 1, and terminates the communication at the point 24.

【0024】ここで、地点21に注目すると、基地局7
の電波が基地局8の電波より良好のため基地局7をチャ
ネル切替え先として選択した。しかし、サービスエリア
17は地勢や建造物の影響で地点22において退行して
いるため移動局3は極めて短い区間の移動で再びチャネ
ル切替えが必要になっている。
Here, paying attention to the point 21, the base station 7
Is better than that of base station 8, base station 7 was selected as the channel switching destination. However, since the service area 17 retreats at the point 22 due to the influence of the terrain and the structure, the mobile station 3 needs to switch the channel again after moving in an extremely short section.

【0025】一方、地点21は基地局8のサービス圏内
でもあるので、もし地点21において基地局5から基地
局8の無線チャネルにチャネルを切り替えていれば、地
点22でのチャネル切替えは不要になる。
On the other hand, since the point 21 is also within the service area of the base station 8, if the channel is switched from the base station 5 to the wireless channel of the base station 8 at the point 21, the channel switching at the point 22 becomes unnecessary. .

【0026】すなわち、この例では移動局3は地点2
1,22および23の3回のチャネル切替えサービスを
受けているが、地点21と23の2回のチャネル切替え
に削減できる。
That is, in this example, the mobile station 3 is located at the point 2
Although three channel switching services of 1, 22, and 23 are received, it is possible to reduce the number of channel switching of points 21 and 23 to two.

【0027】地点21のような箇所は、トラヒックの多
い幹線道路においてはできるだけ発生しないことが望ま
しいが、置局後の実際の測定や試験で明らかになること
が多い。
Although it is desirable that a point such as the point 21 does not occur as much as possible on an arterial road where there is a lot of traffic, it often becomes apparent from actual measurements and tests after the station is installed.

【0028】次に、補助基地局を設置した後の本実施例
における無線チャネル切替え動作について図3を併用し
て説明する。
Next, the radio channel switching operation in this embodiment after the installation of the auxiliary base station will be described with reference to FIG.

【0029】図3は図1における制御局が行うチャネル
切替え要求処理フローの一部を示すフローチャートであ
る。
FIG. 3 is a flowchart showing a part of a channel switching request processing flow performed by the control station in FIG.

【0030】本実施例では、前述したようにサービスエ
リア15,17,18の重なったエリアの地点21に共
通制御用無線チャネル専用の補助基地局4を設置してい
る。この補助基地局4の出力は重なりエリア付近に限定
したサービスエリア14を持つ。
In this embodiment, as described above, the auxiliary base station 4 dedicated to the common control radio channel is installed at the point 21 in the area where the service areas 15, 17, and 18 overlap. The output of the auxiliary base station 4 has a service area 14 limited to the vicinity of the overlapping area.

【0031】移動局3が地点21付近でチャネル切替え
先の最優先候補として補助基地局4をげ、通信中の基
地局5にチャネル切替え要求を行うと(ステップ10
1)、基地局5は制御局1に通信線35を介してチャネ
ル切替え要求を伝達する。
The elevation up the supplementary base station 4 the mobile station 3 as the highest priority candidate destination switch channel in the vicinity of the point 21, when the switching channel to the base station 5 in the communication request (step 10
1), the base station 5 transmits a channel switching request to the control station 1 via the communication line 35.

【0032】制御局1では、移動局3が挙げた補助基地
が切替え候補第1優先であるかを判断し(ステップ
102)、ここでYESであれば図2に示す管理表の補
助基地局運用データを参照し(ステップ103)、チャ
ネル切替えにおいて切替え前は基地局5で、且つ切替え
先が補助基地局4の場合は基地局8を優先選択する。
The control station 1 determines whether the auxiliary base station 4 listed by the mobile station 3 has the first priority as a switching candidate (step 102), and if YES here, the auxiliary base station in the management table shown in FIG. Referring to the station operation data (step 103), in the channel switching, the base station 5 is selected prior to the switching , and the base station 8 is preferentially selected when the switching destination is the auxiliary base station 4.

【0033】すなわち、図3において管理表を参照して
現有セルが改善対策セルと等しいかを判断し(ステップ
104)、等しいときは(ステップ104でYES)
理表から切替え先セルを抽出する(ステップ105)。
そして、空きチャネルがあるかを調べて(ステップ10
6)、空きチャネルがあれば(ステップ106でYE
S)チャネル切替えを実行する(ステップ107)。
That is, referring to the management table in FIG. 3, it is determined whether or not the existing cell is equal to the improvement countermeasure cell (step 104). If it is equal (YES in step 104), the cell to be switched is extracted from the management table (step 104). Step 105).
Then, it is checked whether there is an empty channel (step 10).
6) If there is an empty channel (YE in step 106 )
S) Execute channel switching (step 107).

【0034】また、ステップ102でNO,つまり候補
第1優先補助基地局ないとき、ステップ104で
O,つまり現有セルが改善対策セルでないとき、ステッ
プ106でNO,つまり空きチャネルがないときはそれ
ぞれ補助基地局を除く受信レベル優先選択チャネル切替
えを実行する(ステップ108)。
Further, NO in step 102, that is, when the candidate <br/> first priority is not supplementary base station, N in step 104
If O, that is, if the existing cell is not an improvement countermeasure cell, and if NO in step 106 , that is, if there is no vacant channel, the reception level priority selection channel excluding the auxiliary base station is switched (step 108).

【0035】なお、ここでは移動局3が通信中にチャネ
ル切替えが必要となることに備え、切替え先候補基地局
をあらかじめ走査・測定し、複数の切替え先候補基地局
のデータを移動局3からシステムへのチャネル切替え要
求があったときに送信する場合について詳細に説明した
が、チャネル切替えに際し、切替え先チャネルの基地局
選定を制御局1が複数の基地局に指示して測定する場合
も、同様に切替え先基地局の優先順位の転換を実施す
る。
In this case, in preparation for the need for the mobile station 3 to perform channel switching during communication, the switching destination candidate base station is scanned and measured in advance, and data of a plurality of switching destination candidate base stations is transmitted from the mobile station 3 to the mobile station 3. Although the case where transmission is performed when there is a channel switching request to the system has been described in detail, in the case of channel switching, when the control station 1 instructs a plurality of base stations to perform base station selection of a switching destination channel, measurement is also performed. Similarly, the priority of the switching destination base station is changed.

【0036】次に、第1の発明の第2の実施例について
図1と図4,図5を併用して説明する。本実施例は前述
した第1の発明の第1の実施例を更に発展させたもので
ある。
Next, a second embodiment of the first invention will be described with reference to FIGS. This embodiment is a further development of the first embodiment of the first invention.

【0037】図4は第1の発明の第2の実施例における
制御局が発信制御並びにチャネル切替え優先基地局を管
理するために内蔵している管理表の一例を示す図、図5
は図1における制御局が行う周期トラヒックデータに基
づき図4に示す管理表を更新する処理フローを示すフロ
ーチャートである。
FIG. 4 is a diagram showing an example of a management table built in by a control station for managing transmission control and channel switching priority base stations in the second embodiment of the first invention.
5 is a flowchart showing a processing flow for updating a management table shown in FIG. 4 based on periodic traffic data performed by the control station in FIG. 1.

【0038】制御局1から補助基地局4に与える情報は
上記第1の実施例と同様であるが、制御局1は図4に示
す管理表を作成・更新する。
The information given from the control station 1 to the auxiliary base station 4 is the same as in the first embodiment, but the control station 1 creates and updates the management table shown in FIG.

【0039】すなわち、補助基地局4は第1優先として
受け付けた発信または着信呼出し応答のトラヒックの転
換先を各基地局の実際のトラヒック状態を測定して周期
トラヒックデータ集計を行い(ステップ201)、余裕
のある基地局を選択する。
That is, the auxiliary base station 4 measures the actual traffic state of each base station for the destination of the traffic of the outgoing or incoming call response received as the first priority, and performs periodic traffic data aggregation (step 201). Select an affordable base station.

【0040】制御局1は周期的トラヒック観測の結果か
ら各補助基地局ごとの最新の使用率を作成し(ステップ
202)、随時前回更新分との内容を比較し(ステップ
203)、この結果通信線34を介して補助基地局4に
指示する。
The control station 1 creates the latest usage rate for each auxiliary base station from the results of the periodic traffic observation (step 202), compares the contents with the previous update as needed (step 203), and communicates the result. Instruct the auxiliary base station 4 via the line 34.

【0041】そして、補助基地局ごとの発信先転換デー
タの更新の有無を調べ(ステップ204)、ここでは補
助基地局4にデータ更新があるので更新データを送信し
(ステップ205)、補助基地局4では図4に示す管理
表の現在使用率データを更新する(ステップ206)。
Then, it is checked whether or not the transfer destination data has been updated for each auxiliary base station (step 204). Since the auxiliary base station 4 has data update, the update data is transmitted (step 205). In step 4, the current usage rate data in the management table shown in FIG. 4 is updated (step 206).

【0042】次に、第2の発明について図1と図6,図
7を併用して説明する。図6は第2の発明の第1の実施
例を示すシステムブロック図で、通信中の移動局からの
チャネル切替え要求に対する制御局1の動作は第1の発
明の第1の実施例と全く同じである。
Next, the second invention will be described with reference to FIGS. 1, 6, and 7. FIG. FIG. 6 is a system block diagram showing the first embodiment of the second invention. The operation of the control station 1 in response to a channel switching request from a communicating mobile station is exactly the same as that of the first embodiment of the first invention. It is.

【0043】図1においては、制御局1と各基地局との
間は一般に通話チャネルのそれぞれの通信に伴う固有信
号と共通制御用無線チャネルの信号データを共通のデー
タ回線で結んでいる。このデータ回線では、プロトコル
としてはCCITT勧告のX.25やNo.7共通線信
号、またはそれらに準じたものを使用している。
In FIG. 1, between the control station 1 and each base station, a unique signal associated with each communication of a communication channel and signal data of a common control radio channel are generally connected by a common data line. In this data line, as a protocol, X.T. 25 or No. 7 common line signals or their equivalents are used.

【0044】然るに、本実施例のセルラ型無線電話シス
テムでは、図6に示す補助基地局4を待受けチャネル対
象局として移動局3に報知しないので、移動局3からの
発信呼や着信呼出し応答呼を受け付けることはしない
し、また着信呼出し(一般にページとも言う)も行わな
い。従って、補助基地局4が処理する内容も定型的で実
際の呼ごとに制御局1との間で通信する必要は全く無
い。
However, in the cellular radio telephone system according to the present embodiment, the auxiliary base station 4 shown in FIG. 6 is not notified to the mobile station 3 as a standby channel target station. Is not accepted, and no incoming call (generally called a page) is performed. Therefore, the contents processed by the auxiliary base station 4 are also fixed, and there is no need to communicate with the control station 1 for each actual call.

【0045】本実施例では、図6に示すように補助基地
局4は制御局1との間を、それぞれ公衆加入回線61に
より公衆電話通信網6を介して必要の都度接続する。
この通信回線はシステムの共通制御用無線チャネルの報
知データの内容を変更する場合、すなわち、例えば時間
的に補助基地局4の出力を変更してチャネル切替え先を
誘導する地域の大きさを変更するときや補助基地局4の
警報出力などの運用監視に使用する。
[0045] In this embodiment, between the supplementary base station 4 control station 1 as shown in FIG. 6, connects whenever necessary via the public telephone network 6 2 via public subscriber line 61, respectively.
This communication line changes the content of the broadcast data of the common control wireless channel of the system, that is, for example, changes the output of the auxiliary base station 4 temporally to change the size of the area where the channel switching destination is guided. It is used for operation monitoring such as the time and the alarm output of the auxiliary base station 4.

【0046】次に、第2の発明の第2の実施例について
図7を参照して説明する。図7は第2の発明の第2の実
施例を示すシステムブロック図である。
Next, a second embodiment of the second invention will be described with reference to FIG. FIG. 7 is a system block diagram showing a second embodiment of the second invention.

【0047】図7において、移動局3から見た補助基地
局4の機能は図6に示した第2の発明の第1の実施例と
全く同じであるが、補助基地局4と制御局1とを結ぶ情
報伝達手段が異なる。
In FIG. 7, the function of the auxiliary base station 4 as viewed from the mobile station 3 is exactly the same as that of the first embodiment of the second invention shown in FIG. The information transmission means that connects

【0048】本実施例では、制御局1と補助基地局4を
結ぶ情報伝達手段として、システムが移動局3に提供し
ている無線電話用通信回線を必要の都度使用する。通信
手順もシステム標準手順を使用する。送受信機71は補
助基地局4と共に設置され、補助基地局4との間は例え
ば移動局用データ端末サービス用標準の接続手段と通信
手順を使用する。
In this embodiment, a wireless telephone communication line provided to the mobile station 3 by the system is used as necessary as information transmission means for connecting the control station 1 and the auxiliary base station 4. The communication procedure also uses the system standard procedure. The transceiver 71 is installed together with the auxiliary base station 4 and uses, for example, standard connection means and communication procedures for the mobile station data terminal service with the auxiliary base station 4.

【0049】制御局1は補助基地局4から送信する報知
情報並びに運用監視に伴う制御情報を、最寄りの一般の
基地局7を介してデータ通信呼の形式で伝える。また、
基地局4または送受信機71の警報などは送受信機71
からシステム標準のデータ通信手順で一般の基地局7を
介して制御局1に伝える。
The control station 1 transmits broadcast information transmitted from the auxiliary base station 4 and control information associated with operation monitoring in the form of a data communication call via the nearest general base station 7. Also,
The alarm of the base station 4 or the transceiver 71 is transmitted to the transceiver 71.
To the control station 1 via a general base station 7 in a system standard data communication procedure.

【0050】[0050]

【発明の効果】以上説明したように本発明は、時間帯に
よって輻輳が発生する基地局と、その時間帯に輻輳して
いない隣接基地局を持つシステムにおいて、輻輳してい
る基地局のトラヒックの一部を、サービスエリアが重な
っている地域で輻輳していない基地局にトラヒック誘導
を行うことにより、システム全体の無線チャネル使用効
率を著しく向上するという効果を有し、基地局の無線チ
ャネル割当てを時間帯によって変えたり、時間帯によっ
てサービスエリアの大きさを変更したりするダイナミッ
ク・チャネル・アサインメント(DCA)を固定的に与
えられたオーバーラップサービスエリアの範囲以内で実
行するとき特に大きい効果を有する。
As described above, according to the present invention, in a system having a base station in which congestion occurs due to a time zone and an adjacent base station which is not congested in the time zone, the traffic of the congested base station is reduced. In part, by performing traffic guidance to a base station that is not congested in an area where service areas overlap, this has the effect of significantly improving the wireless channel usage efficiency of the entire system. This is particularly effective when performing dynamic channel assignment (DCA), which varies depending on the time of day or changes the size of the service area depending on the time of day, within a fixed overlapped service area. Have.

【0051】さらに、セルラ型無線電話システムでチャ
ネル切替え実行回数を削減できるので、中央処理装置の
処理量を軽減し、結果的にシステムの加入者収容能力が
向上するという効果を有する。
Furthermore, since the number of times of channel switching can be reduced in the cellular radio telephone system, the processing amount of the central processing unit is reduced, and as a result, the subscriber capacity of the system is improved.

【0052】また、第2の発明では、制御局と補助基地
局の通信回線を高速且つ大容量の専用回線でなく、低速
の音声回線あるいはセルラ型無線電話システムの一般通
信回線を必要の都度接続するので、通信回線費用が安く
なり、さらに制御局と補助基地局を結ぶそれぞれの回線
装置が簡単になるという効果を有する。
Further, in the second invention, the communication line between the control station and the auxiliary base station is connected not only to a high-speed and large-capacity dedicated line but also to a low-speed voice line or a general communication line of a cellular radio telephone system whenever necessary. Therefore, there is an effect that the cost of the communication line is reduced and each line device connecting the control station and the auxiliary base station is simplified.

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

【図1】第1の発明の第1の実施例を示すセルラ型無線
電話システムのブロック図であ
FIG. 1 is a block diagram of a cellular radio telephone system showing a first embodiment of the first invention.

【図2】図1における制御局が発信制御並びにチャネル
切替え優先基地局を管理するために内蔵している管理表
の一例を示す図である。
FIG. 2 is a diagram showing an example of a management table built in by a control station in FIG. 1 to manage transmission control and channel switching priority base stations.

【図3】図1における制御局が行うチャネル切替え要求
処理フローの一部を示すフローチャートである。
FIG. 3 is a flowchart showing a part of a channel switching request processing flow performed by a control station in FIG. 1;

【図4】第1の発明の第2の実施例における制御局が発
信制御並びにチャネル切替え優先基地局を管理するため
に内蔵している管理表の一例を示す図である。
FIG. 4 is a diagram showing an example of a management table incorporated in a control station in the second embodiment of the first invention for managing transmission control and channel switching priority base stations.

【図5】図1における制御局が行う周期トラヒックデー
タに基づき図4に示す管理表を更新する処理フローを示
すフローチャートである。
5 is a flowchart showing a processing flow for updating a management table shown in FIG. 4 based on periodic traffic data performed by a control station in FIG. 1.

【図6】第2の発明の第1の実施例を示すシステムブロ
ック図である。
FIG. 6 is a system block diagram showing a first embodiment of the second invention.

【図7】第2の発明の第2の実施例を示すシステムブロ
ック図である。
FIG. 7 is a system block diagram showing a second embodiment of the second invention.

【符号の説明】[Explanation of symbols]

1 制御局 2 保守端末 3 移動 4 補助基地局 5,…,9 一般の基地局10 道路 11 他の通信網 14,…,19 サービスエリア 20,…,24 地点 3…,39 通信線 61 公衆加入回線 62 公衆電話通信網 74 送受信機1 control station 2 maintenance terminal 3 mobile station 4 supplementary base station 5, ..., 9 ordinary base station 10 road 11 other communications networks 14, ..., 19 service areas 20, ..., 24 point 3 4, ..., 39 communication line 61 Public subscriber line 62 Public telephone communication network 74 Transceiver

フロントページの続き (58)調査した分野(Int.Cl.6,DB名) H04B 7/24 - 7/26 H04Q 7/00 - 7/38 Continuation of the front page (58) Field surveyed (Int. Cl. 6 , DB name) H04B 7/24-7/26 H04Q 7/00-7/38

Claims (2)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】 セルラ型無線電話システムにおいて複数
の一般の基地局によるサービスエリアが重なっている地
域に共通制御用無線チャネルのみを持ち通話用無線チャ
ネルを持たない補助基地局を設置し、この補助基地局の
前記共通制御用無線チャネルを待受けチャネルとした移
動局が発信または着信呼出しに対する応答を行ったとき
前記補助基地局はあらかじめ制御局から与えられた前記
補助基地局がサービスエリアの重なっている前記一般の
基地局の1つに再度発信を行うよう指示する指示手段
と、前記移動局が移動中に前記補助基地局をチャネル切
替え先の最優先候補として前記制御局に切替え要求して
きたとき前記制御局においてあらかじめ定めた前記一般
の基地局を優先的に選択する選択手段とを備えることを
特徴とするセルラ型無線電話システムの基地局選択方
式。
An auxiliary base station having only a common control radio channel and no communication radio channel is installed in an area where service areas of a plurality of general base stations overlap in a cellular radio telephone system. When the mobile station that has set the common control radio channel of the base station as the standby channel responds to the calling or incoming call, the auxiliary base station has the service area overlapping with the auxiliary base station given in advance by the control station. Instruction means for instructing one of the general base stations to transmit again, and when the mobile station requests the control station to switch to the auxiliary base station as the highest priority candidate for channel switching while the mobile station is moving, Selecting means for preferentially selecting the general base station predetermined in the control station. Base station selection method for line telephone system.
【請求項2】 移動局が通信中にチャネル切替えが必要
となることに対処するために切替え先候補基地局をあら
かじめ走査・測定し、複数の前記切替え先候補基地局の
データを前記移動局がシステムへのチャネル切替え要求
の際に送信するセルラ型無線電話システムの基地局選択
であって、通話用無線チャネルを持たず、システム
共通制御用無線チャネルの基地局対移動局の送信機能の
みを持ち、且つ待受けチャネルを持たず、送信するデー
タの基本形式をあらかじめ内蔵し、システムパラメータ
の変更と基地局監視とが必要の都度制御局との間を通信
回線で接続し、実際の発信呼と着信呼出し応答呼を受
け付けない補助基地局を他の複数の一般の基地局による
サービスエリアが重なっている地域に設置し、前記移動
局が移動中に前記補助基地局をチャネル切替え先の最優
先候補として前記制御局に切替え要求してきたときは前
記制御局において通信中の基地局との位置関係からあら
かじめ定めた前記一般の基地局を優先的に選択すること
を特徴とするセルラ型無線電話システムの基地局選択方
2. The mobile station scans and measures a switching destination candidate base station in advance in order to cope with the need for channel switching during communication, and the mobile station transmits data of a plurality of switching destination candidate base stations. a base station selection <br/> how cellular radiotelephone system for transmitting during the channel switch request to the system, without a call for a radio channel, the base station for mobile stations in the system common control radio channel It has only a transmission function, and does not have a standby channel, has a built-in basic format of data to be transmitted in advance, connects a control station with a control station whenever a change in system parameters and base station monitoring are required, It established the actual outgoing calls and incoming calls answered calls and a not accepted supplementary base station in the area overlapping service area by a plurality of other general base station, the mobile station before moving When an auxiliary base station has been requested to switch to the control station as a top priority candidate of a channel switching destination, the control station preferentially selects the general base station determined in advance from a positional relationship with a communicating base station. Base station selection method for cellular radiotelephone system
Law .
JP2705693A 1993-02-17 1993-02-17 Base station selection method and base station selection method for cellular wireless telephone system Expired - Fee Related JP2972476B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2705693A JP2972476B2 (en) 1993-02-17 1993-02-17 Base station selection method and base station selection method for cellular wireless telephone system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2705693A JP2972476B2 (en) 1993-02-17 1993-02-17 Base station selection method and base station selection method for cellular wireless telephone system

Publications (2)

Publication Number Publication Date
JPH06245261A JPH06245261A (en) 1994-09-02
JP2972476B2 true JP2972476B2 (en) 1999-11-08

Family

ID=12210418

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Application Number Title Priority Date Filing Date
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Country Status (1)

Country Link
JP (1) JP2972476B2 (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3118801B2 (en) 1998-09-18 2000-12-18 日本電気株式会社 Mobile communication system and service area complementing method using CDMA communication system
JP4935896B2 (en) 2007-03-15 2012-05-23 富士通株式会社 Base station and method used in mobile communication system

Also Published As

Publication number Publication date
JPH06245261A (en) 1994-09-02

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