JPH11103479A - Mobile communication system - Google Patents

Mobile communication system

Info

Publication number
JPH11103479A
JPH11103479A JP9261350A JP26135097A JPH11103479A JP H11103479 A JPH11103479 A JP H11103479A JP 9261350 A JP9261350 A JP 9261350A JP 26135097 A JP26135097 A JP 26135097A JP H11103479 A JPH11103479 A JP H11103479A
Authority
JP
Japan
Prior art keywords
base station
station
mobile station
wireless channel
position information
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
JP9261350A
Other languages
Japanese (ja)
Inventor
Takao Suzuki
孝夫 鈴木
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.)
Oki Electric Industry Co Ltd
Original Assignee
Oki Electric Industry 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 Oki Electric Industry Co Ltd filed Critical Oki Electric Industry Co Ltd
Priority to JP9261350A priority Critical patent/JPH11103479A/en
Publication of JPH11103479A publication Critical patent/JPH11103479A/en
Pending legal-status Critical Current

Links

Abstract

PROBLEM TO BE SOLVED: To provide a mobile communication system that can smoothly execute a changeover even in a system such as a micro cell mobile communication system. SOLUTION: When a mobile station 40 in communication moves in a reception region of another base station, a mobile communication system in which a radio circuit control station for controlling plural base stations switch a radio channel and continues a communication is provided with a position information detection part 31 for detecting a moving speed and moving direction of mobile station communicating in a range of reception as position information in base stations 1 to n, a moving station position information accumulation part 11 for accumulating the position information detected by the position information detection part 31 of plural base stations in a radio circuit control station 20, a base station destination prediction part 12 for predicting a base station to which the mobile station moves on the basis of the position information, a radio channel removal part 21 for removing a unused radio channel of the destination base station, a base station radio channel changeover part 13 for switching a radio channel to the radio channel removed by a radio channel removal means are provided.

Description

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

【0001】[0001]

【発明の属する技術分野】この発明は移動体通信システ
ムであり、特に無線ゾーンが極小のマイクロセル移動通
信システムにおけるハンドオーバ(無線チャネル切替)
に関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a mobile communication system, and more particularly to a handover (radio channel switching) in a microcell mobile communication system having a minimum radio zone.
It is about.

【0002】[0002]

【従来の技術】図2は移動通信システムにおいて、ある
移動局がある無線ゾーンから他の無線ゾーンに移動する
場合に行われる無線チャネル切替(以下、ハンドオーバ
という)を表す図である。また図3は従来のハンドオー
バ処理を行う移動通信システムのブロック図である。図
3において、100は無線チャネル切替装置であり、無
線回線制御局200内に備えられている。無線回線制御
局200とは、複数の基地局の制御を行い、どの基地局
が移動局ともっとも近いかを調べ、移動局が通信する無
線チャネルを決定するところである。無線チャネル切替
装置100には、複数の無線基地局1〜n(以下、基地
局という)が接続されている。基地局1〜nは、移動局
400から送信されるキャリア信号の受信レベルを検出
し、無線チャネル切替装置100に送信する受信レベル
検出部310を少なくとも備えている。
2. Description of the Related Art FIG. 2 is a diagram showing radio channel switching (hereinafter referred to as handover) performed when a mobile station moves from one radio zone to another radio zone in a mobile communication system. FIG. 3 is a block diagram of a mobile communication system that performs a conventional handover process. In FIG. 3, reference numeral 100 denotes a radio channel switching device, which is provided in the radio network controller 200. The radio network controller 200 controls a plurality of base stations, checks which base station is closest to the mobile station, and determines a radio channel with which the mobile station communicates. A plurality of wireless base stations 1 to n (hereinafter, referred to as base stations) are connected to the wireless channel switching device 100. Each of the base stations 1 to n includes at least a reception level detection unit 310 that detects a reception level of a carrier signal transmitted from the mobile station 400 and transmits the carrier signal to the wireless channel switching device 100.

【0003】無線チャネル切替装置100は、移動局受
信情報蓄積部110、基地局移動先決定部120及び基
地局無線チャネル切替部130から構成される。移動局
受信情報蓄積部11は、基地局1〜nの受信レベル検出
部310が送信したキャリア信号の監視結果の報告を蓄
積する。基地局移動先決定部120は、各基地局からの
キャリア信号の受信レベルの監視結果と所定のしきい値
との比較に基づいて移動局の移動先の基地局を決定す
る。また無線回線制御局200のチャネル捕捉部210
に、選択した移動先の基地局の空いている無線チャネル
を捕捉させる。基地局通話チャネル切替部130は、無
線チャネル捕捉部210が移動先の無線ゾーンを範囲と
する基地局に空いている無線チャネルを捕捉すると、現
在移動局が使用している無線チャネルから捕捉した無線
チャネルに移動局の無線チャネルを切替える。
The radio channel switching device 100 comprises a mobile station reception information storage unit 110, a base station destination determination unit 120, and a base station radio channel switching unit 130. The mobile station reception information accumulation unit 11 accumulates a report of the monitoring result of the carrier signal transmitted by the reception level detection units 310 of the base stations 1 to n. The base station move destination determining unit 120 determines a base station to which the mobile station moves based on a comparison between the result of monitoring the reception level of the carrier signal from each base station and a predetermined threshold. Also, the channel capturing unit 210 of the radio network controller 200
Causes a free radio channel of the selected destination base station to be captured. When the wireless channel capturing unit 210 captures a vacant wireless channel in the base station within the destination wireless zone, the base station call channel switching unit 130 transmits the wireless channel captured from the wireless channel currently used by the mobile station. Switch the radio channel of the mobile station to the channel.

【0004】図2及び図3に基づいて、移動通信システ
ムにおける従来のハンドオーバ処理について説明する。
なお、図2において、500は移動通信交換局であり、
基地局と有線回線で接続されており、回線の交換を行
う。また図2及び図3では、移動局400として高速移
動体である自動車を想定している。
A conventional handover process in a mobile communication system will be described with reference to FIGS.
In FIG. 2, reference numeral 500 denotes a mobile communication switching center,
It is connected to the base station via a wired line and exchanges lines. 2 and 3, it is assumed that the mobile station 400 is an automobile that is a high-speed mobile unit.

【0005】基地局1〜nは、自分の無線ゾーン内で通
信中の移動局が使用している無線チャネルを常時監視し
ている。ここで、ある移動局400が、通話中に無線ゾ
ーン1から無線ゾーン2へ移動した場合、無線ゾーン1
では、移動局400のキャリア信号の受信レベルが低下
する。基地局はそれを検知すると、無線回線制御局20
0に対して受信レベル劣化を通知する。無線回線制御局
200は周辺基地局に対し、その無線チャネルにおける
キャリア信号の受信レベルの監視指示を発する。監視指
示を受けた周辺の基地局は、その無線チャネルの監視結
果の報告を無線回線制御局200に送信する。無線チャ
ネル切替装置100の移動局受信情報蓄積部110は、
各基地局からの監視結果の報告を蓄積する。基地局移動
先決定部120はその報告に基づいて、周辺基地局のう
ち、その無線チャネルの受信レベルが最も高い監視結果
を報告した基地局を移動局の移動先無線ゾーン(無線ゾ
ーン2)の基地局と判断し、無線チャネル捕捉部210
にその基地局の空いている無線チャネルを捕捉させる。
また、移動通信交換局500に対し、基地局と移動通信
交換局500との間の有線回線の切替えを依頼する。
[0005] Each of the base stations 1 to n constantly monitors a radio channel used by a mobile station communicating within its own radio zone. Here, when a certain mobile station 400 moves from the wireless zone 1 to the wireless zone 2 during a call, the wireless zone 1
Then, the reception level of the carrier signal of the mobile station 400 decreases. When the base station detects this, the radio network controller 20
0 is notified of reception level deterioration. The radio network controller 200 issues an instruction to the peripheral base station to monitor the reception level of the carrier signal on the radio channel. The peripheral base station that has received the monitoring instruction transmits a report of the monitoring result of the wireless channel to the radio network controller 200. The mobile station reception information storage unit 110 of the wireless channel switching device 100
The report of the monitoring result from each base station is accumulated. Based on the report, the base station movement destination determining unit 120 determines the base station that has reported the monitoring result having the highest reception level of the wireless channel among the surrounding base stations in the movement destination wireless zone (wireless zone 2) of the mobile station. Determined as a base station, the radio channel acquisition unit 210
Causes the base station to capture a vacant radio channel.
Further, the mobile communication switching center 500 is requested to switch the wired line between the base station and the mobile communication switching center 500.

【0006】移動通信交換局500は、まず基地局との
間の有線回線による導通試験を行う。導通試験が良好で
あると判断すれば、移動通信交換局500は、現在使用
している無線チャネルから新しい無線チャネルヘの切替
え指示を移動局400に行い、移動局40はその指示を
受けると、無線チャネルを新しい無線チャネルの周波数
帯域に切替える。また基地局無線チャネル切替部130
により、移動先の無線ゾーンの基地局では、移動局との
間で無線による導通試験を行い、導通試験が良好である
と判断すれば、移動通信交換局500に通知し、移動通
信交換局500は、現在使用中の基地局の回線から新し
い無線ゾーンの基地局の回線に有線回線の通話路を切替
えてハンドオーバの処理を終了する。
[0006] The mobile communication switching center 500 first conducts a continuity test using a wired line with the base station. If it is determined that the continuity test is good, mobile switching center 500 issues an instruction to switch from the currently used wireless channel to a new wireless channel to mobile station 400, and upon receiving the instruction, mobile station 40 issues a radio switch. Switch the channel to the frequency band of the new radio channel. The base station radio channel switching unit 130
Thus, the base station in the destination wireless zone performs a wireless continuity test with the mobile station, and if it determines that the continuity test is good, notifies the mobile communication switching center 500 Switches the communication path of the wired line from the line of the base station currently in use to the line of the base station in the new wireless zone, and ends the handover process.

【0007】ここで自動車電話システムのように、無線
ゾーンが数km〜数十kmのカバ範囲を持つマクロセル移動
体通信システムにおいては、例えば自動車等の高速移動
体が無線ゾーン内を通過するには十分長い時間を要する
ため、無線ゾーンの境界を横切るときの無線チャネル切
替を行う時間にも比較的余裕があり、無線チャネル切替
装置の処理を高速にする必要性はない。
Here, in a macrocell mobile communication system in which a wireless zone has a coverage range of several km to several tens km, such as a car telephone system, for example, a high-speed mobile body such as an automobile passes through the wireless zone. Since a sufficiently long time is required, there is a comparatively long time for performing wireless channel switching when crossing the boundary of the wireless zone, and there is no need to increase the processing speed of the wireless channel switching device.

【0008】[0008]

【発明が解決しようとする課題】しかしながら、移動加
入者のチャネル容量を増加させるため、無線ゾーンを小
さくして同一の周波数帯域をできるだけ有効利用し、周
波数利用効率を高めたマイクロセル移動通信システムで
は、無線ゾーンのカバ範囲が数百mであるため、例えば
自動車等の高速移動体がその無線ゾーンを通過するのに
数秒しかかからず、短時間の間に続けて無線ゾーンの境
界を横切るため、通話チャネル切替の時間に余裕がなく
なる。したがってマイクロセル移動通信システムでの無
線チャネル切替装置には高速な処理能力が要求される。
このような通話チャネル切替の要求に対して、無線回線
制御局内の無線チャネル切替装置の処理能力が十分でな
いと、通話が切断されるという問題点があった。
However, in order to increase the channel capacity of a mobile subscriber, a micro-cell mobile communication system in which the radio zone is made smaller and the same frequency band is used as efficiently as possible to improve the frequency use efficiency is proposed. Since the coverage of the wireless zone is several hundred meters, it takes only a few seconds for a high-speed moving object such as a car to pass through the wireless zone, and continuously crosses the boundary of the wireless zone in a short time. Thus, there is no room for switching the communication channel. Therefore, a high-speed processing capability is required for a wireless channel switching device in a microcell mobile communication system.
If the processing capability of the radio channel switching device in the radio network controller is not sufficient for such a call channel switching request, there is a problem that the call is disconnected.

【0009】そこで短時間で無線ゾーンの切替を行わな
ければならないマイクロセル移動通信システムのような
システムにおいても、切替えをスムーズに行えるような
チャネル切替装置の実現が望まれていた。
[0009] Therefore, it has been desired to realize a channel switching device capable of performing switching smoothly even in a system such as a microcell mobile communication system in which switching of wireless zones must be performed in a short time.

【0010】[0010]

【課題を解決するための手段】本発明の移動通信システ
ムは、通信中の移動局が、無線通信を行っている基地局
の受信範囲から別の基地局の受信範囲に移動する際に、
複数の基地局を制御する無線回線制御局が、移動局の無
線チャネルを、無線通信を行っている基地局に割り当て
られた無線チャネルから別の基地局に割り当てられた無
線チャネルに切り替えて通信を継続させる移動通信シス
テムにおいて、基地局内において、通信中の移動局の移
動速度及び移動方向を位置情報として検出する位置情報
検出手段と、無線回線制御局において、複数の基地局の
位置情報検出手段が検出した位置情報を蓄積する移動局
位置情報蓄積手段と、移動局位置情報蓄積手段が蓄積す
る位置情報に基づいて、通信中の移動局が移動する先の
受信範囲の基地局を予測する基地局移動先予測手段と、
基地局移動先予測手段が予測した移動する先の基地局の
使用されていない無線チャネルを捕捉する無線チャネル
捕捉手段と、通信中の移動局の無線チャネルを、移動局
が使用している無線チャネルから無線チャネル捕捉手段
が捕捉した無線チャネルに切り替える基地局無線チャネ
ル切替手段とを備えている。本発明においては、移動局
がある基地局の受信範囲から別の基地局の受信範囲に移
動する際の無線チャネルの切替において、基地局の位置
情報検出手段では、無線通信を行っている移動局の移動
速度及び移動方向を検出する。その移動速度及び移動方
向を位置情報として無線回線制御局に送信する。無線回
線制御局の移動局位置情報蓄積手段では、移動局の位置
情報を蓄積する。基地局移動先予測手段では、その位置
情報に基づいて、通信中の移動局が移動する先の受信範
囲の基地局を予測する。無線チャネル捕捉手段が予測移
動先の受信範囲の基地局の空いている無線チャネルを捕
捉しておく。基地局無線チャネル切替手段が移動局が使
用している無線チャネルから無線チャネル捕捉手段が捕
捉した無線チャネルに切り替える。位置情報により先に
予測を行っておくことにより、処理能力を上げなくても
ハンドオーバの処理がスムーズに行える。
According to the mobile communication system of the present invention, when a communicating mobile station moves from a receiving range of a base station performing wireless communication to a receiving range of another base station,
A radio network controller that controls a plurality of base stations switches communication from a radio channel of a mobile station to a radio channel assigned to another base station from a radio channel assigned to a base station performing radio communication. In a mobile communication system to be continued, in a base station, position information detecting means for detecting a moving speed and a moving direction of a communicating mobile station as position information, and in a radio network controller, position information detecting means for a plurality of base stations are provided. Mobile station position information storage means for storing detected position information, and a base station for predicting a base station in a reception range to which a mobile station in communication moves based on the position information stored by the mobile station position information storage means Destination prediction means,
A wireless channel capturing unit that captures an unused wireless channel of the base station to which the base station moves, which is predicted by the base station destination predicting unit; and a wireless channel that is being used by the mobile station. And a base station wireless channel switching means for switching to a wireless channel captured by the wireless channel capturing means. In the present invention, in switching of a radio channel when a mobile station moves from a reception range of one base station to a reception range of another base station, the position information detecting means of the base station uses a mobile station performing radio communication. The moving speed and the moving direction of are detected. The moving speed and moving direction are transmitted to the radio network controller as position information. The mobile station position information storage means of the radio network controller stores the position information of the mobile station. The base station movement destination prediction means predicts, based on the position information, a base station in a reception range to which a mobile station during communication moves. The wireless channel capturing means captures a vacant wireless channel of the base station in the reception range of the predicted movement destination. The base station wireless channel switching means switches from the wireless channel used by the mobile station to the wireless channel captured by the wireless channel capturing means. By performing the prediction first based on the position information, the handover process can be performed smoothly without increasing the processing capability.

【0011】[0011]

【発明の実施の形態】BEST MODE FOR CARRYING OUT THE INVENTION

実施形態1.図1は本発明の第1の実施の形態に係る移
動体通信システムのブロック図である。図において1〜
nは基地局であり、それぞれの基地局は自分の無線ゾー
ン内の各移動局から送信されるキャリア信号に基づい
て、各移動局の移動速度及び移動方向を算出し、位置情
報として検出する位置情報検出部31を少なくとも備え
ている。
Embodiment 1 FIG. FIG. 1 is a block diagram of the mobile communication system according to the first embodiment of the present invention. In the figure,
n is a base station, and each base station calculates a moving speed and a moving direction of each mobile station based on a carrier signal transmitted from each mobile station in its own radio zone, and a position detected as position information. At least an information detection unit 31 is provided.

【0012】10は無線チャネル切替装置であり、無線
回線制御局20内に設置される。無線チャネル切替装置
10は、移動局位置情報蓄積部11、基地局移動先予測
部12及び基地局無線チャネル切替部13で構成され
る。
Reference numeral 10 denotes a radio channel switching device, which is installed in the radio network controller 20. The wireless channel switching device 10 includes a mobile station position information storage unit 11, a base station destination prediction unit 12, and a base station wireless channel switching unit 13.

【0013】移動局位置情報蓄積部11は、基地局1〜
nから所定周期毎に送信される各移動局毎の位置情報
を、管理テーブルを生成し、蓄積する。基地局移動先予
測部12は、移動局位置情報蓄積部11に蓄積される管
理テーブルの位置情報に基づいて、通話中の各移動局の
移動先を予測する。また現在通信している基地局の無線
ゾーンと予測した移動先の基地局の無線ゾーンとの境界
に到達する時刻を予測する。また、無線チャネル捕捉部
21に、予測した移動先の無線ゾーンの基地局の空いて
いる無線チャネルを捕捉させるようにする。基地局無線
チャネル切替部13は、基地局移動先予測部12が予測
した時刻に基づいて、各移動局が境界に到達する予測時
刻になると、各移動局の無線チャネルを、無線回線制御
局本体が捕捉しておいた空きチャネルに切替える。タイ
マ14は、基地局移動先予測部12及び基地局無線チャ
ネル切替部13に時刻のデータを与えるものである。本
実施の形態の基地局1〜nは、カバ範囲が小さいマイク
ロセル移動通信システムの基地局を想定している。また
本実施の形態では高速移動体である自動車を想定したあ
る移動局40を対象として説明を行う。
[0013] The mobile station location information accumulating section 11 includes base stations 1 to
A management table is generated and accumulated for the position information of each mobile station transmitted every predetermined period from n. The base station movement destination prediction unit 12 predicts a movement destination of each mobile station during a call based on the position information of the management table stored in the mobile station position information storage unit 11. Further, the time at which the mobile station reaches the boundary between the wireless zone of the base station with which communication is currently performed and the predicted wireless zone of the destination base station is predicted. In addition, the wireless channel capturing unit 21 is configured to capture a vacant wireless channel of the base station in the predicted destination wireless zone. The base station radio channel switching unit 13 changes the radio channel of each mobile station based on the time predicted by the base station destination prediction unit 12 at the predicted time at which each mobile station reaches the boundary. Switches to an unused channel that has been captured. The timer 14 gives time data to the base station destination prediction unit 12 and the base station radio channel switching unit 13. Base stations 1 to n of the present embodiment are assumed to be base stations of a microcell mobile communication system having a small coverage range. Further, in the present embodiment, a description will be given of a mobile station 40 assuming an automobile that is a high-speed mobile object.

【0014】次に本実施の形態の移動通信システムのハ
ンドオーバ処理について無線チャネル切替を中心に説明
する。各移動局は、通話中において、無線チャネルの周
波数帯域でキャリア信号を送信している。基地局1〜n
の位置情報検出部31は、移動局40から送信されるキ
ャリア信号を受信し、移動局40の位置情報を算出す
る。位置情報の算出方法にはいくつかの方法がある。基
地局のアンテナに指向性アンテナを用いて電波の入射角
度を測定する機能をもたせ、また基地局と移動局との間
を往復伝送する無線信号の伝搬時間を測定する機能をも
たせて、これらの測定機能を用いることにより、基地局
のアンテナを基準とした入射角度と伝搬時間から移動局
の位置を算出する方法がある。また、基地局側に2つの
基地局アンテナを設置する場合には、この2つのアンテ
ナを基準とした伝搬時間に基づく距離から移動局の位置
を算出する方法がある。さらに、無線信号としてスペク
トル拡散方式を用いた場合、基地局と移動局との間で疑
似雑音信号(PN符号)を無線伝送することで、基地局
側では移動局との間で送受信したPN符号の位相差を検
知することにより距離を測定する方法がある。スペクト
ル拡散方式では受信側のスペクトル拡散復調において、
複数の伝搬経路によるマルチパスを分離識別することが
できるので、PN符号の位相差に基づいて最短伝搬時間
から基地局と移動局との間の最短距離を測定できる。
Next, handover processing of the mobile communication system according to the present embodiment will be described focusing on wireless channel switching. Each mobile station transmits a carrier signal in a frequency band of a wireless channel during a call. Base stations 1 to n
The position information detection unit 31 receives the carrier signal transmitted from the mobile station 40 and calculates the position information of the mobile station 40. There are several methods for calculating position information. The base station antenna has a function of measuring the incident angle of radio waves using a directional antenna, and the function of measuring the propagation time of a radio signal transmitted and received between the base station and the mobile station. There is a method of calculating the position of the mobile station from the angle of incidence and the propagation time based on the antenna of the base station by using the measurement function. When two base station antennas are installed on the base station side, there is a method of calculating the position of the mobile station from a distance based on the propagation time based on the two antennas. Further, when a spread spectrum system is used as a wireless signal, a pseudo noise signal (PN code) is wirelessly transmitted between the base station and the mobile station, so that the base station side transmits and receives the PN code transmitted and received between the base station and the mobile station. There is a method of measuring the distance by detecting the phase difference of the distance. In the spread spectrum method, in the spread spectrum demodulation on the receiving side,
Since the multipath by a plurality of propagation paths can be separated and identified, the shortest distance between the base station and the mobile station can be measured from the shortest propagation time based on the phase difference of the PN code.

【0015】基地局1〜nは、所定周期毎に算出した位
置情報を、無線チャネル切替装置10の移動局位置情報
蓄積部11に送信する。移動局位置情報蓄積部11は、
基地局1〜nから送信された各移動局毎の位置情報を管
理テーブルを作成して、蓄積する。
The base stations 1 to n transmit the position information calculated every predetermined period to the mobile station position information storage unit 11 of the wireless channel switching device 10. The mobile station location information storage unit 11
It creates a management table and stores the location information for each mobile station transmitted from the base stations 1 to n.

【0016】基地局移動先予測部12は、移動局位置情
報蓄積部11が蓄積する管理テーブルの位置情報及びタ
イマ14からの時刻データに基づいて、移動先の無線ゾ
ーンを予測し、各移動局が通過中の無線ゾーンと移動先
の新無線ゾーンとの境界を横切る時刻を予測する。また
基地局移動先予測部12は、無線チャネル捕捉部21に
予測移動先の無線ゾーンを範囲とする基地局の空いてい
る無線チャネルを捕捉させる。基地局移動先予測部12
は、無線チャネル捕捉部21が捕捉した無線チャネルの
データや予測時刻データを基地局移動先判定結果として
基地局無線チャネル切替部13に送信する。移動通信交
換局50では有線回線の切替が行われる。
The base station destination prediction unit 12 predicts a destination wireless zone based on the position information of the management table stored in the mobile station position information storage unit 11 and the time data from the timer 14, and Is predicted to cross the boundary between the passing wireless zone and the destination new wireless zone. In addition, the base station movement destination prediction unit 12 causes the wireless channel capturing unit 21 to capture a vacant wireless channel of the base station within the wireless zone of the predicted movement destination. Base station destination prediction unit 12
Transmits the data of the wireless channel and the predicted time data captured by the wireless channel capturing unit 21 to the base station wireless channel switching unit 13 as the base station destination determination result. The mobile communication switching center 50 switches the wired line.

【0017】基地局無線チャネル切替部13は、基地局
移動先予測部12から送信される基地局移動先判定結果
に基づいて、予測された時刻に移動局40が現在使用し
ている無線チャネルから捕捉しておいた無線チャネルへ
の切替を実行する。ハンドオーバ処理を終了する。
The base station radio channel switching unit 13 changes the radio channel currently used by the mobile station 40 at the predicted time based on the base station destination judgment result transmitted from the base station destination prediction unit 12. Switch to the captured wireless channel. The handover process ends.

【0018】以上のように第1の実施の形態によれば、
基地局1〜nの位置情報検出部31が、自分の担当する
無線ゾーン内で通話中の移動局から送信されるキャリア
信号に基づいて、各移動局の移動速度データ及び移動方
向データからなる位置情報を無線切替装置10に送信
し、無線切替装置10の移動局位置情報蓄積部11は位
置情報に基づいて管理テーブルを作成し、基地局移動先
予測部12が管理テーブルに基づいて、現在通話中の無
線ゾーンと移動局が移動する先の無線ゾーンとの境界到
達時刻をあらかじめ予測して、無線チャネル捕捉部21
にあらかじめ移動先の基地局の空いている無線チャネル
を捕捉させておき、基地局通話チャネル切替部13は、
切替時刻になると現在移動局が使用している無線チャネ
ルから捕捉させておいた無線チャネルに切替を行うの
で、無線チャネル切替処理に費やす時間が多くなり、負
担を軽減することができるので、マイクロセル通信シス
テムのような1つの無線ゾーンが小さいシステムでも、
高速な移動局による頻繁な無線チャネル切替に対応で
き、通話が切断されない等の通信品質が確保できる。
As described above, according to the first embodiment,
The position information detector 31 of each of the base stations 1 to n, based on a carrier signal transmitted from a mobile station that is in a call in a radio zone in which the base station is in charge, transmits a position composed of moving speed data and moving direction data of each mobile station. The mobile station location information storage unit 11 of the wireless switching apparatus 10 creates a management table based on the location information, and the base station destination prediction unit 12 transmits the current call based on the management table. The arrival time of the boundary between the middle wireless zone and the wireless zone to which the mobile station moves is predicted in advance, and the wireless channel capturing unit 21 is predicted.
Previously captures a vacant radio channel of the destination base station, and the base station communication channel switching unit 13
At the switching time, switching is performed from the wireless channel currently used by the mobile station to the captured wireless channel, so that the time spent in the wireless channel switching process increases and the burden can be reduced. Even in a system where one wireless zone is small, such as a communication system,
It is possible to cope with frequent wireless channel switching by a high-speed mobile station, and to ensure communication quality such that a call is not disconnected.

【0019】実施形態2.上述の第1の実施の形態で
は、例えば高速道路を走行する自動車と路側の基地局と
の路車間通信システムのような、無線ゾーンの範囲が狭
いマイクロセル移動通信システムに用いることを想定し
たが、本発明はそれに限定されるものではなく、もちろ
ん無線ゾーンが大きなマクロセル移動通信システムに適
用することも可能である。また、移動局は複数でもそれ
ぞれに対して同様の無線チャネル切替が行われる。
Embodiment 2 FIG. In the first embodiment described above, it is assumed that the present invention is used in a microcell mobile communication system having a narrow wireless zone, such as a road-to-vehicle communication system between an automobile running on a highway and a roadside base station. However, the present invention is not limited to this, and it is needless to say that the present invention can be applied to a macrocell mobile communication system having a large wireless zone. The same wireless channel switching is performed for each of a plurality of mobile stations.

【0020】[0020]

【発明の効果】以上のように本発明によれば、移動局が
ある基地局の受信範囲から別の基地局の受信範囲に移動
する際の無線チャネルの切替において、各基地局の位置
情報検出手段では、無線通信を行っている移動局の移動
速度及び移動方向を検出し、位置情報として送信し、移
動局位置情報蓄積手段で蓄積し、基地局移動先予測手段
では、その位置情報に基づいて、通信中の移動局が移動
する先の受信範囲の基地局を予測を行ってあらかじめ無
線チャネル捕捉手段が予測した移動先の受信範囲の基地
局の空いている無線チャネルを捕捉しておき、基地局無
線チャネル切替手段が無線チャネルを切り替えるように
したので、基地局間の境界に移動した時の受信レベルの
劣化に基づいて移動先を判断するよりも、時間的にはや
く予測を行い、チャネル切替に備えるので、チャネル切
替の処理能力がそれほど高くなくても、マイクロセル移
動通信システムのような基地局の受信範囲が狭い移動通
信システムに用いることができる。
As described above, according to the present invention, when switching a radio channel when a mobile station moves from the reception range of one base station to the reception range of another base station, the position information of each base station is detected. The means detects a moving speed and a moving direction of the mobile station performing the wireless communication, transmits the detected position information as position information, stores the position information in the mobile station position information storage means, and the base station destination prediction means based on the position information. The mobile station during communication predicts a base station in a reception range to which the mobile station moves, and captures a vacant wireless channel of the base station in the reception range of the destination predicted by the wireless channel capturing means in advance, Since the base station radio channel switching means switches the radio channel, the prediction is made faster in time than in the case where the destination is determined based on the deterioration of the reception level when the mobile station moves to the boundary between the base stations. Since comprises a channel switching, also be higher processing ability of the channel switching is so, it is possible to receive a range of a base station, such as a microcell mobile communication system uses a narrow mobile communication system.

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

【図1】本発明の第1の実施の形態に係る移動通信シス
テムのブロック図である。
FIG. 1 is a block diagram of a mobile communication system according to a first embodiment of the present invention.

【図2】ある移動局がある無線ゾーンから他の無線ゾー
ンに移動する場合に行われる無線チャネル切替を表す図
である。
FIG. 2 is a diagram illustrating wireless channel switching performed when a mobile station moves from one wireless zone to another wireless zone.

【図3】従来のハンドオーバ処理を行う移動通信システ
ムのブロック図である。
FIG. 3 is a block diagram of a mobile communication system that performs a conventional handover process.

【符号の説明】[Explanation of symbols]

1〜n 基地局 10 無線チャネル切替装置 11 移動局位置情報蓄積部 12 基地局移動先予測部 13 基地局無線チャネル切替部 14 タイマ 20 無線回線制御局 21 無線チャネル捕捉手段 31 位置情報検出部 40 移動局 1 to n base station 10 wireless channel switching device 11 mobile station position information storage unit 12 base station destination prediction unit 13 base station wireless channel switching unit 14 timer 20 wireless channel control station 21 wireless channel capturing unit 31 position information detection unit 40 movement Station

Claims (5)

【特許請求の範囲】[Claims] 【請求項1】 通信中の移動局が、無線通信を行ってい
る基地局の受信範囲から別の基地局の受信範囲に移動す
る際に、複数の基地局を制御する無線回線制御局が、前
記移動局の無線チャネルを、前記無線通信を行っている
基地局に割り当てられた無線チャネルから前記別の基地
局に割り当てられた無線チャネルに切り替えて通信を継
続させる移動通信システムにおいて、 前記基地局内において、前記通信中の移動局の移動速度
及び移動方向を位置情報として検出する位置情報検出手
段と、 前記無線回線制御局において、複数の基地局の前記位置
情報検出手段が検出した前記位置情報を蓄積する移動局
位置情報蓄積手段と、 該移動局位置情報蓄積手段が蓄積する前記位置情報に基
づいて、通信中の移動局が移動する先の受信範囲の基地
局を予測する基地局移動先予測手段と、 該基地局移動先予測手段が予測した前記移動する先の基
地局の使用されていない無線チャネルを捕捉する無線チ
ャネル捕捉手段と、 前記通信中の移動局の無線チャネルを、前記移動局が使
用している無線チャネルから前記無線チャネル捕捉手段
が捕捉した無線チャネルに切り替える基地局無線チャネ
ル切替手段とを設けたことを特徴とする移動通信システ
ム。
When a mobile station in communication moves from a reception range of a base station performing wireless communication to a reception range of another base station, a radio channel control station controlling a plurality of base stations includes: In a mobile communication system in which a wireless channel of the mobile station is switched from a wireless channel assigned to the base station performing the wireless communication to a wireless channel assigned to the another base station to continue communication, A position information detecting means for detecting a moving speed and a moving direction of the communicating mobile station as position information, and wherein, in the radio network controller, the position information detected by the position information detecting means of a plurality of base stations. Based on the mobile station location information storage means to be stored, and the location information stored by the mobile station location information storage means, a base station in a reception range to which a mobile station in communication moves to is reserved. Base station movement destination prediction means for measuring, a wireless channel capture means for capturing an unused wireless channel of the movement destination base station predicted by the base station movement destination prediction means, A mobile communication system, comprising: a base station wireless channel switching means for switching a wireless channel from a wireless channel used by the mobile station to a wireless channel captured by the wireless channel capturing means.
【請求項2】 前記位置情報検出手段は、前記通信中の
移動局から送信されるキャリア信号に基づいて前記移動
局との距離及び角度を一定周期で検出し、前記一定周期
で検出した前記移動局との距離及び角度に基づいて前記
移動局の移動速度及び移動方向を算出することを特徴と
する請求項1記載の移動通信システム。
2. The position information detecting means detects a distance and an angle with respect to the mobile station at a constant period based on a carrier signal transmitted from the communicating mobile station, and detects the movement detected at the constant period. The mobile communication system according to claim 1, wherein a moving speed and a moving direction of the mobile station are calculated based on a distance and an angle from the station.
【請求項3】 前記移動局位置情報蓄積手段は、前記位
置情報を移動局別に、前記一定周期毎に記憶した管理テ
ーブルを生成し、前記位置情報を蓄積することを特徴と
する請求項1記載の移動通信システム。
3. The mobile station location information accumulating means generates a management table in which the location information is stored for each mobile station at the predetermined period, and accumulates the location information. Mobile communication system.
【請求項4】 前記基地局移動先予測手段は、前記位置
情報の移動方向に基づいて、通信中の移動局が移動する
先の受信範囲の基地局を予測し、前記移動速度に基づい
て基地局間の受信範囲の境界に到達する時刻を予測する
ことを特徴とする請求項1記載の移動通信システム。
4. The base station movement destination prediction unit predicts a base station in a reception range to which a communicating mobile station moves based on a moving direction of the position information, and bases a base station on the moving speed based on the moving speed. 2. The mobile communication system according to claim 1, wherein a time at which a station reaches a boundary of a reception range is predicted.
【請求項5】 前記基地局無線チャネル切替手段は、前
記基地局移動先予測手段が、各移動局が基地局間の受信
範囲の境界に到達するものと予測した時刻に、移動局の
無線チャネルを、前記移動局が使用している無線チャネ
ルから前記無線チャネル捕捉手段が捕捉した無線チャネ
ルに切り替えることを特徴とする請求項1に記載の無線
チャネル切替装置。
5. The base station radio channel switching means, wherein the base station destination predicting means predicts that each mobile station will reach a boundary of a reception range between base stations, and the radio channel of the mobile station The wireless channel switching device according to claim 1, wherein the wireless channel switching unit switches the wireless channel from the wireless channel used by the mobile station to the wireless channel captured by the wireless channel capturing unit.
JP9261350A 1997-09-26 1997-09-26 Mobile communication system Pending JPH11103479A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP9261350A JPH11103479A (en) 1997-09-26 1997-09-26 Mobile communication system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP9261350A JPH11103479A (en) 1997-09-26 1997-09-26 Mobile communication system

Publications (1)

Publication Number Publication Date
JPH11103479A true JPH11103479A (en) 1999-04-13

Family

ID=17360630

Family Applications (1)

Application Number Title Priority Date Filing Date
JP9261350A Pending JPH11103479A (en) 1997-09-26 1997-09-26 Mobile communication system

Country Status (1)

Country Link
JP (1) JPH11103479A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001211474A (en) * 1999-11-24 2001-08-03 Lucent Technol Inc Network expansion by utilization of geographic position information
JP2006522403A (en) * 2003-03-28 2006-09-28 エスケイ テレコム カンパニー リミテッド Traffic information acquisition method using billing information of mobile terminal
KR100798597B1 (en) * 2001-08-29 2008-01-28 엘지전자 주식회사 Method of channel information offering by road side unit
JP2009077121A (en) * 2007-09-20 2009-04-09 Nippon Telegr & Teleph Corp <Ntt> Resource management device and method

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001211474A (en) * 1999-11-24 2001-08-03 Lucent Technol Inc Network expansion by utilization of geographic position information
KR100798597B1 (en) * 2001-08-29 2008-01-28 엘지전자 주식회사 Method of channel information offering by road side unit
JP2006522403A (en) * 2003-03-28 2006-09-28 エスケイ テレコム カンパニー リミテッド Traffic information acquisition method using billing information of mobile terminal
JP4755975B2 (en) * 2003-03-28 2011-08-24 エスケーテレコム株式会社 Traffic information acquisition method using billing information of mobile terminal
JP2011175659A (en) * 2003-03-28 2011-09-08 Sk Telecom Kk Method for obtaining traffic information using billing information of mobile terminal
US9779620B2 (en) 2003-03-28 2017-10-03 Sk Telecom Co., Ltd. Method for obtaining traffic information using billing information of mobile terminal
JP2009077121A (en) * 2007-09-20 2009-04-09 Nippon Telegr & Teleph Corp <Ntt> Resource management device and method
JP4713558B2 (en) * 2007-09-20 2011-06-29 日本電信電話株式会社 Resource management apparatus and method

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