JP2007019835A - Scheduling method and mobile communication system - Google Patents

Scheduling method and mobile communication system Download PDF

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JP2007019835A
JP2007019835A JP2005198938A JP2005198938A JP2007019835A JP 2007019835 A JP2007019835 A JP 2007019835A JP 2005198938 A JP2005198938 A JP 2005198938A JP 2005198938 A JP2005198938 A JP 2005198938A JP 2007019835 A JP2007019835 A JP 2007019835A
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mobile station
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JP4656310B2 (en
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Toru Kikuchi
亨 菊地
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NEC Corp
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<P>PROBLEM TO BE SOLVED: To provide a scheduling method and a mobile communication system capable of efficiently utilizing radio resources. <P>SOLUTION: A radio base station measures the receiving quality of up-signals transmitted by a plurality of mobile stations. The receiving success probability of each mobile station is obtained based on receiving a success frequency and receiving a failure frequency of a data packet transmitted by the mobile station allowed to transmit by the radio base station from among the plurality of mobile stations. The priority of the plurality of mobile stations is determined based on the receiving quality of up-signals of the plurality of mobile stations, receiving the quality of down-signals notified of by the plurality of mobile stations with the up-signals, and the receiving success probability of each mobile station allowed to transmit by the radio base station. The mobile station with higher priority is selected among the plurality of mobile stations. Then, the transmission permission notification of the data packet is transmitted to the selected mobile station. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は移動局から無線基地局に対する上り方向の通信時におけるパケットのスケジューリング方法及びそれを適用する移動通信システムに関する。   The present invention relates to a packet scheduling method during uplink communication from a mobile station to a radio base station, and a mobile communication system to which the packet scheduling method is applied.

移動通信システムでは、複数の移動局に対する下り方向(無線基地局から移動局)の通信時、無線基地局は、一般的に各移動局から通知される下り信号の受信品質(以下、下り受信品質と称す)を用いてスケジューリングを行う。このとき、移動局へ送信するデータは無線基地局が把握しているため、無線基地局はスケジューリングに必要なパラメータ(下り受信品質)が得られた段階でスケジューリングを行い、データを送信する。なお、スケジューリングとは、無線基地局が管理するセルに在圏する複数の移動局との通信時において、限られた無線リソースを、パケット毎に要求されるサービス品質を維持しつつ効率的に割り当てるための処理を言う。   In a mobile communication system, during communication in the downlink direction (radio base station to mobile station) to a plurality of mobile stations, the radio base station generally receives downlink signal reception quality (hereinafter, downlink reception quality) notified from each mobile station. To perform scheduling. At this time, since the radio base station knows the data to be transmitted to the mobile station, the radio base station performs scheduling and transmits data when a parameter (downlink reception quality) necessary for scheduling is obtained. Scheduling refers to efficient allocation of limited radio resources while maintaining the required service quality for each packet when communicating with a plurality of mobile stations located in a cell managed by a radio base station. Say processing for.

一方、上り方向(移動局から無線基地局)の通信時、送信データの有無は移動局が把握しているため、無線基地局へ送信するデータがある場合、移動局は予約パケットを用いて送信データがあることを無線基地局へ通知する。無線基地局は、予約パケットを送信した移動局についてスケジューリングを行い、該移動局に送信許可通知を返信する。移動局は無線基地局から送信許可通知を受信するとデータパケットの送信を開始する。このような処理を行うことで移動局は無線基地局へデータを送信できる。   On the other hand, when communicating in the uplink direction (mobile station to radio base station), the mobile station knows whether or not there is transmission data, so if there is data to be transmitted to the radio base station, the mobile station transmits using a reservation packet. Notify the radio base station that there is data. The radio base station performs scheduling for the mobile station that has transmitted the reservation packet, and returns a transmission permission notification to the mobile station. When the mobile station receives the transmission permission notification from the radio base station, the mobile station starts transmission of the data packet. By performing such processing, the mobile station can transmit data to the radio base station.

また、上り方向の通信時、無線基地局は、移動局毎に上り信号の受信品質(以下、上り受信品質と称す)をそれぞれ測定し、各移動局の上り受信品質を考慮してスケジューリングを実施する。例えば、特許文献1では、移動局毎に上り受信品質をそれぞれ測定し、所定の伝送単位(スロット等)毎に上り受信品質が最も良好な移動局に対して送信許可通知を与えることでスループットの低下を抑制すると共に、下り信号に対する確認応答信号(ACK信号)の送信を要求した移動局については、上り受信品質の良否にかかわらず優先的に送信許可通知を与えることでパケットの不要な再送の発生を抑止したスケジューリング方法が提案されている。
特開2003−198556号公報
Also, during uplink communication, the radio base station measures uplink signal reception quality (hereinafter referred to as uplink reception quality) for each mobile station, and performs scheduling in consideration of the uplink reception quality of each mobile station. To do. For example, in Patent Document 1, the uplink reception quality is measured for each mobile station, and the transmission permission notification is given to the mobile station having the best uplink reception quality for each predetermined transmission unit (slot, etc.). For the mobile station that has requested the transmission of the acknowledgment signal (ACK signal) for the downlink signal while suppressing the degradation, the transmission permission notification is given to the mobile station preferentially regardless of whether the uplink reception quality is good or not. A scheduling method that suppresses occurrence has been proposed.
JP 2003-198556 A

上述したように、移動通信システムにおける上り方向の通信時、無線基地局は、移動局毎の上り受信品質を考慮してスケジューリングを行い、スケジューリング結果にしたがって選択した移動局へ送信許可通知を送信するのが一般的である。   As described above, during uplink communication in the mobile communication system, the radio base station performs scheduling in consideration of uplink reception quality for each mobile station, and transmits a transmission permission notice to the selected mobile station according to the scheduling result. It is common.

しかしながら、例えば、FDD(Frequency Division Duplex:周波数分割複信)方式の移動通信システムのように、上り方向と下り方向とで伝搬特性に差があるような場合、上り受信品質に基づいて最適な移動局を選択しても、移動局で無線基地局からの下り信号を正しく受信できなければ無線リソースを無駄に使用することになるため、無線リソースを効率的に利用できるスケジューリングが行えないという問題がある。   However, for example, in the case where there is a difference in propagation characteristics between the uplink direction and the downlink direction as in a mobile communication system of FDD (Frequency Division Duplex) system, the optimal movement is based on the uplink reception quality. Even if a station is selected, radio resources are wasted if the mobile station cannot correctly receive the downlink signal from the radio base station. Therefore, there is a problem that scheduling that can efficiently use radio resources cannot be performed. is there.

本発明は上記したような従来の技術が有する問題点を解決するためになされたものであり、無線リソースをより効率的に利用できるスケジューリング方法及び移動通信システムを提供することを目的とする。   The present invention has been made to solve the above-described problems of the prior art, and an object of the present invention is to provide a scheduling method and a mobile communication system that can use radio resources more efficiently.

上記目的を達成するため本発明のスケジューリング方法は、複数の移動局から無線基地局に対する上り方向のパケット通信のスケジューリング方法であって、
前記無線基地局が、前記複数の移動局から送信された上り信号の受信品質を測定し、
前記複数の移動局のうち前記無線基地局が送信を許可した移動局から送信されるデータパケットの受信成功回数及び受信失敗回数から該移動局毎の受信成功確率を求め、
前記複数の移動局の前記上り信号の受信品質、前記複数の移動局から前記上り信号によって通知される下り信号の受信品質及び前記無線基地局が送信を許可した移動局毎の前記受信成功確率から前記複数の移動局の優先度をそれぞれ求め、
前記複数の移動局のうち、前記優先度の値が高い移動局を選択し、選択した移動局に前記データパケットの送信許可通知を送信する方法である。
To achieve the above object, a scheduling method of the present invention is a scheduling method for uplink packet communication from a plurality of mobile stations to a radio base station, and
The radio base station measures reception quality of uplink signals transmitted from the plurality of mobile stations,
The reception success probability for each mobile station is determined from the number of successful receptions and the number of reception failures of data packets transmitted from mobile stations that the wireless base station has permitted to transmit among the plurality of mobile stations,
From the reception quality of the uplink signal of the plurality of mobile stations, the reception quality of the downlink signal notified by the uplink signal from the plurality of mobile stations, and the reception success probability for each mobile station permitted to transmit by the radio base station Obtaining a priority of each of the plurality of mobile stations;
In this method, a mobile station having a high priority value is selected from the plurality of mobile stations, and a transmission permission notification of the data packet is transmitted to the selected mobile station.

一方、本発明の移動通信システムは、移動局から送信される予約パケットにより該移動局がデータパケットの送信待機状態であることを認識する移動局登録判定部、前記複数の移動局から送信される上り信号によって通知される、該移動局毎の下り信号の受信品質を前記上り信号からそれぞれ抽出する下り受信品質抽出部、前記複数の移動局から送信される上り信号の受信品質をそれぞれ測定する上り受信品質測定部、前記複数の移動局のうち、送信が許可された移動局からのデータパケットの受信成功回数及び受信失敗回数から該移動局毎の受信成功確率を求めるデータパケット受信部、前記複数の移動局の前記上り信号の受信品質、前記複数の移動局から前記上り信号によって通知される下り信号の受信品質及び前記無線基地局が送信を許可した移動局毎の前記受信成功確率から前記複数の移動局の優先度をそれぞれ求め、前記複数の移動局のうち、前記優先度の値が高い移動局を選択するスケジューリング処理部、並びに前記スケジューリング処理部で選択された移動局に前記データパケットの送信許可通知を送信する信号送信部を備えた無線基地局と、
前記無線基地局から送信された下り信号の受信品質を測定する受信品質測定部、前記無線基地局から送信された下り信号に前記送信許可通知があるか否かを判定する送信許可通知判定部、送信するデータが存在する場合は前記予約パケットの送信を指示し、前記無線基地局から前記送信許可通知を受信した場合は前記データパケットの送信を指示する送信データ判定部、並びに前記送信データ判定部の指示にしたがって前記予約パケットまたは前記データパケットを送信する信号送信部を備えた移動局と、
を有する構成である。
On the other hand, in the mobile communication system of the present invention, a mobile station registration determination unit that recognizes that the mobile station is in a data packet transmission standby state by a reservation packet transmitted from the mobile station, is transmitted from the plurality of mobile stations. A downlink reception quality extraction unit that extracts, from the uplink signal, the reception quality of the downlink signal for each mobile station that is notified by the uplink signal, and an uplink that measures the reception quality of the uplink signal transmitted from the plurality of mobile stations. A reception quality measuring unit, a data packet receiving unit for obtaining a reception success probability for each mobile station from the number of successful receptions and the number of reception failures of a data packet from a mobile station permitted to transmit among the plurality of mobile stations, the plurality Reception quality of the uplink signal of the mobile station, reception quality of the downlink signal notified by the uplink signal from the plurality of mobile stations, and transmission by the radio base station A scheduling processing unit that obtains priorities of the plurality of mobile stations from the reception success probabilities for each permitted mobile station, and selects a mobile station having a high priority value from the plurality of mobile stations; and the scheduling A radio base station including a signal transmission unit that transmits a transmission permission notification of the data packet to the mobile station selected by the processing unit;
A reception quality measurement unit that measures reception quality of a downlink signal transmitted from the radio base station, a transmission permission notification determination unit that determines whether or not there is the transmission permission notification in a downlink signal transmitted from the radio base station, A transmission data determination unit that instructs transmission of the reservation packet when there is data to be transmitted, and that instructs transmission of the data packet when the transmission permission notification is received from the radio base station, and the transmission data determination unit A mobile station comprising a signal transmission unit for transmitting the reservation packet or the data packet according to the instructions of
It is the structure which has.

上記のようなスケジューリング方法及び移動通信システムでは、上り方向の通信時において、移動局は無線基地局から送信された下り信号の受信品質を無線基地局へ返送し、無線基地局は、移動局から返送される下り信号の受信品質、上り信号の受信時に測定した上り信号の受信品質及び移動局から送信されるデータパケットの受信成功確率を用いて移動局毎の優先度を求めるため、無線基地局は、移動局へ送信する送信許可通知に対して移動局が測定した受信品質も考慮してスケジューリングを行うことができる。   In the scheduling method and the mobile communication system as described above, at the time of uplink communication, the mobile station returns the reception quality of the downlink signal transmitted from the radio base station to the radio base station. In order to obtain the priority for each mobile station using the reception quality of the downlink signal to be returned, the reception quality of the uplink signal measured when receiving the uplink signal, and the reception success probability of the data packet transmitted from the mobile station, the radio base station Can perform scheduling in consideration of the reception quality measured by the mobile station in response to the transmission permission notification transmitted to the mobile station.

本発明によれば、移動通信システムの上り方向の通信時におけるスケジューリング処理時に、下り信号の受信品質、上り信号の受信品質及び上り信号の受信成功確率の各情報を用いることで、無線基地局は、移動局へ送信する送信許可通知に対して移動局が測定した受信品質も考慮してスケジューリングを行うことができる。したがって、上り方向の通信時に、より最適な移動局を選択することが可能であり、無線リソースをより効率的に利用できるスケジューリング処理が実現される。   According to the present invention, by using each information of downlink signal reception quality, uplink signal reception quality, and uplink signal reception success probability during scheduling processing during uplink communication of the mobile communication system, the radio base station The scheduling can be performed in consideration of the reception quality measured by the mobile station in response to the transmission permission notification transmitted to the mobile station. Therefore, it is possible to select a more optimal mobile station during uplink communication, and it is possible to realize a scheduling process that can use radio resources more efficiently.

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.

本発明のスケジューリング方法は、移動通信システムの上り方向のパケット通信において、移動局は無線基地局から送信された下り信号の受信品質を測定して無線基地局へ返送し、無線基地局は、移動局から返送される下り信号の受信品質、移動局からの上り信号の受信時に測定した上り信号の受信品質、及び移動局から送信されたデータパケットの受信成功回数及び受信失敗回数から求めた受信成功確率を用いて移動局毎の優先度を求め、データパケットの送信許可通知を送信する移動局を決定する方法である。   According to the scheduling method of the present invention, in uplink packet communication of a mobile communication system, a mobile station measures reception quality of a downlink signal transmitted from a radio base station and returns it to the radio base station. Successful reception obtained from the reception quality of the downlink signal returned from the station, the reception quality of the uplink signal measured when receiving the uplink signal from the mobile station, and the number of successful receptions and reception failures of the data packet transmitted from the mobile station In this method, the priority for each mobile station is obtained using the probability, and the mobile station that transmits the data packet transmission permission notification is determined.

図1は本発明のスケジューリング方法を適用する無線基地局の一構成例を示すブロック図であり、図2は本発明のスケジューリング方法を適用する移動局の一構成例を示すブロック図である。   FIG. 1 is a block diagram showing a configuration example of a radio base station to which the scheduling method of the present invention is applied, and FIG. 2 is a block diagram showing a configuration example of a mobile station to which the scheduling method of the present invention is applied.

図1に示すように、無線基地局は、アンテナ部101、信号受信部102、移動局登録判定部103、上り受信品質測定部104、下り受信品質抽出部105、データパケット受信部106、受信品質管理部107、スケジューリング処理部108及び信号送信部109を有する構成である。   As shown in FIG. 1, the radio base station includes an antenna unit 101, a signal reception unit 102, a mobile station registration determination unit 103, an uplink reception quality measurement unit 104, a downlink reception quality extraction unit 105, a data packet reception unit 106, a reception quality. The configuration includes a management unit 107, a scheduling processing unit 108, and a signal transmission unit 109.

受信信号部102は、各移動局に対応する複数の受信処理部102−1〜102−N(Nは正数)を備え、アンテナ部101で受信した無線周波数信号(上り信号)を受信処理部102−1〜102−Nで移動局毎の受信信号に分離し、ベースバンド信号に変換して、移動局登録判定部103、上り受信品質測定部104、下り受信品質抽出部105及びデータパケット受信部106へそれぞれ供給する。   The reception signal unit 102 includes a plurality of reception processing units 102-1 to 102-N (N is a positive number) corresponding to each mobile station, and receives a radio frequency signal (uplink signal) received by the antenna unit 101. 102-1 to 102 -N separates the received signal for each mobile station, converts it into a baseband signal, and receives the mobile station registration determination unit 103, uplink reception quality measurement unit 104, downlink reception quality extraction unit 105, and data packet reception To each of the units 106.

移動局登録判定部103は、信号受信部102で分離された移動局毎の受信信号(ベースバンド信号)に予約パケットが含まれているか否かを判定し、予約パケットを送信した移動局がある場合は、送信データ有りの移動局として受信品質管理部107へ登録する。この場合、無線基地局は、送信データ有りの移動局がデータパケットの送信待機状態であることを認識できる。また、移動局登録判定部103は、信号受信部102で分離された移動局毎の受信信号に送信データの終了通知が含まれているか否かを判定し、送信データの終了通知を送信した移動局がある場合は、送信データ無しの移動局として受信品質管理部107へ登録する。送信データ有りとして登録された移動局は、送信データの終了通知を受信しない限り送信データ有りで登録が維持される。   The mobile station registration determination unit 103 determines whether a reservation packet is included in the reception signal (baseband signal) for each mobile station separated by the signal reception unit 102, and there is a mobile station that has transmitted the reservation packet. In this case, it is registered in the reception quality management unit 107 as a mobile station with transmission data. In this case, the radio base station can recognize that the mobile station with transmission data is in a data packet transmission standby state. In addition, the mobile station registration determination unit 103 determines whether or not the transmission data end notification is included in the reception signal for each mobile station separated by the signal reception unit 102, and transmits the transmission data end notification. If there is a station, it is registered in the reception quality management unit 107 as a mobile station without transmission data. A mobile station registered as having transmission data maintains its registration with transmission data unless a transmission data end notification is received.

上り受信品質測定部104は、信号受信部102で分離された移動局毎の受信信号からそれぞれの上り受信品質を測定し、その測定結果を受信品質管理部107へ格納する。上り受信品質としては、例えば上り信号の受信レベルやCIR(Carrier to Interference Ratio)を測定すればよい。上り受信品質の測定方法については、周知の方法を用いればよく、特に測定方法を限定するものではない。   Uplink reception quality measurement section 104 measures each uplink reception quality from the reception signal for each mobile station separated by signal reception section 102 and stores the measurement result in reception quality management section 107. As the uplink reception quality, for example, the reception level of the uplink signal and the CIR (Carrier to Interference Ratio) may be measured. As a method for measuring the uplink reception quality, a known method may be used, and the measurement method is not particularly limited.

下り受信品質抽出部105は、信号受信部102で分離された移動局毎の受信信号から、それに含まれる下り受信品質の情報を抽出し、抽出した下り受信品質の情報を受信品質管理部107に格納する。   The downlink reception quality extraction unit 105 extracts downlink reception quality information included in the received signal for each mobile station separated by the signal reception unit 102, and sends the extracted downlink reception quality information to the reception quality management unit 107. Store.

データパケット受信部106は、後述するスケジューリング処理部108で選択した移動局、すなわち送信許可通知を送信した移動局からの上り信号に含まれるデータパケットの受信処理を行う。また、データパケットの受信成功または受信失敗を移動局毎にそれぞれ判定する。データパケット受信部106は、データパケットの受信成功回数及び受信失敗回数をそれぞれカウントし、それらのカウント結果を受信品質管理部107へ格納する。   The data packet reception unit 106 performs reception processing of a data packet included in an uplink signal from the mobile station selected by the scheduling processing unit 108 described later, that is, the mobile station that transmitted the transmission permission notification. In addition, the mobile station determines whether the data packet has been successfully received or has failed. The data packet receiving unit 106 counts the number of successful data packet receptions and the number of reception failure times, and stores the count results in the reception quality management unit 107.

受信品質管理部107は、各移動局に対する送信データの有無の登録状態、移動局毎の上り受信品質及び下り受信品質、並びに送信許可通知を送信した移動局からのデータパケットの受信成功回数及び受信失敗回数の値をそれぞれ保存・管理する。   The reception quality management unit 107 registers the presence / absence of transmission data for each mobile station, the uplink reception quality and downlink reception quality for each mobile station, and the number of successful receptions and reception of data packets from the mobile station that transmitted the transmission permission notification. Save and manage each failure value.

スケジューリング処理部108は、受信品質管理部107に格納された送信許可通知を送信した移動局からのデータパケットの受信成功回数及び受信失敗回数の値を基に受信成功確率(受信成功回数/受信成功回数+受信失敗回数)を算出する。また、上り受信品質、下り受信品質及び受信成功確率の各値を用いてスケジューリング処理を実行し、移動局毎の優先度をそれぞれ算出して最も優先度が高い移動局を選択する。   The scheduling processing unit 108 receives a reception success probability (number of successful receptions / successful receptions) based on the values of the number of successful receptions and the number of reception failures of the data packet from the mobile station that has transmitted the transmission permission notification stored in the reception quality management unit 107. (Number of times + number of reception failures)). Also, scheduling processing is executed using each value of uplink reception quality, downlink reception quality, and reception success probability, and a priority for each mobile station is calculated to select a mobile station with the highest priority.

本実施形態では、移動局の優先度を、例えば以下の式(1)で求める。   In the present embodiment, the priority of the mobile station is obtained by the following equation (1), for example.

移動局の優先度=α×上り信号の受信品質+β×下り信号の受信品質+γ×((受信成功回数/(受信成功回数+受信失敗回数))−n)…(1)
ここで、α、β、γは重み係数、nは定数である。
Mobile station priority = α × uplink signal reception quality + β × downlink signal reception quality + γ × ((number of successful receptions / (number of successful receptions + number of reception failures)) − n) (1)
Here, α, β, and γ are weighting factors, and n is a constant.

重み係数α、β、γは伝搬環境に応じて任意に設定可能な値であり、シミュレーション結果や実験結果によって最適に設定される。例えば、上り受信品質よりも下り受信品質の方が高い伝搬環境下ではα<βに設定し、下り受信品質よりも上り受信品質の方が高い伝搬環境下ではβ<αに設定することが考えられる。   The weighting coefficients α, β, and γ are values that can be arbitrarily set according to the propagation environment, and are optimally set according to simulation results and experimental results. For example, α <β may be set in a propagation environment where the downlink reception quality is higher than the uplink reception quality, and β <α may be set in a propagation environment where the uplink reception quality is higher than the downlink reception quality. It is done.

また、定数nはデータパケットの受信成功確率の基準値であり、この定数nも伝搬環境に応じて任意に設定可能な値とする。例えば、定数nを0.5に設定した場合、データパケットの受信成功確率が50%以上であれば、優先度が高くなる方向に作用し、50%未満であれば優先度が低くなる方向に作用する。   The constant n is a reference value for the probability of successful reception of data packets, and this constant n is also a value that can be arbitrarily set according to the propagation environment. For example, when the constant n is set to 0.5, if the data packet reception success probability is 50% or more, the priority is increased, and if it is less than 50%, the priority is decreased. Works.

なお、スケジューリング処理部108は、移動局毎の優先度を以下の式(2)を用いて求めてもよい。   Note that the scheduling processing unit 108 may obtain the priority for each mobile station using the following equation (2).

移動局の優先度=α×上り受信品質+β×下り受信品質+γ×((mフレーム前までの受信成功回数)/((mフレーム前までの受信成功回数)+(mフレーム前までの受信失敗回数))−n)…(2)
ここで、α、β、γは重み係数、m、nは定数である。
Priority of mobile station = α × uplink reception quality + β × downlink reception quality + γ × ((number of successful receptions up to m frames before) / ((number of successful receptions up to m frames) + (reception failure up to m frames before) Times))-n) ... (2)
Here, α, β, and γ are weighting factors, and m and n are constants.

式(2)は、式(1)で示した受信成功確率を、mフレーム前までに受信したデータパケットの受信成功回数や受信失敗回数に基づいて算出するものであり、これによって必要以上に過去の受信成功確率を用いることなく優先度を算出することになるため、伝搬環境が変化する場合でも、その変化に応じて各移動局の優先度を最適に求めることができる。   Equation (2) is used to calculate the reception success probability shown in Equation (1) based on the number of successful receptions and the number of reception failures of data packets received up to m frames ago. Therefore, even when the propagation environment changes, the priority of each mobile station can be optimally determined according to the change.

スケジューリング処理部108は、選択した移動局をデータパケット受信部106及び信号送信部109へそれぞれ通知する。   The scheduling processing unit 108 notifies the selected mobile station to the data packet reception unit 106 and the signal transmission unit 109, respectively.

信号送信部109は、スケジューリング処理部108で選択された移動局に対して送信許可通知を送信する。   The signal transmission unit 109 transmits a transmission permission notification to the mobile station selected by the scheduling processing unit 108.

図2に示すように、移動局は、アンテナ部201、信号受信部202、受信品質測定部203、送信許可通知判定部204、上りデータパケット供給部205、送信データ判定部206及び信号送信部207を有する構成である。   As shown in FIG. 2, the mobile station includes an antenna unit 201, a signal reception unit 202, a reception quality measurement unit 203, a transmission permission notification determination unit 204, an uplink data packet supply unit 205, a transmission data determination unit 206, and a signal transmission unit 207. It is the structure which has.

信号受信部202は、アンテナ部201を介して受信した無線基地局からの下り信号をベースバンド信号に変換し、受信品質測定部203及び送信許可通知判定部204へ供給する。   The signal reception unit 202 converts the downlink signal received from the radio base station via the antenna unit 201 into a baseband signal, and supplies the baseband signal to the reception quality measurement unit 203 and the transmission permission notification determination unit 204.

受信品質測定部203は、信号受信部202で処理された受信信号(ベースバンド信号)から下り受信品質を測定し、その測定結果を信号送信部207へ通知する。下り受信品質としては、例えば下り信号の受信レベルやCIR(Carrier to Interference Ratio)を測定すればよい。下り受信品質の測定方法については、周知の方法を用いればよく、特に測定方法を限定するものではない。   The reception quality measurement unit 203 measures the downlink reception quality from the reception signal (baseband signal) processed by the signal reception unit 202 and notifies the signal transmission unit 207 of the measurement result. As the downlink reception quality, for example, the reception level of a downlink signal or a CIR (Carrier to Interference Ratio) may be measured. As a method for measuring downlink reception quality, a known method may be used, and the measurement method is not particularly limited.

上りデータパケット供給部205は、移動局が備える不図示の制御装置に無線基地局へ送信するデータがあるか否かを判定し、送信するデータがある場合は、その旨を送信データ判定部206へ通知する。また、送信対象のデータを送信データ判定部206へ供給する。   The uplink data packet supply unit 205 determines whether or not there is data to be transmitted to the radio base station in a control device (not shown) included in the mobile station, and if there is data to be transmitted, the transmission data determination unit 206 To notify. In addition, the transmission target data is supplied to the transmission data determination unit 206.

送信許可通知判定部204は、予約パケットの送信が完了し、かつデータパケットの送信待機状態にあるとき、信号受信部202で処理された受信信号に無線基地局からの送信許可通知が含まれているか否かを判定し、判定結果を送信データ判定部206へ通知する。   The transmission permission notification determination unit 204 includes a transmission permission notification from the radio base station in the reception signal processed by the signal reception unit 202 when the transmission of the reservation packet is completed and the data packet is in a transmission standby state. It is determined whether or not the transmission data determination unit 206 is notified of the determination result.

送信データ判定部206は、上り信号として送信するデータがある場合は予約パケットを送信するように信号送信部207へ指示する。また、送信許可通知判定部204の判定結果により無線基地局から送信許可通知が送信された場合は、送信対象のデータを信号送信部207へ転送し、データパケットの送信を信号送信部207へ指示する。   The transmission data determination unit 206 instructs the signal transmission unit 207 to transmit a reservation packet when there is data to be transmitted as an uplink signal. Further, when a transmission permission notification is transmitted from the radio base station according to the determination result of the transmission permission notification determination unit 204, the data to be transmitted is transferred to the signal transmission unit 207, and the signal transmission unit 207 is instructed to transmit the data packet. To do.

送信信号部207は、送信データ判定部206からの指示にしたがって予約パケットまたは送信データ判定部206から転送されたデータからデータパケットを生成する。生成した予約パケットまたはデータパケットは、受信品質測定部203から受け取った下り受信品質の情報と共に上り信号としてアンテナ部201を介して無線基地局へ送信する。   The transmission signal unit 207 generates a data packet from the reservation packet or the data transferred from the transmission data determination unit 206 in accordance with an instruction from the transmission data determination unit 206. The generated reservation packet or data packet is transmitted to the radio base station via the antenna unit 201 as an uplink signal together with the downlink reception quality information received from the reception quality measurement unit 203.

次に、本発明のスケジューリング方法の手順について図3を用いて説明する。   Next, the procedure of the scheduling method of the present invention will be described with reference to FIG.

図3は上り方向の通信時における無線基地局及び移動局の処理手順の一例を示すシーケンス図である。なお、図3は他のセルから移動してきた2つの移動局(第1の移動局および第2の移動局)からそれぞれ予約パケットが送信された場合の処理手順を示している。   FIG. 3 is a sequence diagram showing an example of processing procedures of the radio base station and the mobile station during uplink communication. FIG. 3 shows a processing procedure when reservation packets are transmitted from two mobile stations (first mobile station and second mobile station) that have moved from other cells.

図3に示すように、第1の移動局から予約パケット及び下り受信品質の情報を含む上り信号が無線基地局へ送信されると(ステップ301)、無線基地局は、第1の移動局から送信された上り信号を受信し、その上り受信品質を測定すると共に第1の移動局がデータパケットの送信待機状態であることを認識する(ステップ302)。また、第2の移動局から予約パケット及び下り受信品質の情報を含む上り信号が無線基地局へ送信されると(ステップ303)、無線基地局は、第2の移動局から送信された上り信号を受信し、その上り受信品質を測定すると共に第2の移動局がデータパケットの送信待機状態であることを認識する(ステップ304)。   As shown in FIG. 3, when an uplink signal including a reservation packet and downlink reception quality information is transmitted from the first mobile station to the radio base station (step 301), the radio base station It receives the transmitted uplink signal, measures its uplink reception quality, and recognizes that the first mobile station is in a data packet transmission standby state (step 302). When an uplink signal including a reservation packet and downlink reception quality information is transmitted from the second mobile station to the radio base station (step 303), the radio base station transmits the uplink signal transmitted from the second mobile station. And the uplink reception quality is measured, and it is recognized that the second mobile station is in a data packet transmission standby state (step 304).

次に、無線基地局は、第1の移動局及び第2の移動局の上り信号に含まれるそれぞれの下り受信品質の情報、並びに測定した第1の移動局及び第2の移動局の上り受信品質の値を用いてスケジューリング処理を行い、優先度の高い移動局を選択する(ステップ305)。ここでは、第1の移動局及び第2の移動局が他のセルから移動してきた新規の移動局であるため、データパケットの受信成功回数や受信失敗回数を考慮せずに、上り受信品質及び下り受信品質の値に基づいて各移動局の優先度を決定する。   Next, the radio base station receives information on the downlink reception quality included in the uplink signals of the first mobile station and the second mobile station, and the uplink reception of the measured first mobile station and the second mobile station. A scheduling process is performed using the quality value, and a mobile station with a high priority is selected (step 305). Here, since the first mobile station and the second mobile station are new mobile stations that have moved from another cell, the uplink reception quality and the The priority of each mobile station is determined based on the downlink reception quality value.

無線基地局は、スケジューリング処理により優先度の高い移動局を選択すると、選択した移動局に対して送信許可通知を送信する(ステップ306)。ここでは、第2の移動局が選択されたものとする。   When the radio base station selects a mobile station with a high priority by the scheduling process, the radio base station transmits a transmission permission notice to the selected mobile station (step 306). Here, it is assumed that the second mobile station is selected.

第2の移動局は、無線基地局から送信許可通知を受信すると(ステップ307)、送信対象であるデータパケット及び送信許可通知の受信時に測定した下り受信品質の情報を含む上り信号を無線基地局へ送信する(ステップ308)。   When the second mobile station receives the transmission permission notification from the radio base station (step 307), the second mobile station transmits an uplink signal including information on the data packet to be transmitted and the downlink reception quality measured when the transmission permission notification is received. (Step 308).

無線基地局は、第2の移動局から送信された上り信号を受信し、その上り受信品質を測定する(ステップ309)。このとき、第2の移動局から送信されたデータパケットを正常に受信できた場合は受信成功回数を「1」とし、第2の移動局に対応する情報として受信品質管理部107に格納する。   The radio base station receives the uplink signal transmitted from the second mobile station and measures its uplink reception quality (step 309). At this time, if the data packet transmitted from the second mobile station can be normally received, the number of successful receptions is set to “1” and stored in the reception quality management unit 107 as information corresponding to the second mobile station.

ステップ306の処理時に無線基地局から送信許可通知が送信されていない第1の移動局は、下り受信品質の情報のみを含む上り信号を無線基地局へ送信する(ステップ310)。無線基地局は、第1の移動局から送信された上り信号を受信し、その上り受信品質を測定する(ステップ311)。ここでは、第1の移動局に対して送信許可通知を送信していないため、無線基地局は第1の移動局に対するデータパケットの受信成功/失敗の判定処理は実施しない。   The first mobile station to which the transmission permission notification is not transmitted from the radio base station during the processing of step 306 transmits an uplink signal including only downlink reception quality information to the radio base station (step 310). The radio base station receives the uplink signal transmitted from the first mobile station and measures the uplink reception quality (step 311). Here, since the transmission permission notification is not transmitted to the first mobile station, the radio base station does not perform the data packet reception success / failure determination process for the first mobile station.

次に、無線基地局は、ステップ309及びステップ311で得られた情報を用いてスケジューリング処理を再び行い、優先度の高い移動局を選択し(ステップ312)、選択した移動局に送信許可通知を送信する(ステップ313)。ここでは、第1の移動局が選択されたものとする。但し、無線基地局から第1の移動局へ送信された送信許可通知を第1の移動局は正常に受信できなかったとする。   Next, the radio base station performs scheduling processing again using the information obtained in steps 309 and 311, selects a mobile station with a high priority (step 312), and sends a transmission permission notification to the selected mobile station. Transmit (step 313). Here, it is assumed that the first mobile station is selected. However, it is assumed that the first mobile station cannot normally receive the transmission permission notice transmitted from the radio base station to the first mobile station.

第1の移動局は、無線基地局からの送信許可通知の受信に失敗すると、送信許可通知が送信されないものとして、下り受信品質の情報のみを含む上り信号を無線基地局へ送信する(ステップ315)。   If the first mobile station fails to receive the transmission permission notification from the radio base station, the first mobile station transmits an uplink signal including only information on the downlink reception quality to the radio base station, assuming that the transmission permission notification is not transmitted (step 315). ).

無線基地局は、第1の移動局から上り信号を受信し、その上り受信品質を測定する(ステップ317)。無線基地局は、第1の移動局に対して送信許可通知を送信しているにも拘わらず、上り信号にデータパケットが存在しないため、データパケットの受信失敗と判定して受信失敗回数を「1」とし、第1の移動局に対応する情報として受信品質管理部107に格納する。   The radio base station receives the uplink signal from the first mobile station and measures the uplink reception quality (step 317). Although the radio base station transmits a transmission permission notification to the first mobile station, there is no data packet in the uplink signal. 1 ”and stored in the reception quality management unit 107 as information corresponding to the first mobile station.

ステップ313の処理時に無線基地局から送信許可通知を受け取っていない第2の移動局は、下り受信品質の情報のみを含む上り信号を無線基地局へ送信する(ステップ318)。無線基地局は、第2の移動局から送信された上り信号を受信し、その上り受信品質を測定する(ステップ319)。ここでは、第2の移動局に対して送信許可通知を送信していないため、無線基地局は第2の移動局に対するデータの受信成功/失敗の判定処理は実施しない。   The second mobile station that has not received the transmission permission notification from the radio base station at the time of processing in step 313 transmits an uplink signal including only information on downlink reception quality to the radio base station (step 318). The radio base station receives the uplink signal transmitted from the second mobile station and measures the uplink reception quality (step 319). Here, since the transmission permission notification is not transmitted to the second mobile station, the radio base station does not perform the data reception success / failure determination process for the second mobile station.

以下、第1の移動局及び第2の移動局からそれぞれデータパケットの終了通知を含む上り信号を受信するまで無線基地局は同様の処理を繰り返し、上り方向の通信におけるスケジューリング処理を続行する。   Thereafter, the radio base station repeats the same process until it receives an uplink signal including a data packet end notification from each of the first mobile station and the second mobile station, and continues the scheduling process in the uplink communication.

以上説明したように、本発明によれば、移動通信システムの上り方向の通信時におけるスケジューリング処理時に、下り受信品質、上り受信品質及び上り信号の受信成功確率の各情報を用いることで、無線基地局は、移動局へ送信する送信許可通知に対して移動局が測定した受信品質も考慮してスケジューリングを行うことができる。したがって、上り方向の通信時に、より最適な移動局を選択することが可能であり、無線リソースをより効率的に利用できるスケジューリング処理が実現される。   As described above, according to the present invention, the radio base station uses each information of the downlink reception quality, the uplink reception quality, and the reception success probability of the uplink signal during the scheduling process in the uplink communication of the mobile communication system. The station can perform scheduling in consideration of the reception quality measured by the mobile station in response to the transmission permission notification transmitted to the mobile station. Therefore, it is possible to select a more optimal mobile station during uplink communication, and it is possible to realize a scheduling process that can use radio resources more efficiently.

本発明のスケジューリング方法を適用する無線基地局の一構成例を示すブロック図である。It is a block diagram which shows the example of 1 structure of the radio base station to which the scheduling method of this invention is applied. 本発明のスケジューリング方法を適用する移動局の一構成例を示すブロック図である。It is a block diagram which shows one structural example of the mobile station to which the scheduling method of this invention is applied. 上り方向の通信時における無線基地局及び移動局の処理手順の一例を示すシーケンス図である。It is a sequence diagram which shows an example of the process sequence of a radio base station and a mobile station at the time of communication of an uplink direction.

符号の説明Explanation of symbols

101、201 アンテナ部
102、202 信号受信部
102−1〜102−N 受信処理部
103 移動局登録判定部
104 上り受信品質測定部
105 下り受信品質抽出部
106 データパケット受信部
107 受信品質管理部
108 スケジューリング処理部
109、207 信号送信部
203 受信品質測定部
204 送信許可通知判定部
205 上りデータパケット供給部
206 送信データ判定部
101, 201 Antenna unit 102, 202 Signal reception unit 102-1 to 102-N Reception processing unit 103 Mobile station registration determination unit 104 Upstream reception quality measurement unit 105 Downlink reception quality extraction unit 106 Data packet reception unit 107 Reception quality management unit 108 Scheduling processing unit 109, 207 Signal transmission unit 203 Reception quality measurement unit 204 Transmission permission notification determination unit 205 Uplink data packet supply unit 206 Transmission data determination unit

Claims (4)

複数の移動局から無線基地局に対する上り方向のパケット通信のスケジューリング方法であって、
前記無線基地局が、前記複数の移動局から送信された上り信号の受信品質を測定し、
前記複数の移動局のうち前記無線基地局が送信を許可した移動局から送信されるデータパケットの受信成功回数及び受信失敗回数から該移動局毎の受信成功確率を求め、
前記複数の移動局の前記上り信号の受信品質、前記複数の移動局から前記上り信号によって通知される下り信号の受信品質及び前記無線基地局が送信を許可した移動局毎の前記受信成功確率から前記複数の移動局の優先度をそれぞれ求め、
前記複数の移動局のうち、前記優先度の値が高い移動局を選択し、選択した移動局に前記データパケットの送信許可通知を送信するスケジューリング方法。
A scheduling method for uplink packet communication from a plurality of mobile stations to a radio base station,
The radio base station measures reception quality of uplink signals transmitted from the plurality of mobile stations,
The reception success probability for each mobile station is determined from the number of successful receptions and the number of reception failures of data packets transmitted from mobile stations that the wireless base station has permitted to transmit among the plurality of mobile stations,
From the reception quality of the uplink signal of the plurality of mobile stations, the reception quality of the downlink signal notified by the uplink signal from the plurality of mobile stations, and the reception success probability for each mobile station permitted to transmit by the radio base station Obtaining a priority of each of the plurality of mobile stations;
A scheduling method for selecting a mobile station having a high priority value from the plurality of mobile stations and transmitting a transmission permission notification of the data packet to the selected mobile station.
前記上り信号の受信品質、前記下り信号の受信品質及び前記データパケットの受信確率に対して、それぞれ伝搬環境に応じて任意に設定可能な重み係数を付与して前記優先度を求める請求項1記載のスケジューリング方法。   The priority is obtained by assigning a weighting factor arbitrarily set according to a propagation environment to the reception quality of the uplink signal, the reception quality of the downlink signal, and the reception probability of the data packet. Scheduling method. 移動局から送信される予約パケットにより該移動局がデータパケットの送信待機状態であることを認識する移動局登録判定部、前記複数の移動局から送信される上り信号によって通知される、該移動局毎の下り信号の受信品質を前記上り信号からそれぞれ抽出する下り受信品質抽出部、前記複数の移動局から送信される上り信号の受信品質をそれぞれ測定する上り受信品質測定部、前記複数の移動局のうち、送信が許可された移動局からのデータパケットの受信成功回数及び受信失敗回数から該移動局毎の受信成功確率を求めるデータパケット受信部、前記複数の移動局の前記上り信号の受信品質、前記複数の移動局から前記上り信号によって通知される下り信号の受信品質及び前記無線基地局が送信を許可した移動局毎の前記受信成功確率から前記複数の移動局の優先度をそれぞれ求め、前記複数の移動局のうち、前記優先度の値が高い移動局を選択するスケジューリング処理部、並びに前記スケジューリング処理部で選択された移動局に前記データパケットの送信許可通知を送信する信号送信部を備えた無線基地局と、
前記無線基地局から送信された下り信号の受信品質を測定する受信品質測定部、前記無線基地局から送信された下り信号に前記送信許可通知があるか否かを判定する送信許可通知判定部、送信するデータが存在する場合は前記予約パケットの送信を指示し、前記無線基地局から前記送信許可通知を受信した場合は前記データパケットの送信を指示する送信データ判定部、並びに前記送信データ判定部の指示にしたがって前記予約パケットまたは前記データパケットを送信する信号送信部を備えた移動局と、
を有する移動通信システム。
A mobile station registration determination unit for recognizing that the mobile station is in a data packet transmission standby state by a reservation packet transmitted from the mobile station; the mobile station notified by an uplink signal transmitted from the plurality of mobile stations A downlink reception quality extracting unit for extracting reception quality of each downlink signal from the uplink signal, an uplink reception quality measuring unit for measuring reception quality of uplink signals transmitted from the plurality of mobile stations, and the plurality of mobile stations A data packet receiving unit for obtaining a reception success probability for each mobile station from the number of successful receptions and the number of reception failures of data packets from mobile stations permitted to transmit, reception quality of the uplink signals of the plurality of mobile stations The reception quality of the downlink signal notified by the uplink signal from the plurality of mobile stations, and the reception success probability for each mobile station permitted to transmit by the radio base station A priority of each of the plurality of mobile stations, a scheduling processing unit that selects a mobile station having a high priority value among the plurality of mobile stations, and a mobile station selected by the scheduling processing unit A radio base station including a signal transmission unit for transmitting a data packet transmission permission notification;
A reception quality measurement unit that measures reception quality of a downlink signal transmitted from the radio base station, a transmission permission notification determination unit that determines whether or not there is the transmission permission notification in a downlink signal transmitted from the radio base station, A transmission data determination unit that instructs transmission of the reservation packet when there is data to be transmitted, and that instructs transmission of the data packet when the transmission permission notification is received from the radio base station, and the transmission data determination unit A mobile station comprising a signal transmission unit for transmitting the reservation packet or the data packet according to the instructions of
A mobile communication system.
前記スケジューリング処理部は、
前記上り信号の受信品質、前記下り信号の受信品質及び前記データパケットの受信確率に対して、それぞれ伝搬環境に応じて任意に設定可能な重み係数を付与して前記優先度を求める請求項3記載の移動通信システム。

The scheduling processing unit includes:
The priority is obtained by assigning a weighting factor that can be arbitrarily set according to a propagation environment to the reception quality of the uplink signal, the reception quality of the downlink signal, and the reception probability of the data packet. Mobile communication system.

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