JP5918612B2 - Mobile terminal and communication method - Google Patents

Mobile terminal and communication method Download PDF

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JP5918612B2
JP5918612B2 JP2012093947A JP2012093947A JP5918612B2 JP 5918612 B2 JP5918612 B2 JP 5918612B2 JP 2012093947 A JP2012093947 A JP 2012093947A JP 2012093947 A JP2012093947 A JP 2012093947A JP 5918612 B2 JP5918612 B2 JP 5918612B2
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喜和 後藤
喜和 後藤
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NTT Docomo Inc
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Description

本発明は、第一の周波数帯域及び第二の周波数帯域を含んで構成されるシステム帯域に信号を送信可能な移動端末と、当該移動端末が行う通信方法とに関する。   The present invention relates to a mobile terminal capable of transmitting a signal to a system band configured to include a first frequency band and a second frequency band, and a communication method performed by the mobile terminal.

従来、複数の基本周波数ブロックを一体として広帯域化するキャリアアグリゲーションにおいて、複数の移動通信システムを混在させる方法が提案されている。   Conventionally, a method of mixing a plurality of mobile communication systems has been proposed in carrier aggregation in which a plurality of fundamental frequency blocks are integrated to increase the bandwidth.

例えば特許文献1に記載の制御情報信号の送信方法では、複数のコンポーネントキャリアで構成されるシステム帯域をもつ移動通信システムの基地局装置に対してUCI(Uplink Control Information:アップリンク制御情報)信号を生成し、PUCCH(Physical Uplink Control CHannel:上りリンク制御チャネル)信号の送信に用いられるユーザ特有のコンポーネントキャリアにおいて、UCI信号と同一サブフレームで送信されるPUSCH(Physical Uplink Shared. CHannel)信号にUCI信号を多重して基地局装置に送信している。   For example, in the control information signal transmission method described in Patent Document 1, a UCI (Uplink Control Information) signal is transmitted to a base station apparatus of a mobile communication system having a system band composed of a plurality of component carriers. UCI signal to PUSCH (Physical Uplink Shared. CHannel) signal generated and transmitted in the same subframe as UCI signal in user-specific component carrier used for transmission of PUCCH (Physical Uplink Control CHannel) signal Are multiplexed and transmitted to the base station apparatus.

特開2011−188468号公報JP 2011-188468 A

図1は、PUCCH信号を受信するタイミングでPUSCH信号を受信する際に発生する干渉を説明する帯域説明図である。図1に示されるように、PUCCH信号を受信するタイミングでPUSCH信号を受信すると、PUSCH信号とPUCCH信号との間には直交関係が無いため、eNB(evolved Node B:基地局)においてPUSCH信号及びPUCCH信号の双方にとって大きな干渉電力となる。   FIG. 1 is a band explanatory diagram illustrating interference that occurs when a PUSCH signal is received at the timing of receiving a PUCCH signal. As shown in FIG. 1, when the PUSCH signal is received at the timing of receiving the PUCCH signal, there is no orthogonal relationship between the PUSCH signal and the PUCCH signal, so that the PUSCH signal and the eNB (evolved Node B: base station) The interference power is large for both PUCCH signals.

上述の干渉のため、上述のタイミングの全UE(User Equipment:移動局)のPUCCH信号のCQI(Channel Quality Indicator:チャネル品質信号)、RI(Rank Indicator:ランク情報)、PMI(Precoding Matrix Indicator:プリコーディング行列)、Ack/Nack(受信成功応答/受信失敗応答)、SR(Scheduling Request:スケジューリングリクエスト)の受信特性が劣化し、eNBに届かなくなってしまい通信異常が発生するおそれがある。   Due to the interference described above, CQI (Channel Quality Indicator), RI (Rank Indicator), and PMI (Precoding Matrix Indicator) of PUCCH signals of all UEs (User Equipment: mobile stations) at the above timings. The reception characteristics of the coding matrix), Ack / Nack (reception success response / reception failure response), and SR (Scheduling Request: scheduling request) are degraded and may not reach the eNB, which may cause a communication abnormality.

また、上述の干渉のため、eNBにおいてPUCCH信号の干渉電力をある程度平均化する計算処理が行われている場合、PUSCH信号による一瞬の干渉の増大が、上り干渉が大きい状態が長時間続いていると誤認識され、PUCCH信号の干渉電力の計算結果が異常になる。この結果、PUCCH信号のパワコン(パワーコントロール:電力制御装置)による制御が異常になり、UEに送信させる上り電力が過剰になってしまい通信異常が発生するおそれがある。   In addition, due to the above-described interference, when the eNB performs a calculation process that averages the interference power of the PUCCH signal to some extent, the instantaneous interference increase due to the PUSCH signal continues for a long time with a large amount of uplink interference. And the calculation result of the interference power of the PUCCH signal becomes abnormal. As a result, the control by the power controller (power control: power control device) of the PUCCH signal becomes abnormal, and the uplink power transmitted to the UE becomes excessive, which may cause a communication abnormality.

更に、上述の干渉のため、上述のタイミングのPUSCH信号の受信特性が劣化してしまい通信異常が発生するおそれがある。   Furthermore, due to the above-described interference, the reception characteristics of the PUSCH signal at the above-described timing may be deteriorated, and communication abnormality may occur.

そこで本発明は、上述の問題点を解消する為になされたものであり、信号と信号の干渉に由来する通信異常の発生をより確実に防ぐことが可能な移動端末及び通信方法を提供することを目的とする。   Accordingly, the present invention has been made to solve the above-described problems, and provides a mobile terminal and a communication method that can more reliably prevent the occurrence of communication abnormality due to signal-to-signal interference. With the goal.

本発明の一形態に係る移動端末は、第一の周波数帯域及び第二の周波数帯域を含んで構成されるシステム帯域に信号を送信可能な移動端末であって、第二の周波数帯域よりも第一の周波数帯域で送信する方が適切な信号の送信帯域に関する帯域情報を受信する受信手段と、信号の送信帯域は第二の周波数帯域を含むと判定する尤度を低下させて設定する尤度決定手段と、受信手段により受信された帯域情報及び尤度決定手段により設定された尤度に基づいて、信号の送信帯域は第二の周波数帯域を含むか否かを判定する帯域判定手段と、帯域判定手段により信号の送信帯域は第二の周波数帯域を含むと判定された場合に、信号を第二の周波数帯域で送信する確率を低下させる処理を行なって当該信号を送信する制御手段と、を備えることを特徴とする。   A mobile terminal according to an aspect of the present invention is a mobile terminal capable of transmitting a signal to a system band configured to include a first frequency band and a second frequency band, the first being higher than the second frequency band. A receiving means for receiving band information relating to a transmission band of a signal that is more suitable to be transmitted in one frequency band, and a likelihood to be set by lowering a likelihood of determining that the signal transmission band includes the second frequency band A band determining unit for determining whether the transmission band of the signal includes the second frequency band based on the determining unit, the band information received by the receiving unit and the likelihood set by the likelihood determining unit; Control means for transmitting the signal by performing a process of reducing the probability of transmitting the signal in the second frequency band when the band determination means determines that the transmission band of the signal includes the second frequency band; Specially equipped with To.

本発明の一形態に係る移動端末によれば、第一の周波数帯域で送信するのが適切な信号の送信帯域に関する帯域情報を受信し、信号の送信帯域は第二の周波数帯域を含むと判定する尤度を低下させて設定し、受信された帯域情報及び設定された尤度に基づいて、信号の送信帯域は第二の周波数帯域を含むと判定された場合に、信号を第二の周波数帯域で送信する確率を低下させる処理を行なって当該信号を送信する。このように、上述の信号の送信帯域が第二の周波数帯域を含む場合に、信号を第二の周波数帯域で送信する確率を低下させるため、例えばPUSCH信号等の信号と、第二の周波数帯域で送信される例えばPUCCH信号等とが干渉する確率が低下する。この結果、信号と信号の干渉に由来する通信異常の発生をより確実に防ぐことが可能になる。   According to a mobile terminal according to an aspect of the present invention, band information related to a transmission band of a signal that is appropriate to be transmitted in the first frequency band is received, and it is determined that the transmission band of the signal includes the second frequency band. If the transmission band of the signal is determined to include the second frequency band based on the received band information and the set likelihood, the signal is set to the second frequency. The signal is transmitted by performing processing for reducing the probability of transmission in the band. Thus, when the transmission band of the signal includes the second frequency band, in order to reduce the probability of transmitting the signal in the second frequency band, for example, a signal such as a PUSCH signal and the second frequency band For example, the probability of interference with a PUCCH signal or the like transmitted at the time decreases. As a result, it is possible to more reliably prevent the occurrence of communication abnormalities resulting from signal-to-signal interference.

別の形態に係る移動端末では、上述の処理は、信号を第一の周波数帯域でのみ送信するよう制御することであってもよい。   In the mobile terminal according to another aspect, the above-described processing may be control to transmit a signal only in the first frequency band.

この形態では、上述の信号の送信帯域が第二の周波数帯域を含む場合に、信号を第一の周波数帯域でのみ送信するよう制御するため、例えばPUSCH信号等の信号と、第二の周波数帯域で送信される例えばPUCCH信号等とが干渉する確率が低下する。この結果、信号と信号の干渉に由来する通信異常の発生をより確実に防ぐことが可能になる。   In this embodiment, when the transmission band of the signal includes the second frequency band, control is performed so that the signal is transmitted only in the first frequency band. For example, a signal such as a PUSCH signal and the second frequency band are controlled. For example, the probability of interference with a PUCCH signal or the like transmitted at the time decreases. As a result, it is possible to more reliably prevent the occurrence of communication abnormalities resulting from signal-to-signal interference.

本発明の一形態に係る通信方法は、第一の周波数帯域及び第二の周波数帯域を含んで構成されるシステム帯域に信号を送信可能な移動端末が行う通信方法であって、第二の周波数帯域よりも第一の周波数帯域で送信する方が適切な信号の送信帯域に関する帯域情報を受信する受信ステップと、信号の送信帯域は第二の周波数帯域を含むと判定する尤度を低下させて設定する尤度決定ステップと、受信ステップにより受信された帯域情報及び尤度決定ステップにより設定された尤度に基づいて、信号の送信帯域は第二の周波数帯域を含むか否かを移動端末が判定する帯域判定ステップと、帯域判定ステップにより信号の送信帯域は第二の周波数帯域を含むと判定された場合に、信号を第二の周波数帯域で送信する確率を低下させる処理を移動端末が行なって当該信号を送信する制御ステップと、を有することを特徴とする。   A communication method according to an aspect of the present invention is a communication method performed by a mobile terminal capable of transmitting a signal to a system band configured to include a first frequency band and a second frequency band. A reception step for receiving band information related to a transmission band of a signal that is more suitable to be transmitted in the first frequency band than a band; and a likelihood of determining that the transmission band of the signal includes the second frequency band; Based on the likelihood determining step to be set, the band information received by the receiving step, and the likelihood set by the likelihood determining step, the mobile terminal determines whether the signal transmission band includes the second frequency band or not. A band determining step for determining, and when the band determining step determines that the transmission band of the signal includes the second frequency band, a process for reducing the probability of transmitting the signal in the second frequency band And having a control step of transmitting the signal is performed is.

本発明の一形態に係る通信方法によれば、第一の周波数帯域で送信するのが適切な信号の送信帯域に関する帯域情報を受信し、信号の送信帯域は第二の周波数帯域を含むと判定する尤度を低下させて設定し、受信された帯域情報及び設定された尤度に基づいて、信号の送信帯域は第二の周波数帯域を含むと判定された場合に、信号を第二の周波数帯域で送信する確率を低下させる処理を行なって当該信号を送信する。このように、上述の信号の送信帯域が第二の周波数帯域を含む場合に、信号を第二の周波数帯域で送信する確率を低下させるため、例えばPUSCH信号等の信号と、第二の周波数帯域で送信される例えばPUCCH信号等とが干渉する確率が低下する。この結果、信号と信号の干渉に由来する通信異常の発生をより確実に防ぐことが可能になる。   According to the communication method of one aspect of the present invention, band information related to a transmission band of a signal that is appropriate to be transmitted in the first frequency band is received, and it is determined that the transmission band of the signal includes the second frequency band. If the transmission band of the signal is determined to include the second frequency band based on the received band information and the set likelihood, the signal is set to the second frequency. The signal is transmitted by performing processing for reducing the probability of transmission in the band. Thus, when the transmission band of the signal includes the second frequency band, in order to reduce the probability of transmitting the signal in the second frequency band, for example, a signal such as a PUSCH signal and the second frequency band For example, the probability of interference with a PUCCH signal or the like transmitted at the time decreases. As a result, it is possible to more reliably prevent the occurrence of communication abnormalities resulting from signal-to-signal interference.

本発明によれば、信号と信号の干渉に由来する通信異常の発生をより確実に防ぐことが可能な移動端末及び通信方法を提供することができる。   ADVANTAGE OF THE INVENTION According to this invention, the mobile terminal and communication method which can prevent more reliably generation | occurrence | production of the communication abnormality resulting from a signal and signal interference can be provided.

PUCCH信号を受信するタイミングでPUSCH信号を受信する際に発生する干渉を説明する帯域説明図である。It is band explanatory drawing explaining the interference which generate | occur | produces when receiving a PUSCH signal at the timing which receives a PUCCH signal. 移動端末の主な機能構成の概略を説明するための機能ブロック図である。It is a functional block diagram for demonstrating the outline of the main function structures of a mobile terminal. 移動端末の主な物理構成の概略を説明するための物理構成図である。It is a physical block diagram for demonstrating the outline of the main physical structures of a mobile terminal. 移動端末における帯域変更処理の流れを説明するためのフローチャートである。It is a flowchart for demonstrating the flow of the band change process in a mobile terminal.

以下、添付図面を参照しながら本発明の好適な実施形態を説明する。なお、図面の説明において同一要素には同一符号を付し、重複する説明を省略する。   Hereinafter, preferred embodiments of the present invention will be described with reference to the accompanying drawings. In the description of the drawings, the same elements are denoted by the same reference numerals, and redundant description is omitted.

(1)PUCCH信号とPUSCH信号との干渉
まず、PUCCH信号とPUSCH信号との干渉について、図1を用いて説明する。図1は、PUCCH信号を受信するタイミングでPUSCH信号を受信する際に発生する干渉を説明する帯域説明図であり、縦軸が周波数、横軸が時間を示している。
(1) Interference between PUCCH signal and PUSCH signal First, interference between a PUCCH signal and a PUSCH signal will be described with reference to FIG. FIG. 1 is a band explanatory diagram illustrating interference that occurs when a PUSCH signal is received at the timing of receiving a PUCCH signal, where the vertical axis indicates frequency and the horizontal axis indicates time.

ここで、PUCCH帯域は、ユーザ間で多重されている帯域であり、CQI(Channel Quality Indicator:チャネル品質信号)、RI(Rank Indicator:ランク情報)、PMI(Precoding Matrix Indicator:プリコーディング行列)、Ack/Nack(受信成功応答/受信失敗応答)、SR(Scheduling Request:スケジューリングリクエスト)といったPUCCH信号が送信される。PUCCH帯域において、デジタル信号化された搬送波の中心周波数が、所定時間毎にホッピング(イントラ−サブフレーム周波数ホッピング)されることにより、周波数ダイバーシチの効果により通信品質を向上することができる。また、PUCCH除外帯域は、PUCCH信号が送信されない帯域である。PUSCH信号の送信帯域が、PUCCH帯域であると、PUSCH信号及びPUCCH信号が互いに干渉する可能性がある。   Here, the PUCCH band is a band multiplexed between users, and includes CQI (Channel Quality Indicator: channel quality signal), RI (Rank Indicator: rank information), PMI (Precoding Matrix Indicator: precoding matrix), Ack. PUCCH signals such as / Nack (reception success response / reception failure response) and SR (Scheduling Request) are transmitted. In the PUCCH band, the center frequency of a digitalized carrier wave is hopped at every predetermined time (intra-subframe frequency hopping), so that communication quality can be improved due to the effect of frequency diversity. Further, the PUCCH exclusion band is a band in which no PUCCH signal is transmitted. If the transmission band of the PUSCH signal is the PUCCH band, the PUSCH signal and the PUCCH signal may interfere with each other.

ここで、本実施形態に係る移動端末は、PUCCH除外帯域(第一の周波数帯域)及びPUCCH帯域(第二の周波数帯域)を含んで構成されるPUSCH帯域(PUSCH信号の送信帯域としてのシステム帯域)に対して、上り信号を送信可能な携帯電話端末やスマートフォンといった端末である。この移動端末は、PUSCH信号を、PUCCH帯域に送信しにくくすることにより、PUSCH信号及びPUCCH信号が互いに干渉する確率を低下させて、通信異常の発生をより確実に防ぐ。   Here, the mobile terminal according to this embodiment includes a PUSCH band (a system band as a transmission band of a PUSCH signal) configured to include a PUCCH exclusion band (first frequency band) and a PUCCH band (second frequency band). ) On the other hand, it is a terminal such as a mobile phone terminal or a smartphone capable of transmitting an uplink signal. This mobile terminal makes it difficult to transmit the PUSCH signal to the PUCCH band, thereby reducing the probability that the PUSCH signal and the PUCCH signal interfere with each other, and more reliably preventing the occurrence of communication abnormality.

(2)移動端末の構成
引き続き、本実施形態に係る移動端末の構成について、図2及び図3を用いて説明する。図2は、移動端末100の主な機能構成の概略を説明するための機能ブロック図であり、図3は、移動端末100の主な物理構成の概略を説明するための物理構成図である。
(2) Configuration of Mobile Terminal Next, the configuration of the mobile terminal according to the present embodiment will be described using FIG. 2 and FIG. FIG. 2 is a functional block diagram for explaining an outline of the main functional configuration of the mobile terminal 100, and FIG. 3 is a physical configuration diagram for explaining an outline of the main physical configuration of the mobile terminal 100.

移動端末100は、図3に示されるように、主な物理的な構成要素としてCPU101(Central Processing Unit)、RAM102(Random Access Memory)、ROM103(Read Only Memory)、操作部104、無線通信部105、ディスプレイ106、及びアンテナ107等のハードウェアにより構成されている携帯可能なコンピュータ端末である。これらの構成要素が動作することにより、移動端末100が有する各機能が発揮される。   As shown in FIG. 3, the mobile terminal 100 includes a CPU 101 (Central Processing Unit), a RAM 102 (Random Access Memory), a ROM 103 (Read Only Memory), an operation unit 104, and a wireless communication unit 105 as main physical components. , A portable computer terminal configured by hardware such as the display 106 and the antenna 107. When these components operate, each function of the mobile terminal 100 is exhibited.

移動端末100は、図2に示されるように、主な機能的な構成要素として、受信複合処理部1と、受信複合処理部1に通信接続された帯域変更部2(制御手段)と、帯域変更部2に通信接続された送信部3(制御手段)とを備えて構成されている。受信複合処理部1は、受信部11(受信手段)、尤度決定部12(尤度決定手段)、及び復号部13(帯域判定手段)を有している。   As shown in FIG. 2, the mobile terminal 100 includes, as main functional components, a reception composite processing unit 1, a band changing unit 2 (control means) connected to the reception composite processing unit 1, and a bandwidth. The transmission unit 3 (control means) is connected to the changing unit 2 in communication. The reception composite processing unit 1 includes a reception unit 11 (reception unit), a likelihood determination unit 12 (likelihood determination unit), and a decoding unit 13 (band determination unit).

受信部11は、移動端末100の通信対象である基地局からの各種信号の受信が可能な通信機能部分である。例えば、受信部11は、この基地局から、PDCCH(Physical Downlink Control CHannel :下りリンク制御チャネル)信号(DCI format0)を受信可能である。PDCCH信号は、PUSCH信号の送信帯域に関する帯域情報を有する信号である。PUSCH信号は、PUCCH帯域(第二の周波数帯域)よりもPUCCH除外帯域(第一の周波数帯域)で送信する方が適切な信号である。   The receiving unit 11 is a communication function part capable of receiving various signals from a base station that is a communication target of the mobile terminal 100. For example, the receiving unit 11 can receive a PDCCH (Physical Downlink Control CHannel) signal (DCI format 0) from the base station. The PDCCH signal is a signal having band information regarding the transmission band of the PUSCH signal. The PUSCH signal is a signal that is more suitable to be transmitted in the PUCCH exclusion band (first frequency band) than in the PUCCH band (second frequency band).

尤度決定部12は、PUSCH信号の送信帯域はPUCCH帯域を含むと判定する尤度を低下させて設定する情報記憶部分である。尤度は、PUSCH信号の送信帯域はPUCCH帯域を含むとする判定結果が導き出さされる際の前提条件のもっともらしさ示すものであり、例えば数値で表される。帯域毎に尤度が設定されており、PUCCH帯域となる尤度が低くなるとともにPUCCH除外帯域となる尤度が高くなると、PUSCH信号の送信帯域はPUCCH帯域を含むと判定する尤度が低下することになり、PUSCH信号の送信帯域はPUCCH帯域を含むと判定されにくくなる。   The likelihood determination unit 12 is an information storage part that is set by reducing the likelihood of determining that the transmission band of the PUSCH signal includes the PUCCH band. The likelihood indicates the plausibility of the precondition when the determination result that the transmission band of the PUSCH signal includes the PUCCH band is derived, and is represented by a numerical value, for example. Likelihood is set for each band, and when the likelihood of becoming a PUCCH band decreases and the likelihood of becoming a PUCCH exclusion band increases, the likelihood of determining that the transmission band of the PUSCH signal includes the PUCCH band decreases. That is, it is difficult to determine that the transmission band of the PUSCH signal includes the PUCCH band.

なお、尤度決定部12は、PUCCH帯域となる尤度の基準値と、PUCCH除外帯域となる尤度の基準値とを、予め内部に記憶している。尤度決定部12は、復号部13及び受信部11から受信した指示信号に従って、この尤度を調整することが可能である。   In addition, the likelihood determination part 12 has previously memorize | stored beforehand the reference value of likelihood used as a PUCCH band, and the reference value of likelihood used as a PUCCH exclusion band. The likelihood determining unit 12 can adjust the likelihood according to the instruction signal received from the decoding unit 13 and the receiving unit 11.

復号部13は、受信部11により受信された帯域情報及び尤度決定部12により設定された尤度に基づいて、PUSCH信号の送信帯域はPUCCH帯域を含むか否かを判定する演算処理部分である。復号部13は、尤度決定部12の尤度に関する情報に基づいて、割り当てRB(リソースブロック)数と割り当てRB位置とを示す情報(Resource block assignment and hoppingresource allocation)を復号する。そして、復号部13は、PUSCH信号の送信帯域がPUCCH帯域を含むか否かを判定する。   The decoding unit 13 is an arithmetic processing part that determines whether the transmission band of the PUSCH signal includes the PUCCH band based on the band information received by the receiving unit 11 and the likelihood set by the likelihood determining unit 12. is there. The decoding unit 13 decodes information (Resource block assignment and hopping resource allocation) indicating the number of allocated RBs (resource blocks) and the allocated RB positions based on the information on the likelihood of the likelihood determining unit 12. Then, the decoding unit 13 determines whether or not the transmission band of the PUSCH signal includes the PUCCH band.

帯域変更部2は、復号部13によりPUSCH信号の送信帯域はPUCCH帯域を含むと判定された場合に、PUSCH信号をPUCCH帯域で送信する確率を低下させる処理を行なう制御部分である。帯域変更部2は、復号部13によりPUSCH信号の送信帯域はPUCCH帯域を含むと判定された場合に、尤度決定部12に対して、PUCCH帯域となる尤度を低くするよう制御するとともに、PUCCH除外帯域となる尤度を高くするよう制御する。これにより、復号部13によりPUSCH信号の送信帯域はPUCCH帯域を含むと判定された場合に、PUSCH帯域が変更されて、PUSCH信号がPUCCH帯域で送信される確率は低下する。   The band changing unit 2 is a control part that performs a process of reducing the probability of transmitting the PUSCH signal in the PUCCH band when the decoding unit 13 determines that the transmission band of the PUSCH signal includes the PUCCH band. The band changing unit 2 controls the likelihood determining unit 12 to reduce the likelihood of becoming the PUCCH band when the decoding unit 13 determines that the transmission band of the PUSCH signal includes the PUCCH band, Control is performed to increase the likelihood of becoming a PUCCH exclusion band. Accordingly, when the decoding unit 13 determines that the transmission band of the PUSCH signal includes the PUCCH band, the PUSCH band is changed, and the probability that the PUSCH signal is transmitted in the PUCCH band decreases.

なお、帯域変更部2は、PUSCH信号がPUCCH帯域で送信される確率がゼロとなるような処理が可能である。これにより、PUSCH信号はPUCCH除外帯域でのみ送信されるようになる。   Note that the band changing unit 2 can perform processing such that the probability that the PUSCH signal is transmitted in the PUCCH band becomes zero. As a result, the PUSCH signal is transmitted only in the PUCCH exclusion band.

送信部3は、帯域変更部2により変更されたPUSCH帯域でPUSCH信号を基地局に送信する通信機能部分である。送信部3は、PUCCH信号が送信されないサブフレームにおいて、PUCCH帯域であってもPUSCH信号を送信可能である。なお、帯域変更部2によるPUSCH帯域の変更後に、PUCCH帯域にPUSCH信号が割り当てられる場合、送信部3は、PUSCH信号を送信しなくてもよい。   The transmission unit 3 is a communication function part that transmits a PUSCH signal to the base station in the PUSCH band changed by the band changing unit 2. The transmission unit 3 can transmit the PUSCH signal even in the PUCCH band in the subframe in which the PUCCH signal is not transmitted. Note that, when a PUSCH signal is assigned to the PUCCH band after the PUSCH band is changed by the band changing unit 2, the transmission unit 3 may not transmit the PUSCH signal.

(3)移動端末における帯域変更処理の流れ
引き続き、移動端末100における帯域変更処理の流れ(通信方法)について、図4を用いて説明する。図4は、移動端末100における帯域変更処理の流れを説明するためのフローチャートである。図4のフローチャートに示される処理は、移動端末100の電源がオンされてからオフされるまでの間、所定のタイミングで繰り返し実行される。
(3) Flow of Band Change Process in Mobile Terminal Next, the flow (communication method) of the band change process in the mobile terminal 100 will be described with reference to FIG. FIG. 4 is a flowchart for explaining the flow of the band changing process in the mobile terminal 100. The process shown in the flowchart of FIG. 4 is repeatedly executed at a predetermined timing from when the mobile terminal 100 is powered on until it is turned off.

まず、受信部11が、基地局からの各種信号の受信を行なっている状況において、PDCCH信号(DCI format0)を受信する(ステップS1、受信ステップ)。   First, in a situation where the receiving unit 11 receives various signals from the base station, the receiving unit 11 receives a PDCCH signal (DCI format0) (step S1, receiving step).

次に、尤度決定部12が、PUSCH信号の送信帯域はPUCCH帯域を含むと判定する尤度を低下させて設定し、復号部13が、尤度決定部12の尤度に関する情報に基づいて、割り当てRB数と割り当てRB位置とを示す情報(Resource block assignment and hoppingresource allocation)の復号を行う(ステップS2、尤度決定ステップ)。そして、復号部13は、PUSCH信号の送信帯域はPUCCH帯域を含むか否かを判定する(ステップS3、帯域判定ステップ)。PUSCH信号の送信帯域はPUCCH帯域を含むと判定された場合、後述のステップS4に移行する。一方、PUSCH信号の送信帯域はPUCCH帯域を含まないと判定された場合、後述のステップS5に移行する。   Next, the likelihood determining unit 12 sets the likelihood of determining that the transmission band of the PUSCH signal includes the PUCCH band, and the decoding unit 13 determines based on information on the likelihood of the likelihood determining unit 12. Then, the information (Resource block assignment and hopping resource allocation) indicating the number of assigned RBs and the assigned RB position is decoded (step S2, likelihood determining step). Then, the decoding unit 13 determines whether or not the transmission band of the PUSCH signal includes the PUCCH band (step S3, band determination step). When it is determined that the transmission band of the PUSCH signal includes the PUCCH band, the process proceeds to step S4 described later. On the other hand, when it is determined that the transmission band of the PUSCH signal does not include the PUCCH band, the process proceeds to step S5 described later.

ステップS4では、帯域変更部2が、尤度決定部12に対して、PUCCH帯域となる尤度を低くするよう制御するとともに、PUCCH除外帯域となる尤度を高くするよう制御する(制御ステップ)。これにより、PUSCH帯域が変更されて、PUSCH信号がPUCCH帯域で送信される確率は低下する。そして、送信部3が、帯域変更部2により変更されたPUSCH帯域でPUSCH信号を基地局に送信する(制御ステップ)。そして、一連の処理は終了する。   In step S4, the band changing unit 2 controls the likelihood determining unit 12 to lower the likelihood of becoming a PUCCH band and to increase the likelihood of becoming a PUCCH excluded band (control step). . Thereby, the PUSCH band is changed, and the probability that the PUSCH signal is transmitted in the PUCCH band decreases. And the transmission part 3 transmits a PUSCH signal to a base station by the PUSCH band changed by the band change part 2 (control step). Then, a series of processing ends.

ステップS5では、帯域変更部2による尤度の調整は行われない(制御ステップ)。このため、PUSCH帯域は変更されない状態となり、この状態で、送信部3が、PUSCH信号を基地局に送信する(制御ステップ)。そして、一連の処理は終了する。   In step S5, the likelihood adjustment by the band changing unit 2 is not performed (control step). For this reason, the PUSCH band is not changed, and in this state, the transmission unit 3 transmits the PUSCH signal to the base station (control step). Then, a series of processing ends.

(4)本発明による作用及び効果
移動端末100によれば、PUCCH除外帯域で送信するのが適切なPUSCH信号の送信帯域に関する帯域情報を受信し、PUSCH信号の送信帯域はPUCCH帯域を含むと判定する尤度を低下させて設定し、受信された帯域情報及び設定された尤度に基づいて、PUSCH信号の送信帯域はPUCCH帯域を含むと判定された場合に、PUSCH信号をPUCCH帯域で送信する確率を低下させる処理を行なってPUSCH信号を送信する。このように、上述のPUSCH信号の送信帯域がPUCCH帯域である場合に、PUSCH信号をPUCCH帯域で送信する確率を低下させるため、PUSCH信号と、PUCCH帯域で送信されるPUCCH信号とが干渉する確率が低下する。この結果、信号と信号の干渉に由来する通信異常の発生をより確実に防ぐことが可能になる。
(4) Operation and Effect According to the Present Invention According to the mobile terminal 100, band information related to the transmission band of the PUSCH signal appropriate to be transmitted in the PUCCH exclusion band is received, and it is determined that the transmission band of the PUSCH signal includes the PUCCH band. When the transmission band of the PUSCH signal is determined to include the PUCCH band based on the received band information and the set likelihood, the PUSCH signal is transmitted in the PUCCH band. A PUSCH signal is transmitted by performing processing for reducing the probability. As described above, when the transmission band of the above-described PUSCH signal is the PUCCH band, the probability that the PUSCH signal and the PUCCH signal transmitted in the PUCCH band interfere with each other in order to reduce the probability of transmitting the PUSCH signal in the PUCCH band. Decreases. As a result, it is possible to more reliably prevent the occurrence of communication abnormalities resulting from signal-to-signal interference.

また、上述のPUSCH信号の送信帯域がPUCCH帯域を含む場合に、PUSCH信号をPUCCH除外帯域でのみ送信するよう制御することが可能である。これにより、例えばPUSCH信号等の信号と、PUCCH帯域で送信される例えばPUCCH信号等とが干渉する確率が低下する。この結果、信号と信号の干渉に由来する通信異常の発生をより確実に防ぐことが可能になる。   Moreover, when the transmission band of the above-described PUSCH signal includes the PUCCH band, it is possible to control to transmit the PUSCH signal only in the PUCCH exclusion band. Thereby, the probability that a signal such as a PUSCH signal, for example, interferes with, for example, a PUCCH signal transmitted in the PUCCH band is reduced. As a result, it is possible to more reliably prevent the occurrence of communication abnormalities resulting from signal-to-signal interference.

(5)変形例
上述の実施例では、帯域変更部2が、尤度決定部12に対して、PUCCH帯域となる尤度を低くするよう制御するとともに、PUCCH除外帯域となる尤度を高くするよう制御する構成として説明したが、尤度の変更処理の代わりに、PUCCH帯域と復号された場合に、PUCCH帯域をPUCCH除外帯域に読み替えるかPUCCH帯域では上り送信しない構成としてもよい。
(5) Modified Example In the above-described embodiment, the band changing unit 2 controls the likelihood determining unit 12 to reduce the likelihood of becoming a PUCCH band and increases the likelihood of becoming a PUCCH excluded band. However, instead of the likelihood changing process, when the PUCCH band is decoded, the PUCCH band may be replaced with the PUCCH excluded band or the uplink transmission may not be performed in the PUCCH band.

本発明によれば、信号と信号の干渉に由来する通信異常の発生をより確実に防ぐことが可能な移動端末及び通信方法を提供することができる。   ADVANTAGE OF THE INVENTION According to this invention, the mobile terminal and communication method which can prevent more reliably generation | occurrence | production of the communication abnormality resulting from a signal and signal interference can be provided.

1…受信複合処理部、2…帯域変更部、3…送信部、11…受信部、12…尤度決定部、13…復号部、100…移動端末、101…CPU、102…RAM、103…ROM、104…操作部、105…無線通信部、106…ディスプレイ、107…アンテナ。   DESCRIPTION OF SYMBOLS 1 ... Reception composite process part, 2 ... Band change part, 3 ... Transmission part, 11 ... Reception part, 12 ... Likelihood determination part, 13 ... Decoding part, 100 ... Mobile terminal, 101 ... CPU, 102 ... RAM, 103 ... ROM, 104 ... operation unit, 105 ... wireless communication unit, 106 ... display, 107 ... antenna.

Claims (3)

第一の周波数帯域及び第二の周波数帯域を含んで構成されるシステム帯域に信号を送信可能な移動端末であって、
前記第二の周波数帯域よりも前記第一の周波数帯域で送信する方が適切な前記信号の送信帯域に関する帯域情報を受信する受信手段と、
前記信号の送信帯域は前記第二の周波数帯域を含むと判定する尤度を低下させて設定する尤度決定手段と、
前記受信手段により受信された前記帯域情報及び前記尤度決定手段により設定された前記尤度に基づいて、前記信号の送信帯域は前記第二の周波数帯域を含むか否かを判定する帯域判定手段と、
前記帯域判定手段により前記信号の送信帯域は前記第二の周波数帯域を含むと判定された場合に、前記信号を前記第二の周波数帯域で送信する確率を低下させる処理を行なって当該信号を送信する制御手段と、
を備えることを特徴とする移動端末。
A mobile terminal capable of transmitting a signal to a system band configured to include a first frequency band and a second frequency band,
Receiving means for receiving band information relating to a transmission band of the signal that is more suitable to be transmitted in the first frequency band than in the second frequency band;
Likelihood determining means for reducing and setting the likelihood of determining that the transmission band of the signal includes the second frequency band;
Band determining means for determining whether a transmission band of the signal includes the second frequency band based on the band information received by the receiving means and the likelihood set by the likelihood determining means When,
When the transmission band of the signal is determined to include the second frequency band by the band determination unit, the signal is transmitted by performing a process for reducing the probability of transmitting the signal in the second frequency band. Control means to
A mobile terminal comprising:
前記処理は、前記信号を前記第一の周波数帯域でのみ送信するよう制御することである、請求項1に記載の移動端末。   The mobile terminal according to claim 1, wherein the processing is control to transmit the signal only in the first frequency band. 第一の周波数帯域及び第二の周波数帯域を含んで構成されるシステム帯域に信号を送信可能な移動端末が行う通信方法であって、
前記第二の周波数帯域よりも前記第一の周波数帯域で送信する方が適切な前記信号の送信帯域に関する帯域情報を受信する受信ステップと、
前記信号の送信帯域は前記第二の周波数帯域を含むと判定する尤度を低下させて設定する尤度決定ステップと、
前記受信ステップにより受信された前記帯域情報及び前記尤度決定ステップにより設定された前記尤度に基づいて、前記信号の送信帯域は前記第二の周波数帯域を含むか否かを前記移動端末が判定する帯域判定ステップと、
前記帯域判定ステップにより前記信号の送信帯域は前記第二の周波数帯域を含むと判定された場合に、前記信号を前記第二の周波数帯域で送信する確率を低下させる処理を前記移動端末が行なって当該信号を送信する制御ステップと、
を有することを特徴とする通信方法。
A communication method performed by a mobile terminal capable of transmitting a signal to a system band configured to include a first frequency band and a second frequency band,
A reception step of receiving band information relating to a transmission band of the signal that is more suitable to be transmitted in the first frequency band than in the second frequency band;
A likelihood determining step of setting a reduced likelihood of determining that the transmission band of the signal includes the second frequency band; and
The mobile terminal determines whether the transmission band of the signal includes the second frequency band based on the band information received in the reception step and the likelihood set in the likelihood determination step. A bandwidth determination step,
When it is determined in the band determination step that the transmission band of the signal includes the second frequency band, the mobile terminal performs a process of reducing the probability of transmitting the signal in the second frequency band. A control step for transmitting the signal;
A communication method characterized by comprising:
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