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    • 51. 发明申请
    • Fast Radio Bearer Establishment in a Mobile Communication System
    • 移动通信系统中的快速无线承载建立
    • US20080311923A1
    • 2008-12-18
    • US12090973
    • 2006-09-19
    • Dragan PetrovicTakahisa AoyamaJoachim LohrEiko SeidelAkito Fukui
    • Dragan PetrovicTakahisa AoyamaJoachim LohrEiko SeidelAkito Fukui
    • H04Q7/22H04B7/00
    • H04W76/11H04W76/12
    • The invention relates to methods for establishing a radio bearer between a network element terminating radio resource control protocol and a mobile terminal. The invention provides RNC for establishing a radio bearer between the RNC and a mobile terminal, especially adapted mobile terminals and a system comprising the network element and at least one mobile terminal. In order to reduce the delays implied by the signaling in the procedure the invention proposes two mechanisms. The first mechanism aims at reducing the delay implied by setting up the radio link for the radio bearer by preconfiguring a pool of resources comprising a set of at least radio bearer configuration and making the available radio bearer configurations known to the mobile terminals. The second mechanism aims at avoiding the delay implied by the explicit assignment of a radio network temporary identifier by signaling a set of available identifiers from which the mobile terminal may choose an identifier.
    • 本发明涉及在网元终端无线资源控制协议与移动终端之间建立无线承载的方法。 本发明提供了RNC,用于在RNC与移动终端之间建立无线电承载,特别是适配的移动终端以及包括该网络元件和至少一个移动终端的系统。 为了减少在该过程中由信令所暗示的延迟,本发明提出了两种机制。 第一种机制旨在通过预先配置包括一组至少无线电承载配置的资源池并使移动终端已知的可用无线电承载配置,来减少为无线电承载建立无线电链路所暗示的延迟。 第二种机制旨在通过发送移动终端可以从其中选择标识符的一组可用标识符来避免由无线电网络临时标识符的显式分配所暗示的延迟。
    • 52. 发明申请
    • COMMUNICATION TERMINAL APPARATUS AND BASE STATION APPARATUS
    • 通信终端装置和基站装置
    • US20080261545A1
    • 2008-10-23
    • US12132992
    • 2008-06-04
    • Kenichi MiyoshiTakahisa AoyamaToyoki UeOsamu KatoKatsuhiko HiramatsuAtsushi Samasu
    • Kenichi MiyoshiTakahisa AoyamaToyoki UeOsamu KatoKatsuhiko HiramatsuAtsushi Samasu
    • H04B1/04
    • H04W52/265H04W52/24H04W52/241H04W52/246H04W52/262H04W52/267H04W52/367
    • An allocation section 101 in a base station apparatus of the present invention sets the transmission rate of a transmit signal for a communication terminal apparatus based on a DRC signal transmitted from that communication terminal apparatus. A power margin information detector 117 detects power margin information from a demodulated signal generated by a demodulator 115, and, using that power margin information, a power setting section 118 makes a setting so as to give the minimum transmission power value at which received signal characteristics in each communication terminal apparatus meet the desired quality. Using the set transmission power value, the base station apparatus transmits a transmit signal of the set transmission rate to a communication terminal apparatus. By this means it is possible to suppress interference to a communication terminal apparatus that performs adaptive modulation communication with another base station apparatus and a communication terminal apparatus that performs adaptive modulation communication with the local base station apparatus at the same time.
    • 本发明的基站装置中的分配部101基于从该通信终端装置发送的DRC信号来设定通信终端装置的发送信号的发送速度。 功率余量信息检测器117从解调器115产生的解调信号中检测功率余量信息,并且使用该功率余量信息,功率设定部118进行设定,以便给出接收信号特性 在每个通信终端设备中满足期望的质量。 使用设定的发送功率值,基站装置向通信终端装置发送所设定的发送速率的发送信号。 通过这种方式,可以抑制对与本地基站装置同时执行自适应调制通信的另一基站装置和通信终端装置进行自适应调制通信的通信终端装置的干扰。
    • 53. 发明授权
    • Base station apparatus that directively transmits a modulated packet signal to a priority destination and packet transmission method thereto
    • 将调制分组信号直接发送到优先目的地的基站装置及其分组发送方法
    • US06968212B1
    • 2005-11-22
    • US10031873
    • 2001-05-23
    • Takahisa AoyamaKenichi MiyoshiToyoki Ue
    • Takahisa AoyamaKenichi MiyoshiToyoki Ue
    • H04B7/06H04B1/38
    • H04B7/0408H04B7/0615H04B7/10
    • Priority determining section 107 determines priority of each communication terminal apparatus based on the information indicating the channel quality of the downlink. Transmission destination determining section 108 estimates the direction in which each communication terminal apparatus exists from the information indicating the direction of arrival of the signal and determines the communication terminal apparatuses to which downlink high-speed packet transmission is performed based on the direction in which each communication terminal apparatus exists and priority. AAA transmission control section 154 calculates a transmission weight based on the direction of arrival of the signal sent from the communication terminal apparatus determined by transmission destination determining section 108. Then, AAA transmission control section 154 multiplies the signals sent from antenna elements 101 to 103 by transmission weights. When adaptive array is used, this makes it possible to carry out effective downlink high-speed packet transmission.
    • 优先级确定部107基于指示下行链路的信道质量的信息,确定各通信终端装置的优先级。 发送目的地确定部分108从指示信号的到达方向的信息中估计每个通信终端装置存在的方向,并且基于每个通信的方向确定执行下行高速分组传输的通信终端装置 终端设备存在且优先。 AAA传输控制部分154根据由发送目的地确定部分108确定的从通信终端装置发送的信号的到达方向来计算发送权重。 然后,AAA发送控制部分154将通过发送权重从天线元件101到103发送的信号相乘。 当使用自适应阵列时,这使得可以执行有效的下行链路高速分组传输。
    • 55. 发明授权
    • Base station device and method for communication
    • 基站装置及通讯方法
    • US06738646B2
    • 2004-05-18
    • US10069267
    • 2002-02-25
    • Kenichi MiyoshiTakahisa AoyamaToyoki UeOsamu KatoKatsuhiko HiramatsuAtsushi Sumasu
    • Kenichi MiyoshiTakahisa AoyamaToyoki UeOsamu KatoKatsuhiko HiramatsuAtsushi Sumasu
    • H04M100
    • H04W52/265H04W52/24H04W52/241H04W52/246H04W52/262H04W52/267H04W52/367
    • An allocation section 101 in a base station apparatus of the present invention sets the transmission rate of a transmit signal for a communication terminal apparatus based on a DRC signal transmitted from that communication terminal apparatus. A power margin information detector 117 detects power margin information from a demodulated signal generated by a demodulator 115, and, using that power margin information, a power setting section 118 makes a setting so as to give the minimum transmission power value at which received signal characteristics in each communication terminal apparatus meet the desired quality. Using the set transmission power value, the base station apparatus transmits a transmit signal of the set transmission rate to a communication terminal apparatus. By this means it is possible to suppress interference to a communication terminal apparatus that performs adaptive modulation communication with another base station apparatus and a communication terminal apparatus that performs adaptive modulation communication with the local base station apparatus at the same time.
    • 本发明的基站装置中的分配部101基于从该通信终端装置发送的DRC信号来设定通信终端装置的发送信号的发送速度。 功率余量信息检测器117从解调器115产生的解调信号中检测功率余量信息,并且使用该功率余量信息,功率设定部118进行设定,以便给出接收信号特性 在每个通信终端设备中满足期望的质量。 使用设定的发送功率值,基站装置向通信终端装置发送所设定的发送速率的发送信号。 通过这种方式,可以抑制对与本地基站装置同时执行自适应调制通信的另一基站装置和通信终端装置进行自适应调制通信的通信终端装置的干扰。
    • 56. 发明授权
    • Array antenna radio communication apparatus and array antenna radio communication method
    • 阵列天线无线电通信装置和阵列天线无线电通信方法
    • US06529163B2
    • 2003-03-04
    • US09959375
    • 2001-10-24
    • Takahisa Aoyama
    • Takahisa Aoyama
    • G01S316
    • H04B7/086H04B7/0848
    • A radio section(RS) 102 receives, through antennas 101-1 through 101-3, a plurality of signals transmitted on a plurality of channels from a communication partner; demodulation sections(DS) 103-1 through 103-3 despread the signals of the channels; reception weight generation sections(RWGS) 104-1 through 104-3 generate reception weights 1 through 3 for the signals of the channels; respectively; a common weight generation section 105 generates, from the reception weights 1 through 3, a common reception weight, by which each of the signals of the channels is commonly multiplied; and multipliers 106-1 through 106-3 multiply each of the signals of the channels by the common reception weight. Thereby, the array antenna radio communication apparatus receives all of the signals of the channels with the same directional pattern.
    • 无线电部分(RS)102通过天线101-1至101-3接收从通信伙伴在多个信道上发送的多个信号; 解调部分(DS)103-1至103-3对信道的信号进行解扩; 接收权重产生部分(RWGS)104-1至104-3产生用于信道信号的接收权重1至3; 分别; 公共权重生成部105从接收权重1〜3生成通道相乘的各信道的公共接收权重; 并且乘法器106-1至106-3将信道的每个信号乘以公共接收权重。 由此,阵列天线无线通信装置以相同的方向图来接收信道的全部信号。