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    • 7. 发明授权
    • Base station apparatus, wireless communication system, and wireless transmission method
    • 基站装置,无线通信系统和无线传输方法
    • US08477746B2
    • 2013-07-02
    • US12959107
    • 2010-12-02
    • Hideo NanbaYasuhiro HamaguchiShimpei To
    • Hideo NanbaYasuhiro HamaguchiShimpei To
    • H04J3/00
    • H04W72/085H04J3/00H04L5/023H04L27/2608H04W52/243H04W52/346H04W72/0473
    • Allocation of transmission power is carried out adaptively without affecting adjacent cells. Included are a reception part that receives information from a mobile station apparatus, a transmission power determination part that determines transmission power when transmitting a wireless signal to a mobile station apparatus based on the received information, an acquisition part that acquires information about communication environment in each time channel or each frequency channel from the received information, a scheduling part that identified a time channel or frequency channel the relationship of which between transmission power and communication environment satisfies the condition for allocation and allocates transmission data and transmission power for transmission to a mobile station apparatus to a communication slot in the time channel or frequency channel, and a transmission part that transmits a wireless signal using the communication slot to which the transmission data and the determined transmission power have been allocated.
    • 传输功率的分配是自适应进行的,而不影响相邻小区。 包括从移动站装置接收信息的接收部分,发送功率决定部,其基于接收到的信息,确定向移动台装置发送无线信号时的发送功率;获取部,其获取关于每个信息中的通信环境的信息 时间信道或每个频率信道,分配发送功率和通信环境之间的关系的时间信道或频率信道的调度部分满足分配条件,并分配发送数据和发送功率以便向移动台发送 设备到时隙或频道中的通信时隙,以及发送部,其使用已经分配了发送数据和确定的发送功率的通信时隙发送无线信号。
    • 8. 发明申请
    • BASE STATION APPARATUS, WIRELESS COMMUNICATION SYSTEM, AND WIRELESS TRANSMISSION METHOD
    • 基站设备,无线通信系统和无线传输方法
    • US20120230292A1
    • 2012-09-13
    • US13474451
    • 2012-05-17
    • Hideo NanbaYasuhiro HamaguchiShimpei To
    • Hideo NanbaYasuhiro HamaguchiShimpei To
    • H04W72/04H04W88/00H04J3/00
    • H04W72/085H04J3/00H04L5/023H04L27/2608H04W52/243H04W52/346H04W72/0473
    • Allocation of transmission power is carried out adaptively without affecting adjacent cells. Included are a reception part that receives information from a mobile station apparatus, a transmission power determination part that determines transmission power when transmitting a wireless signal to a mobile station apparatus based on the received information, an acquisition part that acquires information about communication environment in each time channel or each frequency channel from the received information, a scheduling part that identified a time channel or frequency channel the relationship of which between transmission power and communication environment satisfies the condition for allocation and allocates transmission data and transmission power for transmission to a mobile station apparatus to a communication slot in the time channel or frequency channel, and a transmission part that transmits a wireless signal using the communication slot to which the transmission data and the determined transmission power have been allocated.
    • 传输功率的分配是自适应进行的,而不影响相邻小区。 包括从移动站装置接收信息的接收部分,发送功率决定部,其基于接收到的信息,确定向移动台装置发送无线信号时的发送功率;获取部,其获取关于每个信息中的通信环境的信息 时间信道或每个频率信道,调度部分,其识别发射功率和通信环境之间的关系的时间信道或频率信道满足分配条件,并分配传输数据和传输功率以发送给移动台 设备到时隙或频道中的通信时隙,以及发送部,其使用已经分配了发送数据和确定的发送功率的通信时隙发送无线信号。
    • 9. 发明授权
    • Method of managing communication network, and communication device
    • 管理通信网络的方法和通信设备
    • US07162260B2
    • 2007-01-09
    • US10312928
    • 2001-06-26
    • Yoshitoshi ShojiHideo Nanba
    • Yoshitoshi ShojiHideo Nanba
    • H04B7/00
    • H04L41/0803H04L41/12
    • The invention provides a method of managing a network in which the configuration of communication devices can be freely modified and each terminal can operate as a hub terminal for controlling the network, and a communication device. Following network management information transmitted by the hub terminal periodically, each leaf terminal transmits terminal synchronization information and then transmits data. The network management information includes network ID retained by the hub terminal, station ID information in the form of information indicating the use/non-use of station ID in the network, and a terminal synchronization information transmission request which designates the leaf terminal which should transmit a terminal synchronizing signal. The leaf terminals designated by the terminal synchronization information transmission request transmit the individual terminal synchronization information sequentially following the network management information.
    • 本发明提供了一种管理网络的方法,其中可以自由地修改通信设备的配置,并且每个终端可以作为用于控制网络的集线器终端来操作,以及通信设备。 在由集线器终端周期性地发送的网络管理信息之后,每个叶子终端发送终端同步信息,然后发送数据。 网络管理信息包括由集线器终端保留的网络ID,指示网络中使用/不使用站ID的信息的形式的站ID信息,以及指定要发送的叶片终端的终端同步信息发送请求 终端同步信号。 由终端同步信息发送请求指定的叶子终端按照网络管理信息顺序发送各个终端同步信息。
    • 10. 发明授权
    • Communication device
    • 通讯设备
    • US08270514B2
    • 2012-09-18
    • US11795309
    • 2006-01-16
    • Shimpei ToYasuhiro HamaguchiHideo NanbaSeiichi SampeiHiroshi HaradaMasafumi Moriyama
    • Shimpei ToYasuhiro HamaguchiHideo NanbaSeiichi SampeiHiroshi HaradaMasafumi Moriyama
    • H04B7/02H04L27/28
    • H04L27/2602H04B7/061H04B7/084H04J13/18H04L5/0023H04L5/0044H04L5/0094H04L25/0204H04L25/0224H04L27/261H04L27/2647
    • Improving the accuracy of estimation of channel responses in receiving signals from a plurality of antennas is disclosed. A transmitting device of a base station includes a preamble A generating unit 010, a preamble B generating unit 011, phase rotating units 012 and 013, multiplexing units 014 and 015, an forward error correction coding unit 016, an S/P converting unit 017, a mapping unit 018, a changeover switch 019, IDFT (or IFFT) units 020 and 026, P/S converting units 021 and 027, GI (Guard Interval) inserting units 022 and 028, D/A converting units 023 and 029, radio transmitting units 024 and 030 and antenna units 025 and 031. In the preamble A generating unit 010 and the preamble B generating unit 011, a preamble A and a preamble B (see the packet format in FIG. 1) are generated, respectively. The preamble A is outputted to the multiplexing units 014 and 015, while the preamble B is outputted to the phase rotating units 012 and 013. The phase rotating units 012 and 013 to which the preamble B has been inputted give continuous phase rotation to subcarriers of the preamble B. In the transmitting device of the base station according to this embodiment, the phase rotating unit 012 does not give phase rotation, but only the phase rotating unit 013 gives phase rotation to the preamble B.
    • 公开了在从多个天线接收信号时提高信道响应的估计精度。 基站的发送装置包括前导码A生成部010,前导码B生成部011,相位旋转部012,003,复用部014,015,前向纠错编码部016,S / P转换部017 ,映射单元018,切换开关019,IDFT(或IFFT)单元020和026,P / S转换单元021和027,GI(保护间隔)插入单元022和028,D / A转换单元023和029, 无线电发送单元024和030以及天线单元025和031.在前导码A生成单元010和前导码B生成单元011中,分别生成前导码A和前导码B(参见图1中的分组格式)。 前导码A被输出到多路复用单元014和015,同时前同步码B被输出到相位旋转单元012和013.前导码B已被输入的相位旋转单元012和013给予连续的相位旋转, 前导码B.在本实施方式的基站的发送装置中,相位旋转单元012不给出相位旋转,只有相位旋转单元013向前同步码B提供相位旋转。