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    • 101. 发明申请
    • CHANNEL IMPULSE RESPONSE EXTRACTION FOR MOBILE TERMINALS
    • 用于移动终端的通道刺激响应提取
    • US20080167030A1
    • 2008-07-10
    • US11969790
    • 2008-01-04
    • Feng LiJianxun SunYingmin WangGuiliang YangTiezhu Xu
    • Feng LiJianxun SunYingmin WangGuiliang YangTiezhu Xu
    • H04Q7/20
    • H04W28/18H04B1/7105H04B2201/70702H04B2201/709709H04L25/0202H04W24/00
    • Finding a channel impulse response estimation window in a current cell for at least one mobile terminal in a neighboring cell is disclosed. This can serve to mitigate interference caused by mobile terminals in neighboring cells in and among communications ongoing in a current cell. In one example, a method for A method for determining such a channel impulse response estimation window includes presetting, in the neighboring cell, at least two channel impulse response peak locations of respective mobile terminals in first and second predetermined periods with a predetermined peak location change pattern, and then upon receiving communication from a mobile terminal of the neighboring cell, analyzing channel impulse responses to identify the peak location change pattern with regard to first and second peak locations. The method further includes identifying a variation range for a channel impulse response of a primary path of the mobile terminal, and determining a channel impulse response estimation window for the mobile terminal based on the identified variation range and a preferred estimation window size.
    • 公开了在相邻小区中的至少一个移动终端的当前小区中的信道脉冲响应估计窗口。 这可以用于减轻当前小区中正在进行的通信中的相邻小区中的移动终端造成的干扰。 在一个示例中,用于确定这样的信道脉冲响应估计窗口的A方法的方法包括在相邻小区中预定在第一和第二预定时段中各个移动终端的至少两个信道脉冲响应峰值位置具有预定的峰值位置变化 然后在从相邻小区的移动终端接收到通信时,分析信道脉冲响应以识别关于第一和第二峰位置的峰位置改变模式。 该方法还包括识别移动终端的主要路径的信道脉冲响应的变化范围,以及基于所识别的变化范围和优选估计窗口大小来确定移动终端的信道脉冲响应估计窗口。
    • 104. 发明申请
    • AGENT FOR IMPLEMENTING AUTOMATED COMPATIBILITY TEST
    • 执行自动兼容性测试的代理
    • US20080104575A1
    • 2008-05-01
    • US11554795
    • 2006-10-31
    • Xun-Yi FanFeng Li
    • Xun-Yi FanFeng Li
    • G06F9/44
    • G06F11/36
    • A method (400) of testing a device (105). The method can include receiving from the device a test request identifying at least one test to be performed on the device. The test request can be received in accordance with a first communications protocol. The test request can be communicated to a test tool (130) in accordance with a second communications protocol. Further, a response to the test request can be received from the test tool. The response can be received in accordance with the second communications protocol. The response then can be communicated to the device in accordance with the first communications protocol.
    • 一种测试设备(105)的方法(400)。 该方法可以包括从设备接收标识要在设备上执行的至少一个测试的测试请求。 可以根据第一通信协议接收测试请求。 测试请求可以根据第二通信协议传送到测试工具(130)。 此外,可以从测试工具接收对测试请求的响应。 可以根据第二通信协议接收响应。 然后响应可以根据第一通信协议传送到设备。
    • 107. 发明申请
    • Outdoor decorative audio output system
    • 户外装饰音响输出系统
    • US20070242846A1
    • 2007-10-18
    • US11404917
    • 2006-04-13
    • Feng LiDennis Cheng
    • Feng LiDennis Cheng
    • H04R1/02H04R9/06
    • H04R1/028H04R5/02
    • An outdoor decorative audio output system includes an outdoor decorative housing and an audio system. The outdoor decorative housing, which is shaped to have an aesthetically natural appeal with weather resistant ability, has an audio cavity, an audio outlet communicating with the audio cavity, and a player compartment for receiving a portable audio player therein. The audio system, which is electrically connected with a power source, includes an audio output receiving in the audio cavity and an audio signal input which is electrically connected to the audio output and is provided at the decorative housing for communicatively connecting the portable audio player, wherein the audio signal input is adapted for receiving an audio signal from the audio player, such that the audio output converts the audio signal into an audible signal to create an optimal environmental audio effect for outdoors.
    • 户外装饰音响输出系统包括户外装饰外壳和音响系统。 被设计成具有耐候性能的美学自然吸引力的室外装饰性外壳具有音频空腔,与音频空腔通信的音频插座以及用于在其中接收便携式音频播放器的播放器室。 与电源电连接的音频系统包括在音频空腔中接收的音频输出和电连接到音频输出的音频信号输入,并且设置在装饰外壳处,用于通信地连接便携式音频播放器, 其中所述音频信号输入适于从所述音频播放器接收音频信号,使得所述音频输出将所述音频信号转换成可听信号,以在室外产生最佳的环境音频效果。
    • 110. 发明授权
    • Method for calibrating smart antenna array systems in real time
    • 实时校准智能天线阵列系统的方法
    • US07102569B2
    • 2006-09-05
    • US11166514
    • 2005-06-23
    • Zhe TanFeng Li
    • Zhe TanFeng Li
    • H04B7/005H04B17/00
    • H01Q3/267
    • Transmitting and receiving compensation coefficients of each antenna element relative to a calibration antenna element are obtained in the pre-calibration of a smart antenna. After the antenna array is installed, in transmitting calibration, amplitude and phase response of each transmitting link is computed according to the calibration signals received by the calibration link and, together with the transmitting compensation coefficient obtained in the pre-calibration, the compensation coefficient of each transmitting link is computed to compensate the downlink data of a base station. In receiving calibration, the amplitude and phase response of each receiving link is computed based on the signals received by the receiving links and, together with the receiving compensation coefficient obtained in pre-calibration, the compensation coefficient of each receiving link is computed to compensate the uplink data of the base station. The calibration signal of each antenna element is generated by a periodic cycling shift of a basic calibration sequence.
    • 在智能天线的预校准中获得每个天线元件相对于校准天线元件的发射和接收补偿系数。 在安装天线阵列之后,在发送校准时,根据校准链路接收的校准信号计算每个发射链路的振幅和相位响应,并与预校准中获得的发射补偿系数一起, 计算每个发送链路以补偿基站的下行链路数据。 在接收校准时,根据接收链路接收到的信号计算每个接收链路的振幅和相位响应,并与预校准中获得的接收补偿系数一起计算每个接收链路的补偿系数,以补偿 基站的上行数据。 每个天线元件的校准信号通过基本校准序列的周期性循环移位产生。