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    • 2. 发明授权
    • Interference and power control for wireless communication
    • 无线通信的干扰和功率控制
    • US08073481B2
    • 2011-12-06
    • US11933971
    • 2007-11-01
    • Xiliang LuoDurga Prasad MalladiXiaoxia Zhang
    • Xiliang LuoDurga Prasad MalladiXiaoxia Zhang
    • H04B7/00
    • H04W52/362H04W52/16H04W52/225H04W52/24H04W52/241H04W52/243H04W52/343H04W52/367
    • Techniques for performing interference and power control in a wireless communication system are described. An asymmetric power control scheme adjusts the transmit power of a user equipment (UE) in an asymmetric manner, e.g., with different up and down step sizes. In one design, a parameter value may be determined based on received SINR of at least one Node B. Up and down steps may be determined based on the parameter value and may have different sizes. At least one overloading indicator from at least one neighbor Node B may be obtained. The transmit power of the UE may be adjusted based on the up and down steps and the at least one overloading indicator. For example, the transmit power may be increased by the up step if an overloading indicator from the strongest neighbor Node B is not received and may be decreased by the down step otherwise.
    • 描述了在无线通信系统中执行干扰和功率控制的技术。 非对称功率控制方案以不对称的方式调整用户设备(UE)的发射功率,例如具有不同的上下步长。 在一种设计中,可以基于至少一个节点B的接收到的SINR来确定参数值。可以基于参数值来确定上下步骤,并且可以具有不同的大小。 可以获得来自至少一个相邻节点B的至少一个过载指示符。 可以基于上下步骤和至少一个超载指示符来调整UE的发射功率。 例如,如果没有接收到来自最强的邻居节点B的过载指示符,则可以通过向上步长来增加发射功率,否则可以通过下降步长来减小发射功率。
    • 4. 发明申请
    • INTERFERENCE AND POWER CONTROL FOR WIRELESS COMMUNICATION
    • 干扰和功率控制无线通信
    • US20080261645A1
    • 2008-10-23
    • US11933971
    • 2007-11-01
    • Xiliang LuoDurga Prasad MalladiXiaoxia Zhang
    • Xiliang LuoDurga Prasad MalladiXiaoxia Zhang
    • H04B7/00H04B17/00
    • H04W52/362H04W52/16H04W52/225H04W52/24H04W52/241H04W52/243H04W52/343H04W52/367
    • Techniques for performing interference and power control in a wireless communication system are described. An asymmetric power control scheme adjusts the transmit power of a user equipment (UE) in an asymmetric manner, e.g., with different up and down step sizes. In one design, a parameter value may be determined based on received SINR of at least one Node B. Up and down steps may be determined based on the parameter value and may have different sizes. At least one overloading indicator from at least one neighbor Node B may be obtained. The transmit power of the UE may be adjusted based on the up and down steps and the at least one overloading indicator. For example, the transmit power may be increased by the up step if an overloading indicator from the strongest neighbor Node B is not received and may be decreased by the down step otherwise.
    • 描述了在无线通信系统中执行干扰和功率控制的技术。 非对称功率控制方案以不对称的方式调整用户设备(UE)的发射功率,例如具有不同的上下步长。 在一种设计中,可以基于至少一个节点B的接收到的SINR来确定参数值。可以基于参数值来确定上下步骤,并且可以具有不同的大小。 可以获得来自至少一个相邻节点B的至少一个过载指示符。 可以基于上下步骤和至少一个超载指示符来调整UE的发射功率。 例如,如果没有接收到来自最强的邻居节点B的过载指示符,则可以通过向上步长来增加发射功率,否则可以通过下降步长来减小发射功率。
    • 5. 发明授权
    • Inter-cell power control in the presence of fractional frequency reuse
    • 存在分数频率重用的单元间功率控制
    • US08712424B2
    • 2014-04-29
    • US12443780
    • 2007-10-30
    • Xiliang LuoDurga Prasad MalladiXiaoxia Zhang
    • Xiliang LuoDurga Prasad MalladiXiaoxia Zhang
    • H04B15/00
    • H04W52/24H04W16/02H04W24/02H04W52/146H04W52/225H04W52/241H04W52/247H04W52/343
    • System(s) and method(s) are provided for inter-cell power control in the presence of fractional frequency reuse in a wireless communication system. Transmission power control of a terminal (210); and ensuing inter-cell interference mitigation, is accomplished by receiving load indicators (23Oi) from non-serving sectors (246i), decoding those load indicators corresponding to the non-serving sectors that operate in the same frequency bands as the terminal, and adjusting the transmission power according to the states of the decoded load indicators in conjunction with the associated non-serving sector forward link signal-to-interference and-noise ratio at the terminal. The states of the load indicators reflect magnitudes of interference metrics with respect to threshold values. Load indicators can also be conveyed by the non-serving sector to a base station (260) serving the terminal through a backhaul (250) communication, and said base station can schedule an adjusted transmission power for the terminal.
    • 在无线通信系统中存在分数次频率重用的情况下,为单元间功率控制提供系统和方法。 终端(210)的传输功率控制; 并且随后进行小区间干扰减轻,是通过从非服务扇区(246i)接收负载指示符(230i)来完成的,解码对应于与终端在相同频带中工作的非服务扇区的那些负载指示符,并且调整 根据解码的负载指示符的状态结合在终端处的相关联的非服务扇区前向链路信号与干扰噪声比的发送功率。 负载指示器的状态反映相对于阈值的干扰度量的幅度。 负载指示符也可以由非服务扇区传送到通过回程(250)通信为终端服务的基站(260),并且所述基站可以为终端调度调整的传输功率。
    • 8. 发明申请
    • Inter-cell power control in the presence of fractional frequency reuse
    • 存在分数频率重用的单元间功率控制
    • US20100105406A1
    • 2010-04-29
    • US12443780
    • 2007-10-30
    • Xiliang LuoDurga Prasad MalladiXiaoxia Zhang
    • Xiliang LuoDurga Prasad MalladiXiaoxia Zhang
    • H04W72/12H04B17/00
    • H04W52/24H04W16/02H04W24/02H04W52/146H04W52/225H04W52/241H04W52/247H04W52/343
    • System(s) and method(s) are provided for inter-cell power control in the presence of fractional frequency reuse in a wireless communication system. Transmission power control of a terminal (210); and ensuing inter-cell interference mitigation, is accomplished by receiving load indicators (23Oi) from non-serving sectors (246i), decoding those load indicators corresponding to the non-serving sectors that operate in the same frequency bands as the terminal, and adjusting the transmission power according to the states of the decoded load indicators in conjunction with the associated non-serving sector forward link signal-to-interference and-noise ratio at the terminal. The states of the load indicators reflect magnitudes of interference metrics with respect to threshold values. Load indicators can also be conveyed by the non-serving sector to a base station (260) serving the terminal through a backhaul (250) communication, and said base station can schedule an adjusted transmission power for the terminal.
    • 在无线通信系统中存在分数次频率重用的情况下,为单元间功率控制提供系统和方法。 终端(210)的传输功率控制; 并且随后进行小区间干扰减轻,是通过从非服务扇区(246i)接收负载指示符(230i)来完成的,解码对应于与终端在相同频带中工作的非服务扇区的那些负载指示符,并且调整 根据解码的负载指示符的状态结合在终端处的相关联的非服务扇区前向链路信号与干扰噪声比的发送功率。 负载指示器的状态反映相对于阈值的干扰度量的幅度。 负载指示符也可以由非服务扇区传送到通过回程(250)通信为终端服务的基站(260),并且所述基站可以为终端调度调整后的传输功率。