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    • 2. 发明申请
    • INTER-RADIO ACCESS TECHNOLOGY INTERFERENCE COORDINATION FOR MULTI-STANDARD RADIO ACCESS NETWORKS
    • 多标准无线接入网络的无线射频接入技术干扰协调
    • US20140044095A1
    • 2014-02-13
    • US13569776
    • 2012-08-08
    • Xiao-Dong LIPatrick LIE CHIN CHEONGCarl CAO
    • Xiao-Dong LIPatrick LIE CHIN CHEONGCarl CAO
    • H04W72/04H04W36/00H04W4/00
    • H04W36/20H04W16/14H04W52/146H04W52/40H04W72/1215H04W72/1226
    • A method and system for coordinated interference suppression in a communication system. The communication system implements at least a first radio access technology via a first base station and a second radio access technology via a second base station. The first and second radio access technologies differ from one another. Information relating to an interference signal received at the first base station via the first radio access technology is received at the second base station from a first device associated with the first base station. At a second device associated with the second base station, an interfering user equipment accessing the second base station via the second radio access technology is identified. The identification is based on the information received from the first device associated with the first base station. Interference caused by the identified interfering user equipment is suppressed by the second base station.
    • 一种通信系统中协调干扰抑制的方法和系统。 通信系统经由第一基站和第二无线接入技术经由第二基站实现至少第一无线接入技术。 第一和第二无线电接入技术彼此不同。 通过第一无线电接入技术在第一基站接收的与干扰信号相关的信息在第二基站从与第一基站相关联的第一设备接收。 在与第二基站相关联的第二设备处,识别通过第二无线接入技术接入第二基站的干扰用户设备。 该识别基于从与第一基站相关联的第一设备接收的信息。 由所识别的干扰用户设备引起的干扰被第二基站抑制。
    • 3. 发明申请
    • RESOURCE ALLOCATION IN AN ORTHOGONAL FREQUENCY DIVISION MULTIPLEXING SYSTEM
    • 资源分配在正交频分复用系统中
    • US20130188564A1
    • 2013-07-25
    • US13354652
    • 2012-01-20
    • Derek YUPatrick LIE CHIN CHEONGRoger MAH
    • Derek YUPatrick LIE CHIN CHEONGRoger MAH
    • H04W72/08
    • H04W72/1247H04W72/1226
    • A scheduler performs per sub-band prioritization allocation of sub-bands to user terminals to generate a pre-allocation schedule. The prioritization is performed independently for each sub-band. The resulting pre-allocation schedule indicates the relative priorities of the user terminals for each sub-band taking into account the channel conditions and specific needs of the user terminals. Based on the pre-allocation schedule, the scheduler can more efficiently allocate the radio resources to the user terminals based on the channel conditions and the specific needs of the user terminals. The scheduling approach is suitable for parallel computing architectures. The use of a parallel computing architecture increases MIPS (million instructions per second) capacity and allows faster scheduling in order to meet stringent real-time constraints.
    • 调度器对用户终端执行子带的每个子带优先分配子带以产生预分配调度。 每个子带独立地执行优先级。 考虑到信道条件和用户终端的具体需要,所得到的预分配调度表示每个子带的用户终端的相对优先级。 基于预分配时间表,调度器可以基于信道条件和用户终端的具体需要,更有效地将无线资源分配给用户终端。 调度方法适用于并行计算架构。 并行计算架构的使用增加了MIPS(每秒百万条指令)容量,并允许更快的调度,以满足严格的实时限制。