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    • 1. 发明申请
    • Processing Method for Group Resource Allocation
    • 组资源分配处理方法
    • US20120044892A1
    • 2012-02-23
    • US13263777
    • 2009-12-24
    • Yanfeng GuanWei XiaYing LiuPing QiuHuiying Fang
    • Yanfeng GuanWei XiaYing LiuPing QiuHuiying Fang
    • H04W72/04
    • H04W72/121H04W72/042
    • A processing method for group resource allocation comprises that: a base station establishes groups according to modulation and coding schemes and/or resource sizes (202), the modulation and coding schemes and/or resource sizes supported by the groups are static or quasi-static (204). With the present invention, the groups can be established based on modulation and coding schemes and/or resource sizes, and the modulation and coding schemes and/or resource sizes of the groups can be changed, compared with the prior art, the complexity of the group resource allocation method in the wireless communication system and the control overhead can be reduced, and the transmission bandwidth utilization of the wireless communication system can be improved.
    • 用于组资源分配的处理方法包括:基站根据调制和编码方案和/或资源大小(202)建立组,由组支持的调制和编码方案和/或资源大小是静态或准静态 (204)。 利用本发明,可以基于调制和编码方案和/或资源大小来建立组,并且可以改变组的调制和编码方案和/或资源大小,与现有技术相比,复杂度 无线通信系统中的群组资源分配方法和控制开销可以降低,可以提高无线通信系统的传输带宽利用率。
    • 4. 发明申请
    • Radio resource mapping method
    • 无线电资源映射方法
    • US20110223954A1
    • 2011-09-15
    • US13129472
    • 2009-11-17
    • Yanfeng GuanXiangyu LiuYing LiuHuiying FangHongyun Qu
    • Yanfeng GuanXiangyu LiuYing LiuHuiying FangHongyun Qu
    • H04W72/04
    • H04L5/00H04L5/0007H04L5/0044H04L5/0064H04L27/2602
    • A resource mapping method is provided, in which a wireless communication system maps subcarriers to resource units through external permutation and internal permutation, the external permutation comprises: performing the first permutation on n physical resource units in every N1 physical resource units, orderly selecting n1×N1 physical resource units from the n physical resource units obtained from the first permutation, and then performing the second permutation on the remaining n−n1×N1 physical resource units in every N2 physical resource units, wherein n, N1, and N2 are all integers greater than or equal to 1, and N1 is not equal to N2, and n1 is an integer greater than or equal to 0. Frequency selectivity gain and frequency diversity gain may be achieved through the present invention by enabling a base station to select a proper resource scheduling granularity and resource unit types, thereby improving the spectrum efficiency of the future wireless communication system.
    • 提供了一种资源映射方法,其中无线通信系统通过外部置换和内部置换将子载波映射到资源单元,外部置换包括:在每个N1个物理资源单元中对n个物理资源单元执行第一置换,有序地选择n1× 从第一置换获得的n个物理资源单元的N1个物理资源单元,然后对每个N2个物理资源单元中的剩余的n-n1×N1个物理资源单元执行第二置换,其中n,N1和N2都是整数 大于或等于1,并且N1不等于N2,并且n1是大于或等于0的整数。频率选择性增益和频率分集增益可以通过本发明通过使基站能够选择适当的 资源调度粒度和资源单元类型,从而提高未来无线通信系统的频谱效率。
    • 6. 发明授权
    • Radio resource mapping method
    • 无线电资源映射方法
    • US08818436B2
    • 2014-08-26
    • US13129472
    • 2009-11-17
    • Yanfeng GuanXiangyu LiuYing LiuHuiying FangHongyun Qu
    • Yanfeng GuanXiangyu LiuYing LiuHuiying FangHongyun Qu
    • H04W72/00H04B7/00H04W4/00H04L5/00
    • H04L5/00H04L5/0007H04L5/0044H04L5/0064H04L27/2602
    • A resource mapping method is provided, in which a wireless communication system maps subcarriers to resource units through external permutation and internal permutation, the external permutation comprises: performing the first permutation on n physical resource units in every N1 physical resource units, orderly selecting n1×N1 physical resource units from the n physical resource units obtained from the first permutation, and then performing the second permutation on the remaining n−n1×N1 physical resource units in every N2 physical resource units, wherein n, N1, and N2 are all integers greater than or equal to 1, and N1 is not equal to N2, and n1 is an integer greater than or equal to 0. Frequency selectivity gain and frequency diversity gain may be achieved through the present invention by enabling a base station to select a proper resource scheduling granularity and resource unit types, thereby improving the spectrum efficiency of the future wireless communication system.
    • 提供了一种资源映射方法,其中无线通信系统通过外部置换和内部置换将子载波映射到资源单元,外部置换包括:在每个N1个物理资源单元中对n个物理资源单元执行第一置换,有序地选择n1× 从第一置换获得的n个物理资源单元的N1个物理资源单元,然后对每个N2个物理资源单元中的剩余的n-n1×N1个物理资源单元执行第二置换,其中n,N1和N2都是整数 大于或等于1,并且N1不等于N2,并且n1是大于或等于0的整数。频率选择性增益和频率分集增益可以通过本发明通过使基站能够选择适当的 资源调度粒度和资源单元类型,从而提高未来无线通信系统的频谱效率。
    • 9. 发明申请
    • METHOD AND SYSTEM FOR PHYSICAL RESOURCES CONFIGURATION AND SIGNAL TRANSMISSION WHEN COMMUNICATION SYSTEMS COEXIST
    • 通信系统共享时的物理资源配置与信号传输方法与系统
    • US20130028151A1
    • 2013-01-31
    • US13639023
    • 2010-11-01
    • Ding NingYanfeng GuanHuiying Fang
    • Ding NingYanfeng GuanHuiying Fang
    • H04J3/00H04W4/00
    • H04W16/14H04B7/2643H04L5/14H04L27/2602
    • A method and system for configuring physical resource and signal transmission when communication systems coexist are provided. The method includes: configuring physical resources of the Wimax 16e frame according to LTE frame configuration information by following modes: configuring the number of downlink symbols in the Wimax 16e frame and shift time of the Wimax 16e frame relative to the half frame of the LTE frame according to the condition that the downlink region of the Wimax 16e frame is included in the downlink region of the LTE frame in time domain; and configuring the number of uplink symbols and time length of Transmission/Receive Transition Gap (TTG) in the Wimax 16e frame according to the condition that the uplink region of the Wimax 16e frame is included in the uplink region of the LTE frame in time domain; wherein, the uplink and downlink handover period of LTE frame is 5 ms.
    • 提供了一种用于在通信系统共存时配置物理资源和信号传输的方法和系统。 该方法包括:通过以下模式,根据LTE帧配置信息配置Wimax 16e帧的物理资源:配置Wimax 16e帧中的下行符号数目和Wimax 16e帧相对于LTE帧半帧的移位时间 根据Wimax 16e帧的下行链路区域在时域中包含在LTE帧的下行链路区域中的条件, 并且根据Wimax 16e帧的上行链路区域包括在LTE帧的上行链路区域中的条件,配置Wimax 16e帧中的发送/接收转换间隙(TTG)的上行链路符号的数量和时间长度 ; 其中,LTE帧的上行链路和下行链路切换周期为5ms。
    • 10. 发明授权
    • Method and system for physical resources configuration and signal transmission when communication systems coexist
    • 通信系统共存时物理资源配置和信号传输的方法和系统
    • US09191825B2
    • 2015-11-17
    • US13639023
    • 2010-11-01
    • Ding NingYanfeng GuanHuiying Fang
    • Ding NingYanfeng GuanHuiying Fang
    • H04W16/14H04B7/26H04L5/14H04L27/26
    • H04W16/14H04B7/2643H04L5/14H04L27/2602
    • A method and system for configuring physical resource and signal transmission when communication systems coexist are provided. The method includes: configuring physical resources of the Wimax 16e frame according to LTE frame configuration information by following modes: configuring the number of downlink symbols in the Wimax 16e frame and shift time of the Wimax 16e frame relative to the half frame of the LTE frame according to the condition that the downlink region of the Wimax 16e frame is included in the downlink region of the LTE frame in time domain; and configuring the number of uplink symbols and time length of Transmission/Receive Transition Gap (TTG) in the Wimax 16e frame according to the condition that the uplink region of the Wimax 16e frame is included in the uplink region of the LTE frame in time domain; wherein, the uplink and downlink handover period of LTE frame is 5 ms.
    • 提供了一种用于在通信系统共存时配置物理资源和信号传输的方法和系统。 该方法包括:通过以下模式,根据LTE帧配置信息配置Wimax 16e帧的物理资源:配置Wimax 16e帧中的下行符号数目和Wimax 16e帧相对于LTE帧半帧的移位时间 根据Wimax 16e帧的下行链路区域在时域中包含在LTE帧的下行链路区域中的条件, 并且根据Wimax 16e帧的上行链路区域包括在LTE帧的上行链路区域中的条件,配置Wimax 16e帧中的发送/接收转换间隙(TTG)的上行链路符号的数量和时间长度 ; 其中,LTE帧的上行链路和下行链路切换周期为5ms。