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    • 7. 发明申请
    • Optimal frequency of walsh mask broadcast for forward high-speed packet data channels
    • 用于正向高速分组数据信道的沃尔什掩模广播的最佳频率
    • US20050195759A1
    • 2005-09-08
    • US10994844
    • 2004-11-22
    • Patrick HoseinSrinivasan BalasubramanianRath Vannithamby
    • Patrick HoseinSrinivasan BalasubramanianRath Vannithamby
    • H04B7/26H04J11/00H04B7/00
    • H04B7/264
    • A base station in a wireless communication network multi-codes a shared packet data channel using a continually changing set of spreading codes, and dynamically updates the transmission frequency of messages identifying the spreading codes to be used for that multi-coding based on tracking the net gain in data throughput for the shared channel that is obtained by transmitting such messages. In a 1xEV-DV network context, for example, a Walsh code in the defined Walsh code space that is not contiguous with the Walsh codes currently allocated to multi-coding the 1xEV-DV Forward Packet Data Channel (F-PDCH) generally remains unavailable for such use until an updated Walsh Mask Broadcast (WMB) message is transmitted to the mobile stations being served on the F-PDCH. The base station thus is configured to determine the frequency at which to send such messages and thereby make the unavailable codes available for multi-coding use.
    • 无线通信网络中的基站使用不断变化的扩展码组来对共享分组数据信道进行多码编码,并且基于跟踪网络来动态地更新标识用于该多重编码的扩展码的消息的发送频率 通过发送这样的消息获得的共享信道的数据吞吐量增益。 在1xEV-DV网络环境中,例如,与当前分配给1xEV-DV转发分组数据信道(F-PDCH)的多编码的沃尔什码不连续的所定义的沃尔什码空间中的沃尔什码通常保持不可用 用于这种使用,直到更新的沃尔什屏蔽广播(Walsh Mask Broadcast,WMB)消息被发送到在F-PDCH上服务的移动台。 因此,基站被配置为确定发送这样的消息的频率,从而使不可用代码可用于多编码使用。
    • 10. 发明申请
    • Method and apparatus for congestion control in high speed wireless packet data networks
    • 用于高速无线分组数据网络拥塞控制的方法和装置
    • US20050164709A1
    • 2005-07-28
    • US10954515
    • 2004-09-30
    • Srinivasan BalasubramanianRath VannithambyYoung Yoon
    • Srinivasan BalasubramanianRath VannithambyYoung Yoon
    • H04L12/28H04L12/56H04M1/00H04W36/06H04W36/08H04W36/18H04W36/22
    • H04L47/14H04L47/10H04L47/11H04L47/125H04W36/22H04W48/20
    • A wireless communication network includes a base station system that transmits sector congestion information to influence mobile station sector selection processing. In an exemplary embodiment, where at least some of the mobile stations being supported by the network autonomously select the network sector from which they wish to receive forward link packet data transmissions, an exemplary base station influences that sector selection processing by transmitting congestion information on a per sector basis. Complementing that transmission by the network, an exemplary mobile station incorporates consideration of the sector congestion information into its autonomous sector selection processing logic. Thus, where potentially large numbers of mobile stations individually select the “best” sector from a candidate set of sectors, the network can perform load balancing by advertising sector congestion levels, so that mobile stations can choose (or avoid choosing) a given sector based at least in part of the congestion information.
    • 无线通信网络包括发送扇区拥塞信息以影响移动台扇区选择处理的基站系统。 在示例性实施例中,由网络支持的至少一些移动站自主地选择希望从其接收前向链路分组数据传输的网络扇区,示例性基站通过在一个或多个网络上发送拥塞信息来影响该扇区选择处理 每个部门的基础。 作为对网络的传输的补充,示例性移动站将扇区拥塞信息的考虑结合到其自主扇区选择处理逻辑中。 因此,在潜在的大量移动站从候选的扇区组中分别选择“最佳”扇区的情况下,网络可以通过广告扇区拥塞水平来执行负载平衡,使得移动站可以选择(或避免选择)给定扇区 至少部分拥塞信息。