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    • 4. 发明申请
    • SCHEDULED AND AUTONOMOUS TRANSMISSION AND ACKNOWLEDGEMENT
    • 调度和自动传输和确认
    • WO2004075468A2
    • 2004-09-02
    • PCT/US2004/004786
    • 2004-02-18
    • QUALCOMM INCORPORATEDCHEN, TaoTIEDEMANN, Edward G., Jr.JAIN, Avinash
    • CHEN, TaoTIEDEMANN, Edward G., Jr.JAIN, Avinash
    • H04L
    • H04W52/286H04L1/18H04W72/042H04W72/1205H04W74/02
    • Techniques for efficient signaling to and from a plurality of mobile stations are disclosed. In one embodiment, a subset of mobile stations may be allocated a portion (350) of the shared resource with one or more individual access grants (370), another subset may be allocated a portion of the shared resource with a single common grant (370), and yet another subset may be allowed to use a portion of the shared resource without any grant. In another embodiment, an acknowledge and continue command is used to extend all or a subset of the previous grants without the need for additional requests and grants, and their associated overhead. In one embodiment, a traffic to pilot ratio (T/P) is used to allocate a portion of the shared resource, allowing a mobile station flexibility in selecting its transmission format based on T/P.
    • 公开了用于向多个移动台进行有效信令的技术。 在一个实施例中,移动站的子集可以被分配具有一个或多个单独访问许可(370)的共享资源的一部分(350),另一个子集可以用单个公共授权(370 ),并且可以允许另一子集在没有任何授权的情况下使用共享资源的一部分。 在另一个实施例中,确认和继续命令用于扩展先前授权的全部或一个子集,而不需要额外的请求和授权以及它们的相关开销。 在一个实施例中,业务与导频比(T / P)用于分配共享资源的一部分,允许移动台灵活地基于T / P选择其传输格式。
    • 9. 发明申请
    • DYNAMIC CHANNELIZATION CODE ALLOCATION
    • 动态通道代码分配
    • WO2003103331A1
    • 2003-12-11
    • PCT/US2003/016054
    • 2003-05-23
    • QUALCOMM, INCORPORATED
    • WILLENEGGER, SergeTIEDEMANN, Edward G., Jr.CHEN, Tao
    • H04Q7/38
    • H04J13/18H04B2201/70703H04J13/004H04W28/06H04W28/22H04W72/0466
    • Techniques for efficient allocation of channelization codes are disclosed. In one aspect, a dedicated data channel is partitioned into a primary channel and a secondary channel (610). The rate of the primary channel is a relatively low fixed rate. The rate of the secondary channel varies over time in accordance with the rate of the dedicated channel data. In another aspect, a channelization code indicator is transmitted in the primary channel to identify the secondary channel. In yet another aspect, more than one secondary channel may be deployed. Various other aspects are also presented. These aspects have the benefit of efficient code resource allocation, resulting in increased support for users/and or channels, as well as increased system capacity.
    • 公开了用于有效分配信道化码的技术。 在一个方面,专用数据信道被划分为主信道和次信道(610)。 主要渠道的比率是相对较低的固定利率。 次级通道的速率根据专用通道数据的速率随时间而变化。 在另一方面,在主信道中发送信道化码指示符以识别次信道。 在另一方面,可以部署多于一个的次级信道。 还提出了各种其他方面。 这些方面有利于高效的代码资源分配,从而增加对用户/或渠道的支持,以及增加的系统容量。