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    • 3. 发明授权
    • 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
    • US07668134B2
    • 2010-02-23
    • US10994844
    • 2004-11-22
    • Patrick A. HoseinSrinivasan BalasubramanianRath Vannithamby
    • Patrick A. HoseinSrinivasan BalasubramanianRath Vannithamby
    • H04W4/00
    • 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。
    • 5. 发明授权
    • Method and apparatus for transporting TDM voice traffic over an ATM network
    • 通过ATM网络传输TDM语音流量的方法和装置
    • US06735191B1
    • 2004-05-11
    • US09268659
    • 1999-03-16
    • Patrick A. Hosein
    • Patrick A. Hosein
    • H04L1256
    • H04L12/6418H04L2012/6445H04L2012/6456H04L2012/6481H04L2012/6494
    • A method and apparatus are provided to transport TDM voice traffic over an ATM network. A first plurality of TDM voice traffic circuits, such as T1 or E1 circuits, are multiplexed to create a first rt-VBR virtual circuit such that the bandwidth of the first rt-VBR virtual circuit is not limited. A second plurality of TDM voice traffic circuits are multiplexed to create a second rt-VBR virtual circuit such that the bandwidth of the second rt-VBR virtual circuit is not limited. This may be done by AAL2 multiplexing with substantially large SCR, PCR and MBS values. The first and second rt-VBR virtual circuits are combined for transport over a link in the ATM network. An overload and/or admission control process may be performed based on the ATM network link utilization. The TDM voice traffic AAL2 multiplexing uses silence suppression and may or may not use voice compression.
    • 提供了一种通过ATM网络传输TDM话音业务的方法和装置。 第一多个TDM语音业务电路(例如T1或E1电路)被多路复用以创建第一rt-VBR虚拟电路,使得第一rt-VBR虚拟电路的带宽不受限制。 第二多个TDM语音业务电路被多路复用以创建第二rt-VBR虚拟电路,使得第二rt-VBR虚拟电路的带宽不受限制。 这可以通过具有基本上大的SCR,PCR和MBS值的AAL2复用来完成。 组合第一和第二rt-VBR虚拟电路以通过ATM网络中的链路进行传输。 可以基于ATM网络链路利用来执行过载和/或准入控制过程。 TDM语音业务AAL2复用使用静音抑制,并且可以或可以不使用语音压缩。
    • 6. 发明授权
    • Common rate control method for reverse link channels in CDMA networks
    • CDMA网络中反向链路信道的通用速率控制方法
    • US07616660B2
    • 2009-11-10
    • US10876979
    • 2004-06-25
    • Patrick A. HoseinTao Wu
    • Patrick A. HoseinTao Wu
    • H04J3/22
    • H04W28/22
    • A radio base station transmits periodic load indications based on the measured reverse link load to a plurality of mobile stations transmitting on a reverse link channel. If the measure reverse link load is within a first predetermined range, the radio base stations transmits a load indication instructing mobile stations transmitting on the reverse link to change their transmission rate probabilistically. If the reverse link load is within second predetermined range outside the first predetermined range, the radio base station transmits a load indication instructing mobile stations transmitting on the reverse link to change their transmission rate deterministically.
    • 无线电基站基于所测量的反向链路负载向在反向链路信道上发送的多个移动台发送周期性负载指示。 如果测量反向链路负载在第一预定范围内,则无线电基站发送指示在反向链路上发送的移动台的负载指示以概率地改变其传输速率。 如果反向链路负载在第一预定范围之外的第二预定范围内,则无线电基站发送指示在反向链路上发送的移动台的确定性地改变其传输速率的负载指示。
    • 7. 发明授权
    • Reverse link scheduler for CDMA networks
    • CDMA网络的反向链路调度器
    • US07466669B2
    • 2008-12-16
    • US10713763
    • 2003-11-14
    • Patrick A. Hosein
    • Patrick A. Hosein
    • H04B7/00
    • H04W28/02H04W28/22H04W72/121
    • A base station (BS) is configured to support a plurality of mobile stations on the reverse link by selectively designating one or more of them as members in a rate-controlled set. Members follow the common rate control commands broadcast by the BS, while non-members do not. The non-members preferably fall back to a minimum data rate. Set members each provide feedback to the BS indicating whether the member is “mobile-limited” wherein it cannot increase its reverse link data rate even if commanded to do so by the BS, or whether the member is “command-limited” wherein the member could increase its data rate but is not permitted to do so by the BS. The BS dynamically adjusts membership in the set to maintain a balance between having too many mobile-limited or command-limited members, since either condition is inefficient. The BS also may adjust membership by attempting to equalize membership times in the set.
    • 基站(BS)被配置为通过选择性地将它们中的一个或多个指定为速率控制集合中的成员来支持反向链路上的多个移动台。 会员按照BS广播的通用速率控制命令,而非成员则不遵循。 非成员优选地回退到最小数据速率。 设置成员每个向BS提供反馈,指示该成员是否是“移动受限制”,其中即使BS由BS指令也不能增加其反向链路数据速率,或者该成员是否是“命令限制”,其中该成员 可能会增加其数据速率,但BS不允许这样做。 BS动态地调整集合中的成员资格,以保持太多的移动受限制或命令限制的成员之间的平衡,因为这两个条件都是无效的。 BS也可以通过尝试平衡组中的会员时间来调整会员资格。
    • 8. 发明授权
    • Per user rate control for the reverse link in CDMA networks
    • CDMA网络中的反向链路的每用户速率控制
    • US07554954B2
    • 2009-06-30
    • US10731909
    • 2003-12-10
    • Patrick A. HoseinTao Wu
    • Patrick A. HoseinTao Wu
    • H04B7/216H04W72/00
    • H04W52/267H04L1/0002H04L1/0022H04L1/0025H04W8/20H04W28/22H04W52/367
    • A method and apparatus enables a base station to control the reverse link data rates of the mobile stations. Such control may be used to improve reverse link throughput, and such improvements may be balanced against fairness of service interests. Broadly, a radio base station (RBS) makes per-mobile station rate control decisions in each rate control interval based on each mobile station's desired rate and past reverse link throughput. These values may be used to compute a priority value for each mobile station, which values are then used to prioritize the mobile stations in rank order. Rate control decisions are made for the mobile stations in rank order based on their desired rates and remaining reverse link capacity. In one embodiment, the mobile stations provide path loss information to the RBS, and it computes each mobile station's desired rate as the mobile's achievable rate assuming it transmitted at maximum power.
    • 一种方法和装置使得基站能够控制移动台的反向链路数据速率。 可以使用这种控制来提高反向链路吞吐量,并且这些改进可以平衡服务兴趣的公平性。 广泛地讲,无线电基站(RBS)根据每个移动台的期望速率和过去的反向链路吞吐量,在每个速率控制间隔中进行每移动站速率控制决定。 这些值可以用于计算每个移动台的优先级值,然后这些值用于按照排序顺序对移动台进行优先级排序。 基于其期望的速率和剩余的反向链路容量,按照等级顺序对移动台进行速率控制决定。 在一个实施例中,移动站向RBS提供路径损耗信息,并且它以每个移动站的最大功率发送的可实现速率来计算每个移动台的期望速率。