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    • 1. 发明授权
    • Dynamic wireless coverage area capacity allocation based on vehicular traffic monitoring
    • 基于车辆交通监控的动态无线覆盖区域容量分配
    • US08874123B1
    • 2014-10-28
    • US13052299
    • 2011-03-21
    • Jason P. SiggMaulik K. ShahJasinder P. Singh
    • Jason P. SiggMaulik K. ShahJasinder P. Singh
    • H04W72/00
    • H04W16/08H04W72/048
    • Described herein is a method and corresponding radio access network (RAN) arranged to dynamically control, based on vehicular traffic monitoring data, allocations of network capacity in a wireless coverage area. More particularly, according to the method the RAN may receive vehicular traffic monitoring data, perhaps from a service provider such as a vehicular traffic monitoring agency. Based on the received vehicular traffic monitoring data, the RAN may adjust a limit on extent of capacity allocated to new call originations and/or a limit on extent of capacity allocated to handoffs in a wireless coverage area of the RAN. According to one aspect of the method, the RAN may adjust network capacity allocations in the wireless coverage area based on a specified vehicular traffic speed. According to another aspect of the method, the RAN may adjust network capacity allocations in the wireless coverage area based on a specified vehicular traffic obstruction.
    • 这里描述了一种方法和相应的无线电接入网络(RAN),其被布置为基于车辆交通监控数据来动态地控制无线覆盖区域中的网络容量的分配。 更具体地,根据该方法,RAN可以接收来自诸如车辆交通监控机构的服务提供商的车辆交通监控数据。 根据所接收到的车辆交通监控数据,RAN可以调整分配给新的呼叫发起的容量的范围和/或分配给RAN的无线覆盖区域中的切换的容量的限制。 根据该方法的一个方面,RAN可以基于指定的车辆交通速度来调整无线覆盖区域中的网络容量分配。 根据该方法的另一方面,RAN可以基于指定的车辆交通障碍来调整无线覆盖区域中的网络容量分配。
    • 2. 发明授权
    • Method and system for spread spectrum signal acquisition without a pilot signal
    • 没有导频信号的扩频信号采集方法和系统
    • US08576736B1
    • 2013-11-05
    • US12943141
    • 2010-11-10
    • Jason P. SiggAshish BhanMaulik K. ShahJasinder P. Singh
    • Jason P. SiggAshish BhanMaulik K. ShahJasinder P. Singh
    • H04L5/22
    • H04B1/7075H04L27/32
    • A cellular wireless communication network transmits spread spectrum signals that are spread by a pseudonoise (PN) code with any of a plurality of PN offsets, such that different coverage areas use different PN offsets. In each coverage area, the network transmits a plurality of forward link channels, each defined by a respective Walsh code, without transmitting a pilot signal. A wireless communication device (WCD) begins operating in a given coverage area and determines the PN offset used in the given coverage area by receiving a forward link signal having a Walsh code of a sync channel, paging channel, or other channel that transmits a broadcast message. The WCD selects a target bit sequence that would be expected to be included in the broadcast message. The WCD finds an effective PN offset that enables the WCD to despread the forward link signal and recover the target bit sequence.
    • 蜂窝无线通信网络发送由伪噪声(PN)码与多个PN偏移中的任何一个扩频的扩频信号,使得不同的覆盖区域使用不同的PN偏移。 在每个覆盖区域中,网络发送多个前向链路信道,每个前向链路信道各自由相应的沃尔什码定义,而不发送导频信号。 无线通信设备(WCD)开始在给定的覆盖区域中工作,并且通过接收具有同步信道的沃尔什码,寻呼信道或发送广播的其他信道的前向链路信号来确定在给定覆盖区域中使用的PN偏移 信息。 WCD选择将被预期包括在广播消息中的目标比特序列。 WCD找到有效的PN偏移,使得WCD能够解扩前向链路信号并恢复目标比特序列。
    • 3. 发明授权
    • Resource allocation based on wireless device motion specified in connection request
    • 基于连接请求中指定的无线设备运动的资源分配
    • US08521168B1
    • 2013-08-27
    • US13085893
    • 2011-04-13
    • Jason P. SiggAshish BhanMaulik K. ShahJasinder P. Singh
    • Jason P. SiggAshish BhanMaulik K. ShahJasinder P. Singh
    • H04W36/00
    • H04W28/26
    • A method and corresponding system is disclosed for enhanced resource allocation in a wireless communication system. According to the method, when an idle wireless device seeks to initiate a call in a given coverage area, the device will provide with its initiation request to the serving radio network a motion specification indicating an extent of movement of the device, based on the device's tracking of its own movement. The network will then use that motion specification provided with the initiation request as a basis to determine whether to select a resource to allocate for the call in the given coverage area based on resource implementation in at least one neighboring coverage area or whether to instead select the resource to allocate without regard to resource allocation in the at least one neighboring coverage area.
    • 公开了一种用于在无线通信系统中增强资源分配的方法和相应的系统。 根据该方法,当空闲的无线设备寻求在给定的覆盖区域内发起呼叫时,设备将根据该设备的服务向服务无线电网络提供指示设备的移动程度的运动规范 跟踪自己的运动。 然后,网络将使用提供有发起请求的运动规范作为基础,以确定是否基于至少一个相邻覆盖区域中的资源实现来选择在给定覆盖区域内为呼叫分配的资源,或者是否选择 资源,而不考虑在至少一个相邻覆盖区域中的资源分配。