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    • 1. 发明申请
    • SELF-OPTIMIZING WIRELESS NETWORK
    • 自优优化无线网络
    • WO2011046705A1
    • 2011-04-21
    • PCT/US2010/048929
    • 2010-09-15
    • REVERB NETWORKSHUSSEIN, OsamaTRIGUI, Hafedh
    • HUSSEIN, OsamaTRIGUI, Hafedh
    • H04W24/00
    • H04W24/02H04W16/18H04W72/04
    • Optimizing cell sites or sectors in a wireless network including receiving network data regarding cell sites or sectors; determining a critical zone in which communication is degraded; determining best neighbor cell sites or sectors among the neighbor cell sites or sectors associated with the critical cell sites or sectors; determining if the critical cell sites or sectors in the critical zone have available resources for achieving a desired improvement in communications; determining if the best neighbor cell sites or sectors have available resources for achieving the desired improvement in communications; and altering wireless network parameters of the critical cell sites or sectors, or the best neighbor cells sites or sectors for achieving the desired improvement in communications. Altering wireless network parameters of the critical cell sites or sectors, or the best neighbor cell sites or sectors is performed continuously until the desired improvement in communications is achieved.
    • 优化无线网络中的小区站点或扇区,包括接收关于小区站点或扇区的网络数据; 确定通信降级的关键区域; 确定与关键小区站点或扇区相关联的相邻小区站点或扇区中的最佳邻居小区站点或扇区; 确定临界区中的关键小区站点或扇区是否具有用于实现通信期望改进的可用资源; 确定最佳相邻小区站点或扇区是否具有用于实现通信期望改进的可用资源; 以及改变关键小区站点或扇区或最佳邻居小区站点或扇区的无线网络参数,以实现所需的通信改进。 连续执行改变关键小区站点或扇区或最佳邻居小区站点或扇区的无线网络参数,直到达到期望的通信改进。
    • 2. 发明申请
    • SELF-OPTIMIZING NETWORK FOR FIXED WIRELESS ACCESS
    • 自适应无线接入自动优化网络
    • WO2011071587A1
    • 2011-06-16
    • PCT/US2010/050627
    • 2010-09-29
    • REVERB NETWORKSTRIGUI, Hafedh
    • TRIGUI, Hafedh
    • G06F15/00
    • H04W24/02H04B7/0408H04B7/0491H04W16/18H04W24/08H04W28/08
    • An embodiment of the invention relates to a method of modifying communication parameters of a wireless network, the wireless network having at least two antennas, and each of the antennas providing coverage to at least one sector. The method including obtaining measurement data for at least two sectors of the wireless network, determining, from the obtained measurement data, if a signal strength indicator of one or more sectors of the at least two sectors is at or below a target value, determining, if the one or more sectors is at or below the target value, a communication parameter to be applied to the wireless network such that the signal strength indicator of the one or more sectors is above the target value, and modifying the communication parameters of the wireless network such that the determined communication parameter is applied to the wireless network.
    • 本发明的实施例涉及一种修改无线网络的通信参数的方法,所述无线网络具有至少两个天线,并且每个天线向至少一个扇区提供覆盖。 该方法包括获得无线网络的至少两个扇区的测量数据,从所获得的测量数据确定所述至少两个扇区中的一个或多个扇区的信号强度指示符是否在目标值以下, 如果一个或多个扇区处于或低于目标值,则要应用于无线网络的通信参数,使得一个或多个扇区的信号强度指示符高于目标值,并修改无线的通信参数 网络,使得所确定的通信参数被应用于无线网络。
    • 6. 发明申请
    • DYNAMIC LOAD BALANCING
    • 动态负载平衡
    • WO2010121251A1
    • 2010-10-21
    • PCT/US2010/031603
    • 2010-04-19
    • TRIGUI, HafedhCUTHILL, RickKUSYK, Richard, G.
    • TRIGUI, HafedhCUTHILL, RickKUSYK, Richard, G.
    • G08C15/00
    • H04L41/5025H04W16/08H04W28/0289H04W28/18H04W64/00
    • A method, program, system and apparatus perform dynamic load balancing of coverage areas in a wireless communication network. The dynamic load balancing is performed by evaluating cell congestion based on location information of subscribers in the wireless communication network, collecting network parameters related to the wireless communication network and altering network parameters based on the evaluated cell congestion. After the network parameter is altered, the coverage areas are narrowed. Improvements in cell congestion and quality of server are then determined based on the narrowing of the coverage areas. Altering of the plurality of network parameters and evaluating of the cell congestion are performed continuously until a target quality of service is achieved.
    • 方法,程序,系统和装置对无线通信网络中的覆盖区域进行动态负载平衡。 通过基于无线通信网络中的用户的位置信息评估小区拥塞,基于评估的小区拥塞收集与无线通信网络相关的网络参数并改变网络参数来执行动态负载平衡。 更改网络参数后,覆盖区域变窄。 然后根据覆盖区域的变窄来确定服务器的小区拥塞和质量的改善。 连续执行多个网络参数的改变和小区拥塞的评估,直到达到目标服务质量。
    • 7. 发明申请
    • ASYMMETRICAL BEAMS FOR SPECTRUM EFFICIENCY
    • 不对称的光谱效率
    • WO2007106989A1
    • 2007-09-27
    • PCT/CA2007/000434
    • 2007-03-19
    • TENXC WIRELESS INC.TRIGUI, HafedhDEAN, Stuart J.LITVA, John
    • TRIGUI, HafedhDEAN, Stuart J.LITVA, John
    • H04Q7/36H01Q21/06H01Q21/28H04Q7/30
    • H04W16/24
    • A method and apparatus for increasing capacity and performance of a base station for a sectorized cellular wireless network is disclosed in which one of the sector antennas is replaced or supplanted by a novel sub-sector antenna that generates a plurality of asymmetrical sub-sector coverage areas that collectively substantially cover the coverage area of the replaced sector antenna. The use of asymmetrical coverage areas permits the total coverage area to closely approximate the symmetrical sector coverage area without creating excessively large sub-sector handover zones or introducing severe degradation in the network performance. This in turn permits the selective replacement of a single sector antenna rather than the wholesale replacement of all sector antennas in a region, leading to lower transitional costs and the ability to provide a focused approach to capacity planning.
    • 公开了一种用于增加用于扇区化的蜂窝无线网络的基站的容量和性能的方法和装置,其中扇区天线中的一个由新的子扇区天线替换或替换,该新的子扇区天线生成多个不对称的子扇区覆盖区域 它们共同地基本上覆盖被替换的扇形天线的覆盖区域。 使用不对称覆盖区域允许总覆盖区域紧密地近似于对称扇区覆盖区域,而不会产生过大的子扇区切换区域或引入网络性能的严重劣化。 这又允许选择性地更换单个扇区天线,而不是批量更换一个区域中的所有扇区天线,从而降低过渡成本,并提供集中的方法进行容量规划。