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    • 21. 发明授权
    • Method for interference suppression
    • 干扰抑制方法
    • US08369863B2
    • 2013-02-05
    • US13464339
    • 2012-05-04
    • Xiaodong XuPing ZhangDan HuHongjia LiYi LiXiaofeng TaoQimei CuiSai WangQiang Wang
    • Xiaodong XuPing ZhangDan HuHongjia LiYi LiXiaofeng TaoQimei CuiSai WangQiang Wang
    • H04W72/00
    • H04W72/082H04W72/0433H04W84/045
    • An interference suppression method is provided. A method includes the following steps: determining, by a Femtocell, a set of Femtocells which generate interference with said Femtocell based on information measured by and feedbacked from subscribers which are served by said Femtocell, and delivering the cell IDs of all Femtocells in said set to a Femtocell gateway; establishing, by the Femtocell gateway, a relationship graph on interference among Femtocells according to information delivered from the Femtocells, and clustering the Femtocells based on said relationship graph; determining the range influenced by each Femtocell cluster; allocating resources to the Femtocells in each isolated cluster or in the range influenced by each cluster. It may ensure liable communications of Femtocell subscribers as possible, and/or may maximize spectrum efficiency and system capacity of the Femtocell layer as possible.
    • 提供了一种干扰抑制方法。 一种方法包括以下步骤:通过毫微微蜂窝基于由所述毫微微蜂窝服务的由用户测量和反馈的信息产生干扰的毫微微小区的集合来确定毫微微小区,并且将所有毫微微小区的小区ID传送到所述组中 到毫微微蜂窝网关; 通过毫微微蜂窝网关,根据从毫微微蜂窝小区传送的信息建立毫微微小区干扰关系图,并根据所述关系图聚类毫微微小区; 确定每个毫微微蜂窝群体影响的范围; 将资源分配给每个孤立集群中的毫微微小区,或者在受每个集群影响的范围内。 它可能确保毫微微蜂窝用户的可靠通信,和/或可能最大限度地提高毫微微蜂窝层的频谱效率和系统容量。
    • 25. 发明申请
    • SYSTEM AND METHOD FOR SUPPORTING VOIP AND CS TELEPHONE
    • 支持VOIP和CS电话的系统和方法
    • US20110299471A1
    • 2011-12-08
    • US13201631
    • 2009-12-21
    • Qiang Wang
    • Qiang Wang
    • H04W4/00H04L12/66
    • H04M7/0057H04L65/1059
    • The present invention discloses a system for supporting Voice over Internet Protocol (VOIP) and Circuit Switch (CS) telephone. The system includes a terminal gateway device, a wireless broadband module, a Subscriber Line Interface Circuit (SLIC), a SWITCH and a telephone. The present invention also discloses a method for supporting VOIP and CS telephone. By adopting the system and the method of the present invention, a subscriber can enjoy different voice services on the same telephone according to different service scenes, and a mobile operator can deploy a corresponding service in accordance with specific conditions; the present invention enhances the value-adding capability and saves communication cost.
    • 本发明公开了一种用于支持互联网语音协议(VOIP)和电路交换(CS)电话的系统。 该系统包括终端网关设备,无线宽带模块,用户线接口电路(SLIC),SWITCH和电话。 本发明还公开了一种用于支持VOIP和CS电话的方法。 通过采用本发明的系统和方法,用户可以根据不同的业务场景在同一电话上享受不同的语音业务,移动运营商可以根据具体情况部署相应的业务; 本发明提高了增值能力并节省了通信成本。
    • 27. 发明申请
    • TRIBOCHARGE TEST FIXTURE
    • TRIBOCHARGE测试仪器
    • US20110148427A1
    • 2011-06-23
    • US13059869
    • 2009-08-26
    • Xin HuangJun HuQiang Wang
    • Xin HuangJun HuQiang Wang
    • G01R29/12
    • G01N27/60G01N33/442
    • A fixture can include a test fixture that holds an object whose electrostatic charge characteristics are to be measured, means for moving a piece of rubbing material into contact with the object, and means for rubbing a surface of the object. A method for measuring the electrostatic charge characteristics of an object using a test fixture can include: placing the object in the test fixture, moving a piece of rubbing material into contact with the object and rubbing a surface of the object with the piece of rubbing material for a period of time. The rubbing causes an electrostatic charge to be built up on the surface of the object. The electrostatic charge characteristics of the object can be measured and the measured electrostatic charge characteristics of the object can be displayed.
    • 固定装置可以包括固定要测量其静电荷特性的物体的测试夹具,用于将一块摩擦材料移动到与物体接触的装置,以及用于摩擦物体表面的装置。 使用测试夹具测量物体的静电电荷特性的方法可以包括:将物体放置在测试夹具中,使一块摩擦材料与物体接触并用该摩擦材料摩擦物体的表面 一段时间。 摩擦会导致在物体表面上形成静电电荷。 可以测量物体的静电电荷特性,并且可以显示物体的测量的静电电荷特性。
    • 29. 发明授权
    • Fast signature scan
    • 快速签名扫描
    • US07870161B2
    • 2011-01-11
    • US12254676
    • 2008-10-20
    • Qiang Wang
    • Qiang Wang
    • G06F17/20G06F15/16
    • G06K9/00026G06F17/30587G06F17/30985G06F21/564G06K9/00087G06K9/62H04L63/0227H04L63/1416
    • Systems and methods for scanning signatures in a string field. In one implementation, the invention provides a method for signature scanning. The method includes processing one or more signatures into one or more formats that include one or more fingerprints and one or more follow-on search data structures for each fixed-size signature or signature substring such that the number of fingerprints for each fixed-size signature or signature substring is equal to a step size for a signature scanning operation and the particular fixed-size signature or signature substring is identifiable at any location within any string fields to be scanned, receiving a particular string field, identifying any signatures included in the particular string field including scanning for the fingerprints for each scan step size and searching for the follow-on search data structures at the locations where one or more fingerprints are found, and outputting any identified signatures.
    • 用于扫描字符串字段中的签名的系统和方法。 在一个实现中,本发明提供了一种用于签名扫描的方法。 该方法包括将一个或多个签名处理成一个或多个格式,其包括一个或多个指纹以及用于每个固定大小签名或签名子串的一个或多个后续搜索数据结构,使得每个固定大小签名的指纹数 或签名子字符串等于签名扫描操作的步长,并且特定固定大小签名或签名子串可在要扫描的任何字符串字段内的任何位置识别,接收特定字符串字段,识别特定字符串中包括的任何签名 字符串字段,包括扫描每个扫描步长的指纹,并在找到一个或多个指纹的位置搜索后续搜索数据结构,并输出任何识别的签名。