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    • 1. 发明申请
    • METHOD AND DEVICE FOR LOCATING AT LEAST ONE TOUCH ON A TOUCH-SENSITIVE SURFACE OF AN OBJECT
    • 用于定位至少一个触摸的对象的触觉敏感表面的方法和设备
    • US20120120014A1
    • 2012-05-17
    • US13386257
    • 2010-06-30
    • Jean-Pierre NikolovskiMoustapha HafezYuan LiuNazih MechbalMichel Verge
    • Jean-Pierre NikolovskiMoustapha HafezYuan LiuNazih MechbalMichel Verge
    • G06F3/041
    • G06F3/0436G06F3/0416G06F3/04883G06F2203/04808
    • This method for locating at least one touch on a touch-sensitive surface of an object comprises the following steps: monitoring (100) of at least one touch by propagating (102), in the touch-sensitive surface of the object, elastic mechanical waves from at least one transmitting point of the object, and by detecting (104) said elastic mechanical waves in at least one reception point of the object, in order to obtain at least one sensed signal, and locating (200) at least one touch on the touch-sensitive surface of the object by comparing certain spectral characteristics of the sensed signal to a set of reference characteristics. The monitoring step (100) comprises measuring (104, 106) the sensed signal during a time interval (t3 ) starting during a transient phase of the propagation of the transmitted waves, for supplying, to said at least one reception point, information on radiation interfered with by said at least one touch.
    • 用于在对象的触敏表面上定位至少一个触摸的该方法包括以下步骤:通过在对象的触敏表面中传播(102)来监测(100)至少一个触摸的弹性机械波 从物体的至少一个发射点,并且通过在物体的至少一个接收点中检测(104)弹性机械波,以获得至少一个感测信号,并且定位(200)至少一个触摸 通过将感测到的信号的某些光谱特性与一组参考特征进行比较来实现对象的触敏表面。 监测步骤(100)包括在传输波的传播的瞬时阶段开始的时间间隔(t3)期间测量(104,106)感测信号,以向所述至少一个接收点提供关于辐射的信息 受到所述至少一个触摸的干扰。
    • 2. 发明授权
    • Method and device for locating at least one touch on a touch-sensitive surface of an object
    • 用于在物体的触敏表面上定位至少一个触摸的方法和装置
    • US08913039B2
    • 2014-12-16
    • US13386257
    • 2010-06-30
    • Jean-Pierre NikolovskiMoustapha HafezYuan LiuNazih MechbalMichel Verge
    • Jean-Pierre NikolovskiMoustapha HafezYuan LiuNazih MechbalMichel Verge
    • G09G5/00G06F3/043G06F3/041G06F3/0488
    • G06F3/0436G06F3/0416G06F3/04883G06F2203/04808
    • This method for locating at least one touch on a touch-sensitive surface of an object comprises the following steps: monitoring (100) of at least one touch by propagating (102), in the touch-sensitive surface of the object, elastic mechanical waves from at least one transmitting point of the object, and by detecting (104) said elastic mechanical waves in at least one reception point of the object, in order to obtain at least one sensed signal, and locating (200) at least one touch on the touch-sensitive surface of the object by comparing certain spectral characteristics of the sensed signal to a set of reference characteristics. The monitoring step (100) comprises measuring (104, 106) the sensed signal during a time interval (t3) starting during a transient phase of the propagation of the transmitted waves, for supplying, to said at least one reception point, information on radiation interfered with by said at least one touch.
    • 用于在对象的触敏表面上定位至少一个触摸的该方法包括以下步骤:通过在对象的触敏表面中传播(102)来监测(100)至少一个触摸的弹性机械波 从物体的至少一个发射点,并且通过在物体的至少一个接收点中检测(104)弹性机械波,以获得至少一个感测信号,并且定位(200)至少一个触摸 通过将感测到的信号的某些光谱特性与一组参考特征进行比较来实现对象的触敏表面。 监测步骤(100)包括在传输波的传播的瞬时阶段开始的时间间隔(t3)期间测量(104,106)感测信号,以向所述至少一个接收点提供关于辐射的信息 受到所述至少一个触摸的干扰。
    • 5. 发明授权
    • Method and system for multi-standby operation for a multi-SIM multi-standby communication device
    • 一种用于多SIM多待机通信设备的多待机操作方法和系统
    • US08874167B2
    • 2014-10-28
    • US12816782
    • 2010-06-16
    • Xiaoxin QiuYuan LiuYaxin CaoZhijun GongYongqian WangStephen Richards
    • Xiaoxin QiuYuan LiuYaxin CaoZhijun GongYongqian WangStephen Richards
    • H04B1/38H04W48/18H04W88/06
    • H04W48/18H04W8/183H04W88/06
    • A communication device comprises a single radio resource unit that is shared by a plurality of virtual modems (VMs), each uniquely associated with a single one of a plurality of SIM cards. Traffic related to the SIM cards are concurrently handled utilizing corresponding VMs. Available radio resource in the single radio resource unit are shared by the VMs based on corresponding VM states, namely, an active state, an idle state and a suspended state. VMs in an idle state concurrently monitor paging events and concurrently perform idle mode procedures such as location updating. VMs not related to an intended traffic are suspended. A VM related to the intended traffic is transitioned from an idle state to an active state to enable the communication for the intended traffic. Once the communication is complete, the suspended VMs are resumed to continue idle mode activities.
    • 通信设备包括由多个虚拟调制解调器(VM)共享的单个无线电资源单元,每个单独的无线电资源单元唯一地与多个SIM卡中的单个的SIM卡相关联。 使用相应的虚拟机同时处理与SIM卡有关的流量。 单个无线电资源单元中的可用无线电资源由VM根据相应的VM状态,即活动状态,空闲状态和挂起状态共享。 处于空闲状态的虚拟机同时监视寻呼事件并同时执行空闲模式过程,如位置更新。 与预期流量无关的虚拟机将被暂停。 与预期流量相关的虚拟机从空闲状态转换到活动状态,以实现预期流量的通信。 通信完成后,恢复暂停的虚拟机以继续空闲模式活动。