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    • 1. 发明申请
    • PROXIMITY DETECTION VIA MAGNETIC RESONANCE COUPLING
    • 通过磁共振耦合进行临近检测
    • US20140197830A1
    • 2014-07-17
    • US13977560
    • 2011-12-28
    • Minglei WangXue YangXingang Guo
    • Minglei WangXue YangXingang Guo
    • G01B7/14G01R33/20H04B5/00
    • G01B7/14G01R33/20H04B5/0012H04B5/0043H04W8/005
    • A magnetic resonance technology is used to implement front and back proximity sensing capability for wireless devices such as a laptap device. For example, a high quality (Q) factor coil antenna may be embedded in a display, such as a liquid crystal display, of a first laptap device to detect other wireless devices (e.g., a second laptap) that are within coupling distance of the first laptap device. In this example, the second laptap device induces a sine wave signal to the first laptap device if the second laptap device is physically located at backside of the first laptap device. Otherwise, the second laptap device may induce a cosine wave signal to the first laptap device if the second laptap device is physically located at the front side of the first laptap device.
    • 使用磁共振技术实现诸如laptap设备的无线设备的前和后接近感测能力。 例如,高质量(Q)因子线圈天线可以被嵌入在第一搭扣装置的显示器(例如液晶显示器)中,以检测处于耦合距离内的其它无线装置(例如,第二搭载器) 第一个laptap设备。 在该示例中,如果第二搭扣装置物理地位于第一搭扣装置的后侧,则第二搭扣装置向第一搭扣装置引发正弦波信号。 否则,如果第二牵引装置物理上位于第一牵引装置的前侧,则第二搭扣装置可以向第一牵引装置感应余弦波信号。
    • 7. 发明申请
    • COORDINATING COMMUNICATIONS AMONG WIRELESS PERSONAL AREA NETWORK DEVICES
    • 无线个人网络设备协调通信
    • US20090147756A1
    • 2009-06-11
    • US11952910
    • 2007-12-07
    • Xue YangEran SudakXingang Guo
    • Xue YangEran SudakXingang Guo
    • H04J3/06H04B1/713H04Q7/20
    • H04B1/713
    • Embodiments of a multi-radio wireless communication device having two or more radio modules are generally described herein. In some embodiments, an initiating link manager may generate and transmit messages to a responding link manager. The messages may include a desired slot offset value and a desired point in time to perform slot adjustment. The responding link manager may return with a message indicating acceptance or nonacceptance of the desired slot offset value. If the responding link manager accepts the desired slot offset value, the message may also include whether the slot adjustment may be implemented at the desired point in time or incrementally. Other embodiments may be described and claimed.
    • 具有两个或更多个无线电模块的多无线电无线通信设备的实施例在此通常被描述。 在一些实施例中,发起链路管理器可以生成消息并向响应链路管理器发送消息。 消息可以包括期望的时隙偏移值和期望的时间点来执行时隙调整。 响应链路管理器可以返回指示接收或不接受所需时隙偏移值的消息。 如果响应链路管理器接受期望的时隙偏移值,则消息还可以包括时隙调整是否可以在期望的时间点或递增地被实现。 可以描述和要求保护其他实施例。
    • 9. 发明授权
    • Minimizing mutual interference for multi-radio co-existence platforms
    • 最大限度地减少多无线电共存平台的相互干扰
    • US07787398B2
    • 2010-08-31
    • US11904362
    • 2007-09-27
    • Changwen LiuXue YangXingang GuoChul Kim
    • Changwen LiuXue YangXingang GuoChul Kim
    • H04L12/28
    • H04W56/003
    • In general, in one aspect, the disclosure describes a method that includes selecting an offset between start of communications of a first radio in a multi-radio platform (MRP) and start of communications of a second radio in the MRP. Synchronizing clocks of the first radio and the second radio to maintain the offset. Determining safe zones within the communications of the second radio based on configuration of the first radio and the second radio and the selected offset. The safe zones are locations that minimize conflicts between receiving operations of the first radio that are at fixed locations and transmitting operations of the second radio and transmitting operations of the first radio that are at fixed locations and receiving operations of the second radio.
    • 一般来说,一方面,本公开描述了一种方法,其包括选择在多无线电平台(MRP)中的第一无线电的通信开始与MRP中的第二无线电的通信的开始之间的偏移。 同步第一个无线电和第二个无线电的时钟以保持偏移。 基于第一无线电和第二无线电的配置以及所选择的偏移来确定第二无线电通信内的安全区。 安全区域是使处于固定位置的第一无线电的接收操作与第二无线电的发送操作和处于固定位置的第一无线电的发送操作和第二无线电的接收操作之间的冲突最小化的位置。
    • 10. 发明授权
    • Methods and arrangements for link rate adaptation in multi-radio co-existence platforms
    • 多无线电共存平台链路速率调整的方法和布置
    • US07782825B2
    • 2010-08-24
    • US11731563
    • 2007-03-30
    • Xue YangAllen C. KimHsin-Yuo LiuXingang Guo
    • Xue YangAllen C. KimHsin-Yuo LiuXingang Guo
    • H04Q7/24
    • H04W72/1215H04W28/22H04W88/06
    • Methods and arrangements for link rate adaptation in multi-radio co-existence platforms (MRPs) are contemplated. Embodiments include transformations, code, state machines or other logic to determine an overlap between receiving by a wireless device of the MRP and transmitting by other of the wireless devices of the MRP and to select a link rate of the wireless device of the MRP based upon the determining an overlap. The embodiments may also include communicating the determined link rate to a wireless device transmitting to the wireless device of the MRP. Embodiments may also include selecting a previously used link rate if the receiving overlaps the transmitting. Embodiments may also include basing the link rate upon an overlapping or non-overlapping Signal-to-Interference-Plus-Noise-Ratio depending on the relative amounts of overlapping and non-overlapping.
    • 考虑了在多无线电共存平台(MRP)中链路速率适配的方法和布置。 实施例包括转换,代码,状态机或其他逻辑,以确定MRP的无线设备的接收与MRP的其他无线设备的发送之间的重叠,并且基于MRP的无线设备的链路速率来选择 确定重叠。 实施例还可以包括将确定的链路速率传送到向MRP的无线设备发送的无线设备。 实施例还可以包括如果接收与发送重叠,则选择先前使用的链路速率。 实施例还可以包括根据重叠和不重叠的相对量将链路速率基于重叠或不重叠的信号与干扰加噪声比。