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    • 61. 发明申请
    • ASYNCHRONOUS INTERFERENCE MANAGEMENT
    • 异步干扰管理
    • US20090203322A1
    • 2009-08-13
    • US12027794
    • 2008-02-07
    • Gavin Bernard HornAshwin SampathSanjiv Nanda
    • Gavin Bernard HornAshwin SampathSanjiv Nanda
    • H04B17/00
    • H04W72/082H04W72/0406H04W72/12H04W74/08
    • Interference management may involve the transmission of interference management messages by wireless nodes that are experiencing interference and appropriate responses by potential interferers that receive the interference management messages. Upon detection of interfering signals, a wireless node may determine whether the signals are from a synchronous interferer or an asynchronous interferer. Based on this determination, the wireless node may use different types of signals to manage the different types of interference. In some aspects, asynchronous interference management may involve backing-off in frequency and/or in time in response to interference signals. Asynchronous interference management may involve transmitting back-off beacons to clear potential interferers from a given carrier. Here, the transmission of beacons by a wireless node may be metered to facilitate fair sharing of communication resources.
    • 干扰管理可能涉及由经受干扰的无线节点和接收干扰管理消息的潜在干扰源的适当响应的干扰管理消息的传输。 在检测到干扰信号时,无线节点可以确定信号是来自同步干扰源还是异步干扰源。 基于该确定,无线节点可以使用不同类型的信号来管理不同类型的干扰。 在一些方面,异步干扰管理可以包括响应于干扰信号在频率上和/或时间上进行退出。 异步干扰管理可能涉及发送回退信标以清除给定载波的潜在干扰源。 这里,可以计量无线节点的信标传输,以便公平地共享通信资源。
    • 62. 发明申请
    • MULTI-HOP COMMUNICATIONS IN A WIRELESS NETWORK
    • 无线网络中的多通信通信
    • US20090201907A1
    • 2009-08-13
    • US12401591
    • 2009-03-10
    • Sanjiv NandaRanganathan Krishnan
    • Sanjiv NandaRanganathan Krishnan
    • H04J3/00
    • H04W72/1226H04W52/367H04W52/46H04W84/18
    • Systems and techniques are disclosed relating to wireless communications. The systems and techniques involve wireless communications wherein a module or communications device is configured to select first and second terminal pairs, the first terminal pair having a first transmitting terminal and a first receiving terminal, and the second terminal pair having a second transmitting terminal and a second receiving terminal, schedule a first signal transmission from the first transmitting terminal to an intermediate terminal, the first signal transmission being destined for the first receiving terminal, schedule, simultaneously with the first signal transmission, a second signal transmission from the second transmitting terminal to the second receiving terminal, and schedule a power level for each of the first and second signal transmissions that satisfies a target quality parameter for each of the intermediate terminal and the second receiving terminal.
    • 公开了与无线通信有关的系统和技术。 该系统和技术涉及无线通信,其中模块或通信设备被配置为选择第一和第二终端对,第一终端对具有第一发送终端和第一接收终端,并且第二终端对具有第二发送终端和 第二接收终端,调度从第一发送终端到中间终端的第一信号传输,第一信号传输指定给第一接收终端,与第一信号传输同时调度从第二发射终端到第二信号传输的第二信号传输 第二接收终端,并为每个中间终端和第二接收终端分别满足目标质量参数的第一和第二信号传输中的每一个调度功率电平。
    • 69. 发明申请
    • SCHEDULING COMMUNICATIONS IN A WIRELESS NETWORK
    • 在无线网络中安排通信
    • US20080130569A1
    • 2008-06-05
    • US12029918
    • 2008-02-12
    • Sanjiv Nanda
    • Sanjiv Nanda
    • H04Q7/00H04L12/66
    • H04W72/1231H04W52/241H04W72/0446H04W72/0466H04W84/18
    • Systems and techniques are disclosed relating to wireless communications. The systems and techniques involve wireless communications wherein a module or communications device is configured to select a plurality of terminal pairs each having a transmitting terminal and a corresponding receiving terminal, determine a target quality parameter for each of the receiving terminals, and schedule simultaneous signal transmissions from each of the transmitting terminals to its corresponding receiving terminal, the scheduling of the simultaneous transmissions including selecting a power level for each of the signal transmissions that satisfies the target quality parameter for each of the receiving terminals.
    • 公开了与无线通信有关的系统和技术。 该系统和技术涉及无线通信,其中模块或通信设备被配置为选择多个终端对,每个终端对具有发送终端和对应的接收终端,确定每个接收终端的目标质量参数,并且调度同时信号传输 从每个发送终端到其对应的接收终端,同时传输的调度包括为每个接收终端选择满足目标质量参数的每个信号传输的功率电平。
    • 70. 发明申请
    • SENSOR NETWORKS BASED ON WIRELESS DEVICES
    • 基于无线设备的传感器网络
    • US20080076450A1
    • 2008-03-27
    • US11862051
    • 2007-09-26
    • Sanjiv NandaAvneesh Agrawal
    • Sanjiv NandaAvneesh Agrawal
    • H04Q7/20
    • G01D21/00G01S5/0009H04W16/14H04W24/00H04W24/10H04W84/12H04W84/18
    • Techniques for using wireless devices to implement sensor networks are described. For cognitive radio, a wireless device obtains measurements for a first system (e.g., a broadcast system) with which the wireless device is not in communication. The wireless device sends the measurements and associated location information and/or timestamps via a second system (e.g., a cellular system). A server receives measurements from a number of wireless devices and determines the coverage of the first system based on the measurements. For other applications, a wireless device obtains sensor information from at least one sensor at the wireless device and sends the sensor information and associated location information and/or timestamps via a wireless system. A server receives the sensor information and associated information from a number of wireless devices, aggregates the sensor information, and constructs a map. The wireless device may develop a user profile based on the sensor information and associated information.
    • 描述了使用无线设备来实现传感器网络的技术。 对于认知无线电,无线设备获得与无线设备不在通信的第一系统(例如,广播系统)的测量。 无线设备经由第二系统(例如,蜂窝系统)发送测量和相关联的位置信息和/或时间戳。 服务器从多个无线设备接收测量值,并根据测量结果确定第一系统的覆盖范围。 对于其他应用,无线设备从无线设备处的至少一个传感器获取传感器信息,并且经由无线系统发送传感器信息和相关联的位置信息和/或时间戳。 服务器从多个无线设备接收传感器信息和关联信息,聚合传感器信息,并构建一个映射。 无线设备可以基于传感器信息和相关信息来开发用户简档。