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    • 56. 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。
    • 57. 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。
    • 58. 发明申请
    • STANDBY TIME IMPROVEMENTS USING SUB-NETWORKS
    • 使用子网的待机时间改进
    • US20080002692A1
    • 2008-01-03
    • US11680400
    • 2007-02-28
    • Arnaud MeylanManoj M. DeshpandeSanjiv Nanda
    • Arnaud MeylanManoj M. DeshpandeSanjiv Nanda
    • H04B7/00
    • H04W72/005H04W52/0216H04W52/0219H04W88/02Y02D70/142Y02D70/144Y02D70/146Y02D70/22Y02D70/23Y02D70/26
    • Broadcast or multicast traffic is classified into different types of traffic such that different types of traffic are transmitted over different sub-networks. In addition, different transmission schedules may be associated with each of the different sub-networks. A device may thus be configured to receive only a selected portion of the different types of traffic by only waking from a power save mode at the intervals at which the corresponding sub-network sends the traffic. The standby time of the wireless station may thus be improved because the wireless station may awaken less frequently and for shorter periods of time. Different sub-networks carrying different types of broadcast and multicast traffic may be implemented in an 802.11-based system. For example, a single access point may define multiple basic service set identifiers for a single wireless channel.
    • 广播或多播流量分为不同类型的流量,使得不同类型的流量在不同的子网络上传输。 此外,不同的传输时间表可以与每个不同的子网络相关联。 因此,设备可以被配置为仅以相应的子网络发送业务的间隔从省电模式唤醒来仅接收不同类型业务的所选部分。 因此,无线站的待机时间可以被改善,因为无线站可以较少地频繁地唤醒并且在较短的时间段内唤醒。 承载不同类型的广播和多播业务的不同子网络可以在基于802.11的系统中实现。 例如,单个接入点可以为单个无线信道定义多个基本服务集标识符。
    • 59. 发明申请
    • TRANSMISSION CONTROL FOR WIRELESS COMMUNICATION NETWORKS
    • 无线通信网络的传输控制
    • US20070214379A1
    • 2007-09-13
    • US11681106
    • 2007-03-01
    • Santosh AbrahamSanjiv NandaSaishankar Nandagopalan
    • Santosh AbrahamSanjiv NandaSaishankar Nandagopalan
    • G06F11/00
    • H04W40/22H04L45/20H04W28/24H04W74/0816H04W74/0875H04W84/18H04W84/22
    • Techniques for controlling transmissions in wireless communication networks are described. In one aspect, transmission control for a mesh network may be achieved by ranking mesh points or stations in the mesh network. In one design, the rank of a first station in the mesh network may be determined. At least one station of lower rank than the first station in the mesh network may be identified. At least one transmission parameter for the at least one station of lower rank may be set by the first station. In another aspect, stations may be assigned different transmission parameter values to achieve the data requirements of each station. At least one transmission parameter value may be selected for each station based on the rank, QoS requirements, amount of traffic, and/or achievable data rate for that station and may be sent (e.g., via a probe response message) to the station.
    • 描述了用于控制无线通信网络中的传输的技术。 在一个方面,可以通过对网状网络中的网格点或站进行排序来实现网状网络的传输控制。 在一种设计中,可以确定网状网络中的第一站的等级。 可以识别至少一个比网状网络中的第一站低的站。 至少一个下位站的传输参数可由第一站设置。 在另一方面,站可以被分配不同的传输参数值以实现每个站的数据要求。 可以基于该站的等级,QoS要求,业务量和/或可实现的数据速率为每个站选择至少一个传输参数值,并且可以(例如,经由探测响应消息)发送到站。