会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 6. 发明申请
    • SCHEDULING AND PROTECTION OF QUIET PERIODS IN A QUIET ZONE FOR INCUMBENT SIGNAL DETECTION
    • 调度和保护安全区域进行有害信号检测
    • US20110299509A1
    • 2011-12-08
    • US13201654
    • 2010-02-02
    • Jianfeng WangVasanth Gaddam
    • Jianfeng WangVasanth Gaddam
    • H04W72/12
    • H04W16/14H04W72/1289
    • A method and system for scheduling and protecting quiet periods (QP) in a quiet zone (105) for incumbent signal (121) detection in a wireless communications system. The communication system includes a plurality of wireless networks (103, 104), each of the plurality of wireless networks contains at least a master device (101, 401) and a client device (111, 411). In each of the plurality of wireless networks, the master device (101, 401) transmits a beacon (402) that contains a QP schedule (500) and a reservation of a time slot (405) for the client device (411). The client device (111, 411) transmits a request-to-quiet (RTQ) message (412) during the time slot, wherein the RTQ message (412) includes the client device's QP schedule information. The master and client devices within the quiet zone (105) keep quiet during scheduled quiet periods according to the QP schedule information contained in the received beacons and RTQ messages.
    • 一种用于在无线通信系统中调度和保护安静区(105)中的安全期(QP)用于现有信号(121)检测的方法和系统。 通信系统包括多个无线网络(103,104),所述多个无线网络中的每一个至少包含主设备(101,401)和客户端设备(111,411)。 在所述多个无线网络中的每一个中,所述主设备(101,401)发送包含所述客户端设备(411)的QP调度(500)和时隙(405)的预留的信标(402)。 客户端设备(111,411)在时隙期间发送请求到静默(RTQ)消息(412),其中RTQ消息(412)包括客户端设备的QP调度信息。 安静区(105)内的主设备和客户端设备根据接收到的信标和RTQ消息中包含的QP调度信息在安排的安静时段内保持安静。
    • 7. 发明申请
    • TECHNIQUES FOR ENCODING PLCP HEADERS
    • 编码PLCP头的技术
    • US20110317722A1
    • 2011-12-29
    • US13254464
    • 2010-02-25
    • Vasanth GaddamMonisha Ghosh
    • Vasanth GaddamMonisha Ghosh
    • H04J3/24
    • H04L27/2607H04L1/0057H04L1/0059H04L1/0065H04L1/0072
    • A method (400) and apparatus for encoding a block-based communication system header. A physical (PHY) layer header and a medium access control (MAC) header of the block-based communication system header are encoded to generate parity bits, wherein the PHY layer header includes at least cyclic prefix (CP) mode bits (S410). Parity bits are appended to the PHY layer header and the MAC layer header to generate a bit vector (S420). The bit vector is divided into at least two data blocks, wherein a first data block includes at least the CP mode bits (S430). A predefined number of tail bits are appended to each data block (S440). The two data blocks are mapped into at least two symbols, wherein the first data block is mapped to a first symbol, such that the first symbol is a first header symbol being transmitted (S450).
    • 一种用于编码基于块的通信系统报头的方法(400)和装置。 对基于块的通信系统头部的物理(PHY)层头部和介质访问控制(MAC)头部进行编码以产生奇偶校验位,其中,PHY层头部至少包括循环前缀(CP)模式比特(S410)。 奇偶校验位附加到PHY层报头和MAC层报头以产生位向量(S420)。 比特向量被划分为至少两个数据块,其中第一数据块至少包括CP模式比特(S430)。 每个数据块附加预定数量的尾比特(S440)。 两个数据块被映射到至少两个符号,其中第一数据块被映射到第一符号,使得第一符号是正被发送的第一标题符号(S450)。
    • 8. 发明申请
    • FREQUENCY SELECTIVE RADIO SENSOR AND A METHOD THEREOF
    • 频率选择性无线电传感器及其方法
    • US20080309829A1
    • 2008-12-18
    • US12138736
    • 2008-06-13
    • GENE TURKENICHVasanth Gaddam
    • GENE TURKENICHVasanth Gaddam
    • H04N5/50
    • H03J7/04
    • An efficient radio sensor and a method thereof. The radio sensor includes a first frequency tracking block (FTB) (110-i) for tracking an input narrowband signal within a predefined frequency range, wherein the first FTB is preset to a first initial frequency; a second FTB (110-j) for tracking the input narrowband signal within a predefined frequency range, wherein the second FTB is preset to a second initial frequency; a subtractor (130) for subtracting an output value of the first FTB (110-i) from an output value of the second FTB (110-j); and a comparator (140) for applying a convergence test on an output of the subtractor (130) to determine if the input narrowband signal is present.
    • 一种有效的无线电传感器及其方法。 无线电传感器包括用于跟踪预定频率范围内的输入窄带信号的第一频率跟踪块(110-i),其中第一FTB被预设为第一初始频率; 用于在预定频率范围内跟踪输入窄带信号的第二FTB(110-j),其中所述第二FTB预设为第二初始频率; 用于从第二FTB(110-j)的输出值中减去第一FTB(110-i)的输出值的减法器(130); 以及用于对减法器(130)的输出应用会聚测试以确定输入窄带信号是否存在的比较器(140)。
    • 10. 发明申请
    • Network of Heterogeneous Devices Including at Least One Outdoor Lighting Fixture Node
    • 包括至少一个户外照明灯具节点的异构设备网络
    • US20130013091A1
    • 2013-01-10
    • US13636236
    • 2011-03-11
    • Dave CavalcantiVasanth Gaddam
    • Dave CavalcantiVasanth Gaddam
    • G05B19/00
    • H05B37/0272
    • Methods and apparatus for a scalable network of heterogeneous devices are disclosed. The network may include segment controllers in communication with a remote management system and a plurality of heterogeneous devices such as, for example, lighting fixture nodes and sensors. The segment controllers may transmit sensor data from the sensors to the remote management system. The segment controllers may also transmit control data to the lighting fixture nodes and, optionally, to one or more supplementary nodes. At least some of the control data may be based on data sent from the remote management system and, optionally, the segment controller may generate at least some of the control data independently of the remote management system.
    • 公开了用于可伸缩网络的异构设备的方法和装置。 网络可以包括与远程管理系统和多个异构设备(例如照明器具节点和传感器)通信的段控制器。 分段控制器可以将传感器数据从传感器传送到远程管理系统。 分段控制器还可以将控制数据发送到照明器具节点,并且可选地传送到一个或多个补充节点。 至少一些控制数据可以基于从远程管理系统发送的数据,并且可选地,段控制器可以独立于远程管理系统生成至少一些控制数据。