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    • 1. 发明申请
    • FLEXIBLE CAPACITY SATELLITE COMMUNICATIONS SYSTEM WITH FLEXIBLE ALLOCATION BETWEEN FORWARD AND RETURN CAPACITY
    • 灵活的卫星通信系统,具有前向和返回能力之间的灵活分配
    • US20110268158A1
    • 2011-11-03
    • US13098334
    • 2011-04-29
    • Mark J. MillerCharles N. Pateros
    • Mark J. MillerCharles N. Pateros
    • H04B1/69
    • H04B7/2041
    • Systems and methods for supporting more flexible coverage areas and spatial capacity assignments using satellite communications systems are disclosed. Antenna elements are arranged in one or more phased arrays. The phased arrays may be used to receive uplink communications, transmit downlink communications, or both receive uplink communications and transmit downlink communications. Beam forming networks (BFN's) associated with the one or more phased arrays may be dynamic, allowing for movement of the locations of the receive beams, the transmit beams, or both the receive beams and transmit beams. The beams may then “hop” from location to location according to a predefined or dynamic hopping pattern. In some embodiments, the hopping patterns may be time-varying and may be changed or updated on-the-fly.
    • 公开了使用卫星通信系统来支持更灵活的覆盖区域和空间容量分配的系统和方法。 天线元件布置在一个或多个相控阵列中。 相控阵列可以用于接收上行链路通信,发送下行链路通信,或者接收上行链路通信和发送下行链路通信。 与一个或多个相控阵列相关联的波束形成网络(BFN)可以是动态的,允许接收波束,发射波束或接收波束和发射波束两者的位置的移动。 然后,光束可以根据预定义或动态跳频图案从位置“跳”到位置。 在一些实施例中,跳频​​图案可以是时变的,并且可以在飞行中进行更改或更新。
    • 2. 发明授权
    • Multi-antenna satellite system with wireless interface to vehicle
    • 具有无线接口的多天线卫星系统
    • US07974571B2
    • 2011-07-05
    • US11818972
    • 2008-01-09
    • Mark D. DankbergAniruddha DasMark J. MillerCharles N. Pateros
    • Mark D. DankbergAniruddha DasMark J. MillerCharles N. Pateros
    • H04H1/00
    • H04B7/18534H04B7/0413H04B7/18508H04B7/1858
    • A wireless satellite communication device is provided according to one embodiment of the invention. The wireless satellite communication device may include one or more satellite antennas, one or more local antennas and circuitry. A satellite antenna may be configured to communicate with one or more satellites. The local antenna may be configured to communicate with one or more wireless user devices within the vicinity of the wireless satellite communication device. The local antennas may include a local antenna. The circuitry may be coupled with the satellite antenna and the local antenna and may be configured to receive data from the satellite antenna and transmit the data with the local antenna. The wireless satellite communication device may also include a solar panel configured to provide electrical power to at least the satellite antenna, the local antenna, and the circuitry.
    • 根据本发明的一个实施例提供一种无线卫星通信设备。 无线卫星通信设备可以包括一个或多个卫星天线,一个或多个本地天线和电路。 卫星天线可以被配置为与一个或多个卫星通信。 本地天线可以被配置为与无线卫星通信设备附近的一个或多个无线用户设备进行通信。 本地天线可以包括本地天线。 电路可以与卫星天线和本地天线耦合,并且可以被配置为从卫星天线接收数据并且与本地天线发送数据。 无线卫星通信设备还可以包括被配置为向至少卫星天线,本地天线和电路提供电功率的太阳能电池板。
    • 4. 发明授权
    • Incremental gateway deployment in a hub-spoke satellite communication system using static spot beams
    • 在使用静态光束的轮辐卫星通信系统中增加网关部署
    • US08340015B1
    • 2012-12-25
    • US13560788
    • 2012-07-27
    • Mark J. MillerCharles N. Pateros
    • Mark J. MillerCharles N. Pateros
    • H04B7/204
    • H04B7/18584H04B7/18515H04B7/18519H04L49/10H04L49/252H04W88/16
    • A method for communicating includes providing a hub-spoke satellite comprising receivers, transmitters, transmit switches, and a gateway switch structure. Prior to a time T, each of at least P receivers are used to receive one of at least P signals from P gateway terminals. During one frame, the gateway switch structure is used to switch the at least P signals to the plurality of transmit switches. Each of the at least P signals are switched into fixed location beams. After time T, each of at least Q receivers are used to receive a different one of at least Q signals from Q gateway terminals. During one frame, the gateway switch structure is used to switch the at least Q signals to the plurality of transmit switches. Each of the at least Q signals are switched into fixed location beams. Q and P are non-zero positive integers and Q>P.
    • 用于通信的方法包括提供包括接收机,发射机,发射交换机和网关交换机结构的中心辐射卫星。 在时间T之前,至少P个接收机中的每一个用于从P个网关终端接收至少P个信号中的一个。 在一帧期间,网关交换机结构用于将至少P个信号切换到多个发射交换机。 至少P个信号中的每一个被切换到固定位置波束。 在时间T之后,至少Q个接收机中的每一个用于从Q个网关终端接收至少Q个信号中的不同的一个。 在一帧期间,网关交换机结构用于将至少Q个信号切换到多个发射交换机。 至少Q个信号中的每一个被切换成固定位置波束。 Q和P是非零正整数,Q> P。
    • 5. 发明申请
    • SYSTEM FOR CHANNEL CONGESTION MANAGEMENT
    • 通道管理系统
    • US20100008225A1
    • 2010-01-14
    • US12563879
    • 2009-09-21
    • Steven R. HartMark J. MillerCharles N. Pateros
    • Steven R. HartMark J. MillerCharles N. Pateros
    • H04L12/56
    • H04L47/10H04B7/18543H04L47/12H04L47/13H04L47/25
    • A system for managing data traffic in a multi-user multiple-simultaneous-access (MUMSA) environment, for example in a code reuse multiple access (CRMA) environment or other physical environment having true random access with more than one transmission present at the same time, the system including a channel load estimator for multiple users, a congestion threshold calculator using the estimate of channel load to calculate threshold on an ongoing basis, a tester at each terminal performing an experiment using that congestion threshold value and a random number generator to determine if a packet is eligible to be transmitted, a traffic controller for transferring downstream virtual channel traffic and a redistributing mechanism for redistributing user terminals to affiliate with the proper downstream virtual channel.
    • 一种用于管理多用户多同时访问(MUMSA)环境中的数据业务的系统,例如在代码复用多址(CRMA)环境或具有同一存在的多于一个传输的真实随机接入的其他物理环境中 该系统包括用于多个用户的信道负载估计器,拥塞阈值计算器,使用信道负载的估计来持续地计算阈值,每个终端的测试者使用该拥塞阈值执行实验,以及随机数生成器 确定分组是否有资格发送,用于传输下游虚拟信道业务的流量控制器和用于重新分配用户终端以与适当的下游虚拟信道关联的再分配机制。
    • 6. 发明申请
    • Multi-Antenna Satellite System With Wireless Interface To Vehicle
    • 具有无线接口的多天线卫星系统
    • US20080261522A1
    • 2008-10-23
    • US11818972
    • 2008-01-09
    • Mark D. DankbergAniruddha DasMark J. MillerCharles N. Pateros
    • Mark D. DankbergAniruddha DasMark J. MillerCharles N. Pateros
    • H04B7/185H04B1/38
    • H04B7/18534H04B7/0413H04B7/18508H04B7/1858
    • A wireless satellite communication device is provided according to one embodiment of the invention. The wireless satellite communication device may include one or more satellite antennas, one or more local antennas and circuitry. A satellite antenna may be configured to communicate with one or more satellites. The local antenna may be configured to communicate with one or more wireless user devices within the vicinity of the wireless satellite communication device. The local antennas may include a local antenna. The circuitry may be coupled with the satellite antenna and the local antenna and may be configured to receive data from the satellite antenna and transmit the data with the local antenna. The wireless satellite communication device may also include a solar panel configured to provide electrical power to at least the satellite antenna, the local antenna, and the circuitry.
    • 根据本发明的一个实施例提供一种无线卫星通信设备。 无线卫星通信设备可以包括一个或多个卫星天线,一个或多个本地天线和电路。 卫星天线可以被配置为与一个或多个卫星通信。 本地天线可以被配置为与无线卫星通信设备附近的一个或多个无线用户设备进行通信。 本地天线可以包括本地天线。 电路可以与卫星天线和本地天线耦合,并且可以被配置为从卫星天线接收数据并且与本地天线发送数据。 无线卫星通信设备还可以包括被配置为向至少卫星天线,本地天线和电路提供电功率的太阳能电池板。
    • 8. 发明授权
    • Flexible capacity satellite communications system with flexible allocation between forward and return capacity
    • 灵活的卫星通信系统,具有灵活的前向和后退能力分配
    • US08144643B2
    • 2012-03-27
    • US13098334
    • 2011-04-29
    • Mark J. MillerCharles N. Pateros
    • Mark J. MillerCharles N. Pateros
    • H04B7/212
    • H04B7/2041
    • Systems and methods for supporting more flexible coverage areas and spatial capacity assignments using satellite communications systems are disclosed. Antenna elements are arranged in one or more phased arrays. The phased arrays may be used to receive uplink communications, transmit downlink communications, or both receive uplink communications and transmit downlink communications. Beam forming networks (BFN's) associated with the one or more phased arrays may be dynamic, allowing for movement of the locations of the receive beams, the transmit beams, or both the receive beams and transmit beams. The beams may then “hop” from location to location according to a predefined or dynamic hopping pattern. In some embodiments, the hopping patterns may be time-varying and may be changed or updated on-the-fly.
    • 公开了使用卫星通信系统来支持更灵活的覆盖区域和空间容量分配的系统和方法。 天线元件布置在一个或多个相控阵列中。 相控阵列可以用于接收上行链路通信,发送下行链路通信,或者接收上行链路通信和发送下行链路通信。 与一个或多个相控阵列相关联的波束形成网络(BFN)可以是动态的,允许接收波束,发射波束或接收波束和发射波束两者的位置的移动。 然后,光束可以根据预定义或动态跳频图案从位置“跳”到位置。 在一些实施例中,跳频​​图案可以是时变的,并且可以在飞行中进行更改或更新。