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    • 1. 发明授权
    • Frame relay protocol-based multiplex switching scheme for satellite
    • 用于卫星的基于帧中继协议的多路复用切换方案
    • US5434850A
    • 1995-07-18
    • US79250
    • 1993-06-17
    • Dennis E. FieldingTodd W. Gross
    • Dennis E. FieldingTodd W. Gross
    • H04B7/185H04J3/26H04B7/155
    • H04B7/18582
    • A frame relay protocol-based earth station interface architecture provides full mesh connectivity for a relatively small number of network stations. The fundamental component of the architecture is a frame relay protocol-based switch, which employs a network interface `frame relay` standard to define the multiplexing of multiple virtual ports across single physical communications port. Through address and control fields of its connectivity control software, the frame relay protocol-based switch can be dynamically configured to provide multilayer addressing and device selectivity, thereby enabling point-to-point connectivity of multiple terminal devices, such as a plurality of audio circuits, to be effected via a single port. Dial codes on the station side of an audio signal multiplexer link are translated into frame relay addresses (data link connection identifiers) that are added to each frame of data for routing through the network. With this additional layer of routing information, audio (voice) connectivity is now available between any two audio circuits (e.g. trunks) in the network.
    • 基于帧中继协议的地球站接口架构为相对较少数量的网络站提供全网状连接。 架构的基本组成部分是基于帧中继协议的交换机,其采用网络接口“帧中继”标准来定义跨单个物理通信端口的多个虚拟端口的复用。 通过其连接控制软件的地址和控制领域,基于帧中继协议的交换机可以动态地配置为提供多层寻址和设备选择性,从而实现多个终端设备(诸如多个音频电路)的点对点连接 ,通过单一端口实现。 在音频信号多路复用器链路的站侧的拨号代码被转换成帧中继地址(数据链路连接标识符),这些帧被添加到每个数据帧以便通过网络进行路由。 利用这个额外的路由信息​​层,现在网络中的任何两个音频电路(例如中继线)之间可以使用音频(语音)连接。
    • 2. 发明授权
    • Frame relay protocol-based multiplex switching scheme for satellite mesh network
    • 用于卫星网状网络的基于帧中继协议的多路复用交换方案
    • US07321572B2
    • 2008-01-22
    • US10881479
    • 2004-06-30
    • Dennis E. FieldingTodd W. Gross
    • Dennis E. FieldingTodd W. Gross
    • H04B7/155
    • H04B7/1858H04B7/18582
    • A frame relay protocol-based earth station interface architecture provides full mesh connectivity for a relatively small number of network stations. The fundamental component of the architecture is a frame relay protocol-based switch, which employs a network interface ‘frame relay’ standard to define the multiplexing of multiple virtual ports across single physical communications port. Through address and control fields of its connectivity control software, the frame relay protocol-based switch can be dynamically configured to provide multilayer addressing and device selectivity, thereby enabling point-to-point connectivity of multiple terminal devices, such as a plurality of audio circuits, to be effected via a single port. Dial codes on the station side of an audio signal multiplexer link are translated into frame relay addresses (data link connection identifiers) that are added to each frame of data for routing through the network. With this additional layer of routing information, audio (voice) connectivity is now available between any two audio circuits (e.g. trunks) in the network.
    • 基于帧中继协议的地球站接口架构为相对较少数量的网络站提供全网状连接。 架构的基本组成部分是基于帧中继协议的交换机,其采用网络接口“帧中继”标准来定义跨单个物理通信端口的多个虚拟端口的复用。 通过其连接控制软件的地址和控制领域,基于帧中继协议的交换机可以动态地配置为提供多层寻址和设备选择性,从而实现多个终端设备(诸如多个音频电路)的点对点连接 ,通过单一端口实现。 在音频信号多路复用器链路的站侧的拨号代码被转换成帧中继地址(数据链路连接标识符),这些帧被添加到每个数据帧以便通过网络进行路由。 利用这个额外的路由信息​​层,现在网络中的任何两个音频电路(例如中继线)之间可以使用音频(语音)连接。
    • 3. 再颁专利
    • Demand-based connection management integrated services access terminal (ISAT) for satellite communications system
    • 用于卫星通信系统的基于需求的连接管理综合业务接入终端(ISAT)
    • USRE41218E1
    • 2010-04-13
    • US10208790
    • 2002-08-01
    • Dennis E. FieldingTodd W. GrossJohn P. Arnold
    • Dennis E. FieldingTodd W. GrossJohn P. Arnold
    • H04B7/204
    • H04B7/18582H04B7/18584
    • A demand-based connection management satellite communication network includes a plurality of geographically distributed earth stations, each earth station having a frame relay protocol-based switch for interfacing message signals between terminal devices and modem unit. One of the earth stations is a hub station whose modem unit includes plural demodulators tuned to carrier frequencies transmitted from other, remote stations. Each remote station has at least one hub-programmable demodulator and/or a programmable modulator. When an originating station receives a request from a terminal device for connectivity with a terminal device at a destination station, it transmits a connectivity request message to the hub station. In response, the hub station checks a demodulator and/or modulator frequency assignment database for demodulator availability. If each originating and destination station has an available demodulator and modulator pair, the hub transmits tuning messages to the two stations, which tune their programmable modem components to each other's carrier frequency, and thereby provide bidirectional connectivity between the two remote stations.
    • 基于需求的连接管理卫星通信网络包括多个地理分布的地球站,每个地球站具有基于帧中继协议的交换机,用于在终端设备和调制解调器单元之间接口消息信号。 地球站之一是中心站,其调制解调器单元包括被调谐到从其他远程站发送的载波频率的多个解调器。 每个远程站具有至少一个集线器可编程解调器和/或可编程调制器。 当始发站从终端设备接收到与目的站的终端设备连接的请求时,它向中心站发送连接请求消息。 作为响应,中心站检查用于解调器可用性的解调器和/或调制器频率分配数据库。 如果每个起始站和目标站具有可用的解调器和调制器对,则集线器将调谐消息发送到两个站,这两个站将其可编程调制解调器组件调谐到彼此的载波频率,从而在两个远程站之间提供双向连接。
    • 4. 发明申请
    • Multiplex Switching Scheme for Communications Network
    • 通信网络多路复用方案
    • US20090316618A1
    • 2009-12-24
    • US12551818
    • 2009-09-01
    • Dennis E. FieldingTodd W. Gross
    • Dennis E. FieldingTodd W. Gross
    • H04B7/185
    • H04B7/1858H04B7/18582
    • An earth station interface architecture provides full mesh connectivity for a relatively small number of network stations. A component of the architecture is a switch, which employs' a network interface standard to ‘define the multiplexing of multiple virtual ports across single physical communications port. Through address and control fields of its connectivity control software, the switch can be dynamically configured to provide multilayer addressing, and device selectivity, thereby enabling point-to-point connectivity of multiple terminal devices, such as a plurality of audio circuits, to be effected via a single port. Dial codes on the station side of an audio signal multiplexer link are translated into frame relay addresses (data link connection identifiers) that are added to each frame of data for routing through the network. With this additional layer of routing information, audio (voice) connectivity is now available between any two audio circuits (e.g. trunks) in the network.
    • 地球站接口架构为相对较少数量的网络站提供全网状连接。 架构的一个组件是一个交换机,它采用“网络接口标准”来定义跨单个物理通信端口的多个虚拟端口的复用。 通过其连接控制软件的地址和控制领域,交换机可以动态地配置为提供多层寻址和设备选择性,从而实现要实现的多个终端设备(例如多个音频电路)的点对点连接 通过单个端口。 在音频信号多路复用器链路的站侧的拨号代码被转换成帧中继地址(数据链路连接标识符),这些帧被添加到每个数据帧以便通过网络进行路由。 利用这个额外的路由信息​​层,现在网络中的任何两个音频电路(例如中继线)之间可以使用音频(语音)连接。
    • 5. 发明授权
    • Demand-based connection management integrated services access terminal
(ISAT) for satellite communication system
    • 用于卫星通信系统的基于需求的连接管理综合业务接入终端(ISAT)
    • US06097706A
    • 2000-08-01
    • US133154
    • 1998-08-12
    • Dennis E. FieldingTodd W. GrossJohn P. Arnold
    • Dennis E. FieldingTodd W. GrossJohn P. Arnold
    • H04B7/185H04B7/208
    • H04B7/18582H04B7/18584
    • A demand-based connection management satellite communication network includes a plurality of geographically distributed earth stations, each earth station having a frame relay protocol-based switch for interfacing message signals between terminal devices and modem unit. One of the earth stations is a hub station whose modem unit includes plural demodulators tuned to carrier frequencies transmitted from other, remote stations. Each remote station has at least one hub-programmable demodulator and/or a programmable modulator. When an originating station receives a request from a terminal device for connectivity with a terminal device at a destination station, it transmits a connectivity request message to the hub station. In response, the hub station checks a demodulator and/or modulator frequency assignment database for demodulator availability. If each originating and destination station has an available demodulator and modulator pair, the hub transmits tuning messages to the two stations, which tune their programmable modem components to each other's carrier frequency, and thereby provide bidirectional connectivity between the two remote stations.
    • 基于需求的连接管理卫星通信网络包括多个地理分布的地球站,每个地球站具有基于帧中继协议的交换机,用于在终端设备和调制解调器单元之间接口消息信号。 地球站之一是中心站,其调制解调器单元包括被调谐到从其他远程站发送的载波频率的多个解调器。 每个远程站具有至少一个集线器可编程解调器和/或可编程调制器。 当始发站从终端设备接收到与目的站的终端设备连接的请求时,它向中心站发送连接请求消息。 作为响应,中心站检查用于解调器可用性的解调器和/或调制器频率分配数据库。 如果每个起始站和目标站具有可用的解调器和调制器对,则集线器将调谐消息发送到两个站,这两个站将其可编程调制解调器组件调谐到彼此的载波频率,从而在两个远程站之间提供双向连接。
    • 6. 发明授权
    • Multiplex switching scheme for communications network
    • 通讯网络多路交换方案
    • US07583626B2
    • 2009-09-01
    • US11425266
    • 2006-06-20
    • Dennis E. FieldingTodd W. Gross
    • Dennis E. FieldingTodd W. Gross
    • H04B7/155
    • H04B7/1858H04B7/18582
    • An earth station interface architecture provides full mesh connectivity for a relatively small number of network stations. A component of the architecture is a switch, which employs' a network interface standard to 'define the multiplexing of multiple virtual ports across single physical communications port. Through address and control fields of its connectivity control software, the switch can be dynamically configured to provide multilayer addressing, and device selectivity, thereby enabling point-to-point connectivity of multiple terminal devices, such as a plurality of audio circuits, to be effected via a single port. Dial codes on the station side of an audio signal multiplexer link are translated into frame relay addresses (data link connection identifiers) that are added to each frame of data for routing through the network. With this additional layer of routing information, audio (voice) connectivity is now available between any two audio circuits (e.g. trunks) in the network.
    • 地球站接口架构为相对较少数量的网络站点提供全网状连接。 架构的一个组件是一个交换机,它采用“网络接口标准”来定义跨单个物理通信端口的多个虚拟端口的复用。 通过其连接控制软件的地址和控制领域,交换机可以动态地配置为提供多层寻址和设备选择性,从而实现要实现的多个终端设备(例如多个音频电路)的点对点连接 通过单个端口。 在音频信号多路复用器链路的站侧的拨号代码被转换成帧中继地址(数据链路连接标识符),这些帧被添加到每个数据帧以便通过网络进行路由。 利用这个额外的路由信息​​层,现在网络中的任何两个音频电路(例如中继线)之间可以使用音频(语音)连接。
    • 7. 发明授权
    • Frame relay protocol-based multiplex switching scheme for satellite mesh network
    • 用于卫星网状网络的基于帧中继协议的多路复用交换方案
    • US06771617B1
    • 2004-08-03
    • US10437536
    • 2003-05-14
    • Dennis E. Fielding
    • Dennis E. Fielding
    • H04B7155
    • H04B7/1858H04B7/18582
    • A frame relay protocol-based earth station interface architecture provides full mesh connectivity for a relatively small number of network stations. The fundamental component of the architecture is a frame relay protocol-based switch, which employs a network interface ‘frame relay’ standard to define the multiplexing of multiple virtual ports across single physical communications port. Through address and control fields of its connectivity control software, the frame relay protocol-based switch can be dynamically configured to provide multilayer addressing and device selectivity, thereby enabling point-to-point connectivity of multiple terminal devices, such as a plurality of audio circuits, to be effected via a single port. Dial codes on the station side of an audio signal multiplexer link are translated into frame relay addresses (data link connection identifiers) that are added to each frame of data for routing through the network. With this additional layer of routing information, audio (voice) connectivity is now available between any two audio circuits (e.g. trunks) in the network.
    • 基于帧中继协议的地球站接口架构为相对较少数量的网络站提供全网状连接。 架构的基本组成部分是基于帧中继协议的交换机,其采用网络接口“帧中继”标准来定义跨单个物理通信端口的多个虚拟端口的复用。 通过其连接控制软件的地址和控制领域,基于帧中继协议的交换机可以动态地配置为提供多层寻址和设备选择性,从而实现多个终端设备(诸如多个音频电路)的点对点连接 ,通过单一端口实现。 在音频信号多路复用器链路的站侧的拨号代码被转换成帧中继地址(数据链路连接标识符),这些帧被添加到每个数据帧以便通过网络进行路由。 利用这个额外的路由信息​​层,现在网络中的任何两个音频电路(例如中继线)之间可以使用音频(语音)连接。
    • 8. 发明授权
    • Multiplex switching scheme for communications network
    • 通讯网络多路交换方案
    • US08068472B2
    • 2011-11-29
    • US12551818
    • 2009-09-01
    • Dennis E. FieldingTodd W. Gross
    • Dennis E. FieldingTodd W. Gross
    • H04B7/155
    • H04B7/1858H04B7/18582
    • An earth station interface architecture provides full mesh connectivity for a relatively small number of network stations. A component of the architecture is a switch, which employs' a network interface standard to ‘define the multiplexing of multiple virtual ports across single physical communications port. Through address and control fields of its connectivity control software, the switch can be dynamically configured to provide multilayer addressing, and device selectivity, thereby enabling point-to-point connectivity of multiple terminal devices, such as a plurality of audio circuits, to be effected via a single port. Dial codes on the station side of an audio signal multiplexer link are translated into frame relay addresses (data link connection identifiers) that are added to each frame of data for routing through the network. With this additional layer of routing information, audio (voice) connectivity is now available between any two audio circuits (e.g. trunks) in the network.
    • 地球站接口架构为相对较少数量的网络站提供全网状连接。 架构的一个组件是一个交换机,它采用“网络接口标准”来定义跨单个物理通信端口的多个虚拟端口的复用。 通过其连接控制软件的地址和控制领域,交换机可以动态地配置为提供多层寻址和设备选择性,从而实现要实现的多个终端设备(例如多个音频电路)的点对点连接 通过单个端口。 在音频信号多路复用器链路的站侧的拨号代码被转换成帧中继地址(数据链路连接标识符),这些帧被添加到每个数据帧以便通过网络进行路由。 利用这个额外的路由信息​​层,现在网络中的任何两个音频电路(例如中继线)之间可以使用音频(语音)连接。
    • 9. 发明授权
    • Frame relay protocol-based multiplex switching scheme for satellite mesh network
    • 用于卫星网状网络的基于帧中继协议的多路复用交换方案
    • US06625130B2
    • 2003-09-23
    • US10071307
    • 2002-02-08
    • Dennis E. Fielding
    • Dennis E. Fielding
    • H04B7155
    • H04B7/18582
    • A frame relay protocol-based earth station interface architecture provides full mesh connectivity for a relatively small number of network stations. The fundamental component of the architecture is a frame relay protocol-based switch, which employs a network interface ‘frame relay’ standard to define the multiplexing of multiple virtual ports across single physical communications port. Through address and control fields of its connectivity control software, the frame relay protocol-based switch can be dynamically configured to provide multilayer addressing and device selectivity, thereby enabling point-to-point connectivity of multiple terminal devices, such as a plurality of audio circuits, to be effected via a single port. Dial codes on the station side of an audio signal multiplexer link are translated into frame relay addresses (data link connection identifiers) that are added to each frame of data for routing through the network. With this additional layer of routing information, audio (voice) connectivity is now available between any two audio circuits (e.g. trunks) in the network.
    • 基于帧中继协议的地球站接口架构为相对较少数量的网络站提供全网状连接。 架构的基本组成部分是基于帧中继协议的交换机,其采用网络接口“帧中继”标准来定义跨单个物理通信端口的多个虚拟端口的复用。 通过其连接控制软件的地址和控制领域,基于帧中继协议的交换机可以动态地配置为提供多层寻址和设备选择性,从而实现多个终端设备(诸如多个音频电路)的点对点连接 ,通过单一端口实现。 在音频信号多路复用器链路的站侧的拨号代码被转换成帧中继地址(数据链路连接标识符),这些帧被添加到每个数据帧以便通过网络进行路由。 利用这个额外的路由信息​​层,现在网络中的任何两个音频电路(例如中继线)之间可以使用音频(语音)连接。
    • 10. 发明授权
    • Frame relay protocol-based multiplex switching scheme for satellite mesh network
    • 用于卫星网状网络的基于帧中继协议的多路复用交换方案
    • US06381227B1
    • 2002-04-30
    • US08786234
    • 1997-01-21
    • Dennis E. FieldingTodd W. Gross
    • Dennis E. FieldingTodd W. Gross
    • H04B7155
    • H04B7/18582
    • A frame relay protocol-based earth station interface architecture provides full mesh connectivity for a relatively small number of network stations. The fundamental component of the architecture is a frame relay protocol-based switch, which employs a network interface ‘frame relay’ standard to define the multiplexing of multiple virtual ports across single physical communications port. Through address and control fields of its connectivity control software, the frame relay protocol-based switch can be dynamically configured to provide multilayer addressing and device selectivity, thereby enabling point-to-point connectivity of multiple terminal devices, such as a plurality of audio circuits, to be effected via a single port. Dial codes on the station side of an audio signal multiplexer link are translated into frame relay addresses (data link connection identifiers) that are added to each frame of data for routing through the network. With this additional layer of routing information, audio (voice) connectivity is now available between any two audio circuits (e.g. trunks) in the network.
    • 基于帧中继协议的地球站接口架构为相对较少数量的网络站提供全网状连接。 架构的基本组成部分是基于帧中继协议的交换机,采用网络接口“帧中继”标准,定义单个物理通信端口上多个虚拟端口的复用,通过其连接控制软件的地址和控制字段, 基于帧中继协议的交换机可以被动态地配置为提供多层寻址和设备选择性,从而使多个终端设备(例如多个音频电路)能够经由单个端口进行点对点连接。 在音频信号多路复用器链路的站侧,被转换成帧中继地址(数据链路连接标识符),其被添加到每个数据帧以通过网络进行路由,通过这个额外的路由信息​​层,音频(语音)连接是 现在可以在网络中的任何两个音频电路(例如中继线)之间使用。