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    • 61. 发明授权
    • Control signal transmitting apparatus, particularly for aircraft
    • 控制信号发送装置,特别适用于飞机
    • US4422180A
    • 1983-12-20
    • US293277
    • 1981-08-17
    • Hans J. Wendt
    • Hans J. Wendt
    • B64C13/50G05D1/00H04B10/27H04B10/278H04B9/00
    • H04B10/27B64C13/503G05D1/0061G05D1/0077H04B10/278
    • A control system for controlling, for example, the operation of an aircraft or any other system requiring a flow of data back and forth between controlling and controlled units of the system, comprises a passive, multiply intermeshed conductor network (20, 24) of light conductors (11, 12). This network transmits control signals in the form of digital light signals from a control signal source, such as a control stick (9) in the cockpit of an aircraft or spacecraft, to respective controlled servo-units (14). The transmission system includes signal processors (10) including mixers (15) and information devices (16, 17, 18) interposed between the control signal source and the network (24) which is connected to the addressable controlled units, e.g., servo-units. The system is powered by a power supply device comprising several energy sources which may be switched on selectively as required. Such energy sources include the propulsion plant, for example, of an aircraft, an auxiliary turbine (112), a slip wind turbine (120) and an electric battery (128). Each energy source is connected to a measuring and switching unit (106, 115, 124, 131) through redundant transmission units (110) three of which are connected in parallel to one another and to the network (24). The transmission units (110) are further connected through the network (24) to a testing device (135) for monitoring and controlling the connected units or components.
    • 用于控制例如飞行器或任何其它系统的操作的控制系统,其需要在系统的控制单元和受控单元之间来回传递数据,包括光的无源多相互啮合的导体网络(20,24) 导体(11,12)。 该网络将来自诸如飞机或航天器的驾驶舱中的控制杆(9)的控制信号源的数字光信号的控制信号发送到相应的受控伺服单元(14)。 传输系统包括信号处理器(10),其包括混合器(15)和介于控制信号源和网络(24)之间的信息设备(16,17,18),网络(24)连接到可寻址的受控单元,例如伺服单元 。 该系统由包括可以选择性地被接通的若干能量源的电源设备供电。 这种能量源包括例如飞行器,辅助涡轮机(112),滑动风力涡轮机(120)和电池(128)的推进设备。 每个能源通过冗余传输单元(110)连接到测量和切换单元(106,115,124,131),其中三个彼此并联并连接到网络(24)。 传输单元(110)还通过网络(24)进一步连接到测试设备(135),用于监视和控制连接的单元或组件。
    • 68. 发明申请
    • CALIBRATING AN APPARATUS SUPPORTING PLUGGABLE OPTICS
    • 校准支持可插拔光学设备的设备
    • US20170012709A1
    • 2017-01-12
    • US14796787
    • 2015-07-10
    • Cisco Technology, Inc.
    • Thomas DUTHEL
    • H04B10/40H04B10/278
    • H04B10/40H04B10/278
    • Embodiments of the present disclosure provide techniques and an apparatus for partitioning calibration data into line card and pluggable properties and processing the partitioned data using a processor of the line card. For example, calibration information corresponding to components in the pluggable module may be stored on the pluggable module and transferred from the pluggable optical module to the processor on the line card. The processor may combine the calibration information received from the optical module with calibration information corresponding to properties on the line card to obtain system calibration information. The system calibration information may be used to configure one or more components used to process electric signals sent to or received from the optical module.
    • 本公开的实施例提供了用于将校准数据划分为线路卡和可插拔属性并使用线路卡的处理器来处理分区数据的技术和装置。 例如,对应于可插拔模块中的组件的校准信息可以存储在可插拔模块上,并从可插拔光模块传输到线卡上的处理器。 处理器可以将从光学模块接收的校准信息与对应于线路卡上的属性的校准信息组合以获得系统校准信息。 系统校准信息可以用于配置用于处理发送到或从光学模块接收的电信号的一个或多个组件。
    • 70. 发明申请
    • Optical Communication System with a Hierarchical Branch Configuration
    • 具有分层分支配置的光通信系统
    • US20160248536A1
    • 2016-08-25
    • US14837751
    • 2015-08-27
    • Tyco Electronics Subsea Communications LLC
    • Janar ThoguluvaEdwin MuthAdnan Akhtar
    • H04J14/02
    • H04J14/0282H04B10/278H04J14/0204H04J14/0286
    • An optical communication system with a hierarchical branch configuration. The system includes first and second cable landing stations coupled to a trunk path in an optical cable. At least one hub-node is coupled to the trunk path through an associated hub-node branching unit. In an embodiment, mid-nodes are coupled the hub-nodes through associated mid-node branching units and mid-node paths in the optical cable. Mid-node signals may be communicated between the mid-nodes and the hub-nodes without being provided on the trunk path. Sub-nodes are coupled to at least one of the mid-nodes through associated sub-node branching units and sub-node paths in the optical cable. Sub-node signals may also be communicated between the sub-nodes and the mid-nodes without being provided on the trunk path or the mid-node path.
    • 具有分层分支配置的光通信系统。 该系统包括耦合到光缆中的干线路径的第一和第二电缆着陆站。 至少一个集线器节点通过相关联的集线器节点分支单元耦合到中继线路径。 在一个实施例中,中间节点通过光缆中的相关联的中间节点分支单元和中间节点路径耦合到集线器节点。 中间节点信号可以在中间节点和集线器节点之间传送而不设置在中继线路径上。 子节点通过光缆中的相关子节点分支单元和子节点路径耦合到中间节点中的至少一个。 也可以在子节点和中间节点之间传送子节点信号,而不在中继路径或中间节点路径上提供子节点信号。