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High Speed Digital Lines routed on non-metallic Spacecraft structures

机译:在非金属航​​天器结构上布设的高速数字线路

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摘要

Space missions and satellites are critical in terms of data distribution. On-board spacecraft it is necessary to have a data-handling network that connects instruments, mass-memory, processors, downlink telemetry, and other on-board sub-systems. Alluminium is used when a low-inductance and low-resistance ground path for fault currents and for currents induced by electromagnetic interference (EMI) is required. Standards such as SpaceWire (SpW) offer high-speed, low-power, simplicity, relatively low implementation costs, and architectural flexibility. These characteristics make SpW ideal for many space missions. In this paper, the electromagnetic interference which occurs when standard aluminium panels are replaced by lighter materials, like Carbon-Fiber-Reinforced polymer (CFRP), is analyzed. The parameters used for this assessment are the radiated E-field from high speed digital lines such as the SpW and the Low-Voltage Differential Signal (LVDS)
机译:太空飞行任务和卫星在数据分配方面至关重要。机载航天器上必须有一个连接仪器,海量存储器,处理器,下行链路遥测和其他机载子系统的数据处理网络。当需要用于故障电流和电磁干扰(EMI)感应电流的低电感和低电阻接地路径时,可使用铝。诸如SpaceWire(SpW)之类的标准提供了高速,低功耗,简单,相对较低的实现成本以及体系结构的灵活性。这些特性使SpW非常适合许多太空任务。在本文中,分析了用轻质材料(例如碳纤维增强聚合物(CFRP))代替标准铝面板时发生的电磁干扰。用于评估的参数是来自高速数字线路(例如SpW和低压差分信号(LVDS))的辐射电场

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