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Serial Back-Plane Technologies in Advanced Avionics Architectures

机译:先进航空电子架构中的串行背板技术

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摘要

Current back plane technologies such as VME, and current personal computer back planes such as PCI, are shared bus systems that can exhibit nondeterministic latencies. This means a card can take control of the bus and use resources indefinitely affecting the ability of other cards in the back plane to acquire the bus. This provides a real hit on the reliability of the system. Additionally, these parallel busses only have bandwidths in the 100s of megahertz range and EMI and noise effects get worse the higher the bandwidth goes. To provide scalable, fault-tolerant, advanced computing systems, more applicable to today s connected computing environment and to better meet the needs of future requirements for advanced space instruments and vehicles, serial back-plane technologies should be implemented in advanced avionics architectures. Serial backplane technologies eliminate the problem of one card getting the bus and never relinquishing it, or one minor problem on the backplane bringing the whole system down. Being serial instead of parallel improves the reliability by reducing many of the signal integrity issues associated with parallel back planes and thus significantly improves reliability. The increased speeds associated with a serial backplane are an added bonus.
机译:当前的背板技术(例如VME)和当前的个人计算机背板(例如PCI)是共享总线系统,可以表现出不确定的延迟。这意味着卡可以控制总线并无限期地使用资源,从而影响背板上其他卡获取总线的能力。这确实对系统的可靠性产生了影响。此外,这些并行总线的带宽仅在100兆赫兹范围内,而且EMI越高,噪声影响就越差。为了提供可扩展的,容错的,先进的计算系统,使其更适用于当今的连接计算环境,并更好地满足未来对先进空间仪器和运载工具的需求,应在先进的航空电子体系结构中实现串行背板技术。串行背板技术消除了一张卡获取总线并且永不放弃总线的问题,或者消除了背板上的一个小问题,使整个系统瘫痪。串行而不是并行通过减少与并行背板相关的许多信号完整性问题来提高可靠性,从而显着提高可靠性。与串行背板关联的提高的速度是额外的好处。

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    Varnavas, Kosta;

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  • 年度 2005
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