Processor power subsystem architectures

R. Kollman, D. Chamberlin
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引用次数: 1

Abstract

This trade study compares the cost, weight, volume and reliability of a power subsystem for an avionic processor. It considers a range of options from a centralized power subsystem to a distributed subsystem with an intermediate bus. The centralized approach was found unsuitable for the lower voltage logic devices that will come to the market over the next few years, a distributed approach will be required. An intermediate voltage bus is preferred over prime power distribution due to safety, high voltage insulation and failure modes effects. Choices of the intermediate bus voltage favor lower voltages which allow the use of buck regulators rather than a transformer coupled approach. An intermediate voltage system using buck regulators provides: 50% cost savings; 20% weight reduction; 25 volume reduction; and 75% reliability improvement when compared to a higher (50 V) distribution voltage.
处理器电源子系统体系结构
本研究比较了航空电子处理器电源子系统的成本、重量、体积和可靠性。它考虑了从集中式电源子系统到带有中间总线的分布式子系统的一系列选项。集中式方法被发现不适合未来几年将进入市场的低压逻辑器件,将需要分布式方法。由于安全、高压绝缘和失效模式的影响,中压母线优于主配电。中间母线电压的选择有利于较低的电压,允许使用降压稳压器而不是变压器耦合的方法。使用降压稳压器的中压系统提供:节省50%的成本;重量减轻20%;体积减小25;与更高(50 V)配电电压相比,可靠性提高75%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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