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Matching Space Antenna Deformation Electronic Compensation Strategies to Support Structure Architectures

机译:匹配空间天线变形电子补偿策略以支持结构体系结构

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摘要

Radar systems are engineered to achieve a complex, yet functional, balance between diverse subsystems and competing requirements. One important trade for large deployable space radar antennas is between antenna dimensional stability and electronic signal processing for deformation compensation. This trade is first investigated for several different electronic compensation methods, and compensation capabilities are mapped into structural requirements. Second the structural requirements are translated into appropriate structural architectures. The scope of this study is limited to space radar systems, where loads causing antenna deformations differ significantly from terrestrial systems. Compensation strategies that allow structural requirements to be reduced by several orders of magnitude are identified. When considered early in the systems engineering process, the methods presented herein can be used to form a rationale for the selection and the development of a complementary combination of compensation electronics and structural architectures.
机译:雷达系统经过精心设计,可以在不同子系统和竞争需求之间实现复杂而功能强大的平衡。大型可部署空间雷达天线的一项重要交易是在天线尺寸稳定性和用于变形补偿的电子信号处理之间。首先研究几种不同的电子补偿方法,然后将补偿能力映射到结构要求中。其次,将结构要求转换为适当的结构体系结构。本研究的范围仅限于空间雷达系统,在该系统中,引起天线变形的负载与地面系统有很大不同。确定了可以使结构要求降低几个数量级的补偿策略。当在系统工程过程的早期考虑时,本文提出的方法可用于形成选择和开发补偿电子设备和结构体系结构的互补组合的原理。

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