首页|分布式孔径相参合成原理、发展与技术实现综述

分布式孔径相参合成原理、发展与技术实现综述

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分布式孔径相参合成通过对多个分散布置小孔径的收/发信号进行相参调整,使协同的分布式系统可以用相对低的成本获得比拟于大孔径的功率孔径积,是替代大孔径的可行技术选择.该文首先阐述了分布式孔径相参合成的概念和实现原理,根据是否需要合成目的地处的外部信号输入,将相参合成的实现架构分为闭环式和开环式两类;然后,较为全面地综述了分布式孔径相参合成在导弹防御、深空遥测遥控、超远距离雷达探测、射电天文多领域发展应用情况;进一步阐述相参合成必要且用于对准各孔径收发信号时间和相位的关键技术,包括高精度分布式时频传递和同步技术,以及相参合成参数估计、测量标定和预测技术;最后对分布式孔径相参合成研究进行了总结和展望.
Review of Principles,Development and Technical Implementation of Coherently Combining Distributed Apertures
Coherently combining distributed apertures adjusts the transmitted/received signals of multiple distributed small apertures,allowing coordinated distributed systems to obtain high power aperture products at much lower cost than large aperture.This is a promising and viable technology as an alternative to using large apertures.This study describes the concept and principles of coherently combining distributed apertures.Depending on whether external signal inputs at the combination destination are necessary,the implementation architecture of coherent combination is classified into two categories:closed-and open-loop.The development of coherently combining distributed apertures and their application in fields such as missile defense,deep space telemetry control,radar detection over ultralong range,and radio astronomy are then comprehensively presented.Furthermore,key techniques for aligning the time and phase of the transmitted/received signals for each aperture are elaborated,which are also necessary for coherently combining distributed apertures,including high-precision distributed time-frequency transfer and synchronization,and coherently combining parameters estimation,measurement and calibration,and prediction.Finally,summary is presented,and the scope of future works in this field is explored.

Coherently combining distributed aperturesDistributed arrayTime-frequency transferCoherence degradation correction

刘兴华、王国玉、徐振海、汪连栋

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电子信息系统复杂电磁环境效应国家重点实验室 洛阳 471003

军事科学院军事科学信息研究中心 北京 100142

国防科技大学电子信息系统复杂电磁环境效应国家重点实验室 长沙 410073

北京航空航天大学 北京 100191

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分布式孔径相参合成 分布式阵列 时频传递 相参性退化校正

中国博士后科学基金

2023M734290

2023

雷达学报
中国科学院电子学研究所 中国雷达行业协会

雷达学报

CSTPCDCSCD北大核心EI
影响因子:0.667
ISSN:2095-283X
年,卷(期):2023.12(6)
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