跟踪用波形敏捷传感技术研究进展

S. P. Sira, A. Papandreou-Suppappola, D. Morrell
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引用次数: 30

摘要

传感器技术和信息处理的最新进展为灵敏传感波形的设计提供了新的灵活性。为了优化目标成本函数,传感器现在具有动态选择其发射或接收波形的能力。这揭示了主动传感中显著性能改进的新范式:动态波形适应环境条件、目标结构或信息特征。该手稿提供了一个审查的最新进展,在波形敏捷传感目标跟踪应用。针对两个有源传感器跟踪一个或多个移动目标的情况,提出了一种动态波形选择和配置方案。详细介绍了两种用于敏捷跟踪的顺序蒙特卡罗算法,以及相关的Matlab代码和仿真研究,以证明动态波形自适应的好处。这项工作不仅对雷达和声纳的从业者感兴趣,而且对其他可以动态设计波形的应用也很感兴趣,例如通信和生物传感。目录表:波形-敏捷目标跟踪应用公式/应用于窄带和宽带环境的动态波形选择/杂波跟踪的动态波形选择/结论/基于模糊函数的高斯包络GFM啁啾的CRLB评估/复杂包络的CRLB评估
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advances in Waveform-Agile Sensing for Tracking
Recent advances in sensor technology and information processing afford a new flexibility in the design of waveforms for agile sensing. Sensors are now developed with the ability to dynamically choose their transmit or receive waveforms in order to optimize an objective cost function. This has exposed a new paradigm of significant performance improvements in active sensing: dynamic waveform adaptation to environment conditions, target structures, or information features. The manuscript provides a review of recent advances in waveform-agile sensing for target tracking applications. A dynamic waveform selection and configuration scheme is developed for two active sensors that track one or multiple mobile targets. A detailed description of two sequential Monte Carlo algorithms for agile tracking are presented, together with relevant Matlab code and simulation studies, to demonstrate the benefits of dynamic waveform adaptation. The work will be of interest not only to practitioners of rada and sonar, but also other applications where waveforms can be dynamically designed, such as communications and biosensing. Table of Contents: Waveform-Agile Target Tracking Application Formulation / Dynamic Waveform Selection with Application to Narrowband and Wideband Environments / Dynamic Waveform Selection for Tracking in Clutter / Conclusions / CRLB Evaluation for Gaussian Envelope GFM Chirp from the Ambiguity Function / CRLB Evaluation from the Complex Envelope
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