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A novel approach for designing diversity radar waveforms that are orthogonal on both transmit and receive

机译:设计在发射和接收上正交的分集雷达波形的新颖方法

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In this paper, we present an approach to the design of orthogonal, Doppler tolerant waveforms for diversity waveform radar (e.g. MIMO radar). Previous work has given little consideration to the design of radar waveforms that remain orthogonal when they are received. Our research is focused on: (1) developing sets of waveforms that are orthogonal on both transmit and receive, and (2) ensuring that these waveforms are Doppler tolerant when properly processed. Our proposed solution achieves the above mentioned goals by incorporating direct sequence spread spectrum (DSSS) coding techniques on linear frequency modulated (LFM) signals. We call it Spread Spectrum Coded LFM (SSCL) signaling. Our transmitted LFM waveforms are rendered orthogonal with a unique spread spectrum code. At the receiver, the echo signal will be decoded using it's spreading code. In this manner, transmitted orthogonal waveforms can be match filtered only with the intended received signals. From analytical expressions of the waveforms we have designed and from simulation results, we found that: (a) cross-ambiguity function of two LFM spread spectrum coded (orthogonal) waveforms is small for all delays and Dopplers (i.e. transmit and receive signals satisfy the orthogonality constraint), (b) The length and type of the spread spectrum code determines amount of suppression (i.e. complete orthogonal or near orthogonal of the received signal), (c) We can process the same received signal in two different ways; one method can provide LFM signal resolution and the other method can provide ultra high resolution.
机译:在本文中,我们提出了一种用于分集波形雷达(例如MIMO雷达)的正交,多普勒容忍波形的设计方法。以前的工作很少考虑在接收时保持正交的雷达波形的设计。我们的研究重点在于:(1)开发在发射和接收上都正交的波形集,以及(2)确保在正确处理后这些波形具有多普勒耐受性。我们提出的解决方案通过在线性调频(LFM)信号上结合直接序列扩频(DSSS)编码技术来实现上述目标。我们称其为扩频编码LFM(SSCL)信令。我们传输的LFM波形与唯一的扩频代码正交。在接收器处,回声信号将使用其扩展码进行解码。以这种方式,可以仅用预期的接收信号对发送的正交波形进行匹配滤波。从我们设计的波形的解析表达式和仿真结果,我们发现:(a)对于所有延迟和多普勒信号,两个LFM扩频编码(正交)波形的交叉歧义函数很小(即,发射和接收信号满足(b)扩频码的长度和类型决定抑制量(即接收信号的完全正交或接近正交),(c)我们可以用两种不同的方式处理相同的接收信号;一种方法可以提供LFM信号分辨率,另一种方法可以提供超高分辨率。

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