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首页> 外文期刊>Aerospace and Electronic Systems, IEEE Transactions on >Determination of Sweep Linearity Requirements in FMCW Radar Systems Based on Simple Voltage-Controlled Oscillator Sources
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Determination of Sweep Linearity Requirements in FMCW Radar Systems Based on Simple Voltage-Controlled Oscillator Sources

机译:基于简单压控振荡器源的FMCW雷达系统扫掠线性要求的确定

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摘要

Linear frequency modulated (FM), or chirp, pulse compression is a widely used technique for improving the range resolution of radar systems, although it often places quite stringent demands on FM sweep linearity. This paper examines the impact of sweep nonlinearities on the performance of frequency modulated continuous wave (FMCW) radar systems, particularly those employing simple voltage-controlled oscillator (VCO) sources, using a new and straightforward approach based on the fractional slope variation (FSV). Modeled results are presented, assuming a square-law source nonlinearity representation, showing the effect of such nonlinearities on point-target response and range resolution. These results are then related to the standard definition of linearity. Measurements from a commercial VCO are finally used to convincingly validate the work, resulting in a simple and practical method to predict the impact of source nonlinearity, as defined by the FSV parameter, on the performance of an FMCW radar system.
机译:线性调频(FM)或线性调频脉冲压缩是提高雷达系统距离分辨率的一种广泛使用的技术,尽管它通常对FM扫描线性度有非常严格的要求。本文使用基于分数斜率变化(FSV)的新方法,研究了扫描非线性对调频连续波(FMCW)雷达系统(特别是那些采用简单压控振荡器(VCO)源的雷达系统)性能的影响。 。给出了建模结果,并假设了平方律源非线性,表示了此类非线性对点目标响应和距离分辨率的影响。然后,这些结果与线性的标准定义有关。最后,使用商用VCO的测量结果来令人信服地验证工作,从而得到一种简单实用的方法来预测由FSV参数定义的源非线性对FMCW雷达系统性能的影响。

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