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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Concept and Implementation of a PLL-Controlled Interlaced Chirp Sequence Radar for Optimized Range–Doppler Measurements
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Concept and Implementation of a PLL-Controlled Interlaced Chirp Sequence Radar for Optimized Range–Doppler Measurements

机译:PLL控制的隔行线性调频序列雷达的概念和实现,用于优化距离多普勒测量

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In this paper, we introduce a novel concept for frequency-modulated continuous-wave radar. The approach is based on an interlaced chirp sequence waveform, which is controlled by phase-locked loops (PLLs). The use of PLLs improves frequency chirp linearity and reduces phase noise compared with open-loop voltage-controlled oscillators commonly used to generate the fast chirps. In contrast to basic range-Doppler processing, it enables higher target velocities to be detected unambiguously at the same resolution, which makes it suitable for automotive applications. Separate frequency synthesizers generate the interlaced ramps in the system. An RF switch combines these two signals to suppress transients caused by oscillator overshoot and to avoid incoherencies due to programming times of the PLL ICs. We built a prototype radar system in K-band. The test results are promising and bode well for other applications.
机译:在本文中,我们介绍了一种用于调频连续波雷达的新颖概念。该方法基于交错的线性调频脉冲序列波形,该波形由锁相环(PLL)控制。与通常用于产生快速线性调频的开环压控振荡器相比,PLL的使用改善了线性线性调频线性度并降低了相位噪声。与基本的距离多普勒处理相比,它可以在相同的分辨率下毫无疑问地检测到更高的目标速度,这使其适用于汽车应用。单独的频率合成器在系统中生成交错的斜坡。 RF开关将这两个信号组合在一起,以抑制由振荡器过冲引起的瞬态,并避免由于PLL IC的编程时间而引起的不一致性。我们在K波段建立了原型雷达系统。测试结果是有希望的,并预示着其他应用的良好前景。

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