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Accuracy improvement in range measurements of short-range FSK radars

机译:短程FSK雷达测距精度的提高

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Frequency-shift-keying (FSK) radars are used to measure the absolute range and radial speed of multiple moving targets with different velocities in short-range scenarios. The range is calculated from a well-known formula that depends on the phase difference of the in-phase/quadrature (I/Q) components associated with the two time-multiplexed transmitted tones. From a signal perspective, this work demonstrates that an additional novel term in the equation must be compensated to gain enhanced range accuracy in the measurements. This may facilitate the exploitation of longer waveform periods, leading to a relaxation in the stringent locking-time requirements currently imposed on the phase-locked loops of the signal-generation blocks in FSK radars. Moreover, detailed simulation examples for multiple moving targets are addressed. The obtained results validate the theoretical framework and the proposed computationally-efficient compensation algorithm for improved absolute-range-measurement accuracy in FSK radars.
机译:频移键控(FSK)雷达用于在短距离场景中测量具有不同速度的多个移动目标的绝对距离和径向速度。该范围是根据众所周知的公式计算得出的,该公式取决于与两个时分复用的传输音调相关的同相/正交(I / Q)分量的相位差。从信号的角度来看,这项工作表明必须对方程中的另一个新颖项进行补偿,以提高测量的范围精度。这可以促进较长波形周期的利用,从而导致当前对FSK雷达中信号生成模块的锁相环施加的严格锁定时间要求的放松。此外,针对多个移动目标的详细仿真示例也得到了解决。获得的结果验证了理论框架和所提出的计算有效的补偿算法,从而提高了FSK雷达的绝对距离测量精度。

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