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A phase-correlated duo-binary waveform generation technique for millimeter-wave radar pulses

机译:毫米波雷达脉冲的相位相关双二进制波形生成技术

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We propose a technique for generating millimeter-wave radar waveforms using edge-triggered pulse generator circuits. By synchronizing the chip rate to the oscillation frequency of a binary control signal, a phase shift is introduced in the generated pulses. This way, the millimeter-wave signal can be phase-modulated without the need of additional circuit elements. We show that high-resolution radar waveforms with low range side lobes can be generated with this technique. Using brute-force optimization, we evaluate all possible sequences up to a sequence length of 25 chips and identify optimal waveforms for each length. Optimal sequences with the energy centered at zero delay and side lobes not exceeding unity are presented. The optimized waveforms are measured and verified using an in-house resonant tunneling diode (RTD) metal-oxide-semiconductor field-effect transistor (MOSFET) pulse generator. The matched filter response of the optimal waveforms is reproduced closely in the measurements. The results enable increased sensitivity in radar systems using coherent millimeter-wave pulse generators for low power applications, as for instance, radar gesture recognition in handheld devices. Using pulsed millimeter-wave radar systems with low duty cycles, continuously running oscillators can be avoided and systems with ultra-low power consumption are possible.
机译:我们提出了一种使用边沿触发脉冲发生器电路产生毫米波雷达波形的技术。通过使码片速率与二进制控制信号的振荡频率同步,在产生的脉冲中引入相移。这样,无需附加电路元件就可以对毫米波信号进行相位调制。我们表明,可以使用此技术生成具有低射程旁瓣的高分辨率雷达波形。使用蛮力优化,我们可以评估所有可能的序列(序列长度不超过25个码片),并为每个长度确定最佳波形。给出了能量集中在零延迟和旁瓣不超过1的最优序列。使用内部谐振隧道二极管(RTD)金属氧化物半导体场效应晶体管(MOSFET)脉冲发生器来测量和验证优化的波形。最佳波形的匹配滤波器响应在测量中被精确再现。结果使在使用低功率应用的相干毫米波脉冲发生器的雷达系统中提高了灵敏度,例如,手持设备中的雷达手势识别。使用具有低占空比的脉冲毫米波雷达系统,可以避免连续运行的振荡器,并且可以实现功耗极低的系统。

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