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A Wide Dynamic Range Laser Radar Receiver Based on Input Pulse-Shaping Techniques

机译:基于输入脉冲整形技术的宽动态范围激光雷达接收机

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This paper presents a Time-of-Flight laser radar receiver based on pulse-shaping at the input to the receiver channel, in which the first zero-crossing point of the converted pulse is marked as the timing moment. In this technique, an LC resonator is combined with a nonlinear feedback TIA to achieve high accuracy and high precision within a wide dynamic range. The key advantage is that the receiver does not require any post compensation or gain control techniques so that the total complexity of the TOF radar is reduced considerably. Measurements made in a 0.35 mu m standard CMOS process show a bandwidth of 230MHz and an input-referred noise of 70nA RMS. The receiver chip consumes similar to 155mW power from a 3.3V supply. The single-shot precision and accuracy of the receiver within a dynamic range of 1 : 50, 000 are similar to 15mm(SNR = 12) and similar to +/- 15mm respectively. A wider dynamic range can be achieved with a larger accuracy tolerance. The functionality of the proposed receiver channel is also verified over an input pulse variation and temperature range of 0 degrees C to 50 degrees C.
机译:本文介绍了一种基于输入到接收器通道的脉冲整向的飞行时间激光雷达接收机,其中转换脉冲的第一零交叉点被标记为定时时刻。在该技术中,LC谐振器与非线性反馈TIA结合,以在宽动态范围内实现高精度和高精度。关键优点是接收器不需要任何柱补偿或增益控制技术,使得TOF雷达的总复杂性显着降低。在0.35 mu m标准CMOS过程中进行的测量显示为230MHz的带宽和70NA RMS的输入引用噪声。接收器芯片消耗类似于3.3V电源的155mW电源。接收器在1:50,000的动态范围内的单次精度和精度类似于15mm(SNR = 12),并且分别类似于+/- 15mm。可以通过更大的精度容差来实现更宽的动态范围。所提出的接收机通道的功能也在输入脉冲变化和0°C至50c的温度范围内验证。

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