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A new gain control and amplifying circuit for the 3D imaging lidar

机译:用于3D成像激光雷达的新型增益控制和放大电路

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In order to avoid the shortcoming of the passive gain control method in the 3D imaging lidar (light detection and ranging), we propose a new gain control method, which can adjust the gain of the amplifying circuit according to the target distance. This method complies with the principle that the laser echo amplitude is inversely proportional to the square of the target distance. In addition, to simplify the complexity of the gain control module, we propose a simple implementation method based on the charging process of a capacitor. Firstly, the theoretical waveform of the proposed gain control method and the gain control error are analyzed and simulated. The results indicates that when the gain ranged from 1 to 100, the maximum of gain error is less than 28% in the whole target distance range, and the gain error is less than 5% in the most target distance range. Based on this method, a new gain control and amplifying circuit has been developed, which is mainly composed of an amplifying module and a gain control module. The gain control module is used to generate a gain control voltage and apply the voltage to the gain control of the amplifying module. Finally, some experiments have been carried out to verify the entire circuit functions and performances. The experimental results show that the output signal amplitude keep constant on the whole when the target distance is changing. The pass band of the circuit ranges from 0.33 MHz to 150 MHz, and the maximum gain is 316.
机译:为了避免被动增益控制方法在3D成像激光雷达中的缺点(光检测和测距),我们提出了一种新的增益控制方法,该方法可以根据目标距离调整放大电路的增益。该方法符合激光回波幅度与目标距离的平方成反比的原理。另外,为简化增益控制模块的复杂性,我们提出了一种基于电容器充电过程的简单实现方法。首先,对所提出的增益控制方法的理论波形和增益控制误差进行了分析和仿真。结果表明,当增益在1到100范围内时,在整个目标距离范围内最大增益误差小于28%,在最大目标距离范围内增益误差小于5%。基于这种方法,开发了一种新的增益控制和放大电路,其主要由放大模块和增益控制模块组成。增益控制模块用于产生增益控制电压,并将该电压施加到放大模块的增益控制。最后,已经进行了一些实验以验证整个电路的功能和性能。实验结果表明,当目标距离变化时,输出信号幅度总体上保持恒定。电路的通带范围为0.33 MHz至150 MHz,最大增益为316。

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