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Study on APD real time compensation methods of laser Detection system

机译:激光探测系统APD实时补偿方法研究

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With the monochromatic and the directional capability of the laser, laser detection system is confidential in anti-jamming. Detection accuracy is improved significantly as the result of laser's good orientation ability. Sensitivity is enhanced as laser's high-brightness characteristic. With the development of laser technology and laser devices, laser detections are developed both in civilian and military areas. In the military field, laser detection system has been widely applied in various types of tactical missiles, the technique is more mature. Because photo detectors receive the backscattering echo signal of target in laser detection system, they are required sensitive enough to weak signal. With APD's salient features of high sensitivity, rapid response speed, high response frequency and low noise equivalent power, etc.; PIN is replaced by APD to improve sensitivity of laser detection system in recent years. The signal magnification is inadequate in laser detection system, the detector output is usually amplified by multistage amplifiers. And then the system noise includes detector noise and latter amplifiers noise. With its high internal gain, APD becomes the primary noise source of receiving system. This point can be attested by analyzing the transfer function of laser detection system receiver. To ensure the system detecting ability, APD noise must be mitigated as low as possible. According to a large number of experiments, the power signal-to-noise (SNR) and the best multiplication factor of APD are mostly affected by background radiation and temperature. In order to make APD operate at state of the best multiplication factor, the optimum bias must be selected due to the actual operating circumstance. Therefore, APD realtime compensation must be adopted.
机译:凭借激光的单色和定向能力,激光检测系统在抗干扰方面是机密的。激光具有良好的定向能力,可大大提高检测精度。作为激光器的高亮度特性,灵敏度得到了提高。随着激光技术和激光设备的发展,民用和军用领域都开发了激光检测技术。在军事领域,激光探测系统已广泛应用于各种战术导弹,技术更加成熟。由于光电探测器在激光探测系统中接收目标的反向散射回波信号,因此要求它们对微弱的信号足够敏感。具有APD的显着特点是灵敏度高,响应速度快,响应频率高,噪声等效功率低等;近年来,APD取代了PIN,以提高激光检测系统的灵敏度。在激光检测系统中,信号放大率不足,检测器输出通常由多级放大器放大。然后,系统噪声包括检测器噪声和后级放大器噪声。由于其内部增益高,APD成为接收系统的主要噪声源。通过分析激光检测系统接收器的传递函数可以证明这一点。为了确保系统检测能力,必须尽可能降低APD噪声。根据大量实验,APD的功率信噪比(SNR)和最佳乘数因子主要受背景辐射和温度影响。为了使APD在最佳倍增系数状态下工作,必须根据实际工作情况选择最佳偏置。因此,必须采用APD实时补偿。

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