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Study on Rejection Characteristic of Current Loop to the Base Disturbance of Optical Communication System

机译:电流回路抑制特性研究光通信系统基础扰动

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As laser has narrow transmitting beam and small divergence angle, the LOS (Line of Sight) stabilization of optical communication system is a primary precondition of laser communication links. Compound axis control is usually adopted in LOS stabilization of optical communication system, in which coarse tracking and fine tracking are included. Rejection against high frequency disturbance mainly depends on fine tracking LOS stabilization platform. Limited by different factors such as mechanical characteristic of the stabilization platform and bandwidth/noise of the sensor, the control bandwidth of LOS stabilization platform is restricted so that effective rejection of high frequency disturbance cannot be achieved as it mainly depends on the isolation characteristic of the platform itself. It is proposed by this paper that current loop may reject the effect of back-EMF. By adopting the method of electric control, high frequency isolation characteristic of the platform can be improved. The improvement effect is similar to increasing passive vibration reduction devices. Adopting the double closed loop control structure of velocity and current with the combining of the rejection effect of back-EMF caused by current loop is equivalent to reducing back-EMF coefficient, which can enhance the isolation ability of the LOS stabilization platform to high frequency disturbance.
机译:随着激光具有窄的传输光束和小的发散角,光学通信系统的LOS(视线)稳定是激光通信链路的主要前提。复合轴控制通常采用光通信系统的LOS稳定化,其中包括粗略跟踪和精细跟踪。对高频干扰的拒绝主要取决于精细跟踪LOS稳定平台。受不同因素的限制,如稳定平台的机械特性和传感器的带宽/噪声,LOS稳定平台的控制带宽受到限制,因此不能实现高频扰动的有效拒绝,因为它主要取决于所在的隔离特性平台本身。本文提出了当前环路可能拒绝反态源的影响。通过采用电控方法,可以提高平台的高频隔离特性。改善效果类似于增加被动减振装置。采用速度和电流的双闭环控制结构,随着电流回路引起的反电动势抑制效果的组合相当于降低反态系数,这可以提高LOS稳定平台到高频干扰的隔离能力。

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