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Design of drive control system for high efficiency compact ground station antenna for remote sensing satellites

机译:遥感卫星高效紧凑地面站天线驱动控制系统设计

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This article presents the design of drive control system for compact mobile ground station antenna for remote sensing data applications. This ground station antenna has been designed for receiving data from IRS Satellites in X-band (8000–8400 MHz). Tracking mode considered is Orbit Prediction Tracking (OPT), the mount of antenna is Elevation over Azimuth having dual drive, dual axes & un-tapered reflector (2.7m), capable of operating with wind velocity of 60KMPH, gives efficiency more than 90%. The design demonstrates the design of mechanical wind loads acting on reflector viz. Wind velocity, wind pressure, force, moments & estimation of optimum mechanical torque required for movement of antenna reflector. With estimated design results finalization of optimum gear box, Servo motor & Servo amplifiers are presented. In this paper the Implementation of antenna closed loop control system, design steps & improving transient step response of system is exhibited.
机译:本文介绍了用于遥感数据应用的紧凑型移动地面站天线的驱动控制系统的设计。该地面站天线设计用于从X波段(8000-8400 MHz)的IRS卫星接收数据。所考虑的跟踪模式是轨道预测跟踪(OPT),天线的安装位置是具有双驱动,双轴和无锥度反射器(2.7m)的方位角上的仰角,能够以60KMPH的风速运行,效率超过90% 。该设计演示了作用在反射镜上的机械风荷载的设计。风速,风压,力,力矩以及估算天线反射器移动所需的最佳机械扭矩。通过估算的设计结果,确定了最佳齿轮箱,伺服电机和伺服放大器。本文介绍了天线闭环控制系统的实现,设计步骤和改进系统的瞬态阶跃响应。

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