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The design of phase-locked loop control system based on FPGA

机译:基于FPGA的锁相环控制系统设计

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The space optical remote sensor has high requirements for control precision and stable performance of actuator. In this paper, the effect of steady and variable speed control system is analyzed from structure, principle and simulation, according to the characteristics of phase-locked loop control technology. In order to improve the integration of system, the hardware circuit is achieved by FPGA, and correctness is proved on the basis of the running status of motor. Results show that phase-locked loop control system designed by FPGA can realize high precision steady speed control under 0.4 per thousand, in the condition of output frequency between 600Hz and 800Hz. When speed slope don't exceed 20Hz/s, the system can obtain smooth variable speed control, and track the input signal changes precisely. The design satisfies the requirements for the control system of optical remote sensor.
机译:空间光学远程传感器对控制精度和稳定性的执行器性能具有高要求。 本文根据锁相环控制技术的特点,分析了稳态和变速控制系统的效果,原理和模拟。 为了改善系统的集成,硬件电路是通过FPGA实现的,并且基于电动机的运行状态证明了正确性。 结果表明,由FPGA设计的锁相环控制系统可以在600Hz和800Hz之间的输出频率的情况下实现高精度稳态速度控制。 当速度斜率不超过20Hz / s时,系统可以获得平滑的变速控制,并准确地跟踪输入信号的变化。 该设计满足了光学遥控器控制系统的要求。

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