用于飞机地面动力装置的400 hz逆变器带相位校正的无差拍控制器

D. Manohar, P. N. Seema
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引用次数: 3

摘要

数字控制器在更新中频逆变器脉宽调制(PWM)时,面临着中频逆变器中严重的相位延迟问题。本文介绍了一种采用无差拍控制的数字控制器,用于维持400 hz逆变器的相位平衡和交流电压调节。干扰解耦网络与无差拍控制器相结合,具有良好的抗干扰能力,提高了系统对负载变化的鲁棒性。然而,数字控制器的性能受到采样、A/D转换和数字处理器中程序的执行的影响。为了提高性能,通过提供相位校正方案来进行时延补偿。通过傅里叶分析测量相位差,并在SPWM控制策略的参考正弦波形处进行补偿。在MATLAB/Simulink平台上进行仿真,得到了单相和三相桥电路在线性和非线性载荷作用下的波形。
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Deadbeat controller with phase corrector for 400-Hz inverter used in ground power units of aircrafts
The digital controller faces a severe phase delay problem in medium frequency inverters while updating the pulse width modulation (PWM) of the inverter. In this paper, a digital controller for maintaining the phase balance and ac voltage regulation of a 400-Hz inverter for the ground power unit (GPU) using Deadbeat control is presented. The disturbance decoupling networks are provided along with the Deadbeat controller to give good disturbance rejection capability and improve the robustness towards the load variations. However, the performance of the digital controller is affected by the sampling, A/D conversion and the execution of the programs in digital processors. To improve the performance, the time delay compensation is done by providing a phase corrector scheme. The difference in phase is measured by Fourier analysis, and the compensation is provided at the reference sinusoidal waveform of the SPWM control strategy. Simulation is done on MATLAB/Simulink platform and the waveforms for single phase as well as three phase bridge circuits are obtained for linear as well as non-linear loads.
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