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A frequency-domain approach to fix the commutation frequency in relay control systems: A DC motor case-study

机译:修复中继控制系统中换向频率的频域方法:DC电机案例研究

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Control of commuting devices can be naturally achieved by switching mechanisms, designed through relay control systems and sliding-mode control, for example. Consequently, a robust operation is guaranteed but the resulting operating switching frequency is normally high and varying. Such behavior is undesired in power electronics as it implies an increase in commutation losses, devices heating, and a reduction of their life-span. Despite many modulation techniques are currently available, they commonly preclude the natural interaction between switching devices and the designed controller, making the resulting behavior of the system to be unforeseeable. In this work, a novel technique to fix the steady-state operating frequency of a relay controller is introduced. This is achieved by cascading a simple all-pass filter whose resulting steady oscillation can be predicted through the Describing Function (DF) approach. The augmented relay makes possible to identify oscillations for systems with relative degree 1 unlike the classical hysteresis approach, which requires relative degrees of 2 if using DF. As validation, simulated results are shown considering standard problem settings, as well as a co-simulated DC motor controller.
机译:例如,可以通过切换机构自然地实现通勤设备,例如通过继电器控制系统和滑动模式控制设计。因此,保证了稳健的操作,但是由此产生的操作切换频率通常高且变化。这种行为在电力电子器件中是不希望的,因为它意味着换向损失,设备加热和减少其寿命的增加。尽管目前有许多调制技术,但它们通常排除开关装置和设计控制器之间的自然相互作用,使得系统的产生行为是不可预见的。在这项工作中,介绍了一种解决中继控制器的稳态工作频率的新技术。这是通过级联简单的全通滤波器来实现,其通过描述函数(DF)方法可以预测所得到的稳定振荡。与古典滞后方法不同,增强继电器可以识别具有相对程度的系统的振荡,这与古典滞后方法需要2,如果使用DF,则需要2的相对度。作为验证,显示模拟结果考虑标准问题设置,以及共模的直流电机控制器。

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