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Analysis of Self-Oscillations in Three-Level Hysteresis Current Controlled H-Bridge

机译:三级滞后电流控制H桥自振荡分析

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In direct-current control scheme, self-oscillations or limit cycles occur due to the hysteresis controller. In this contribution, the different types of self-oscillations in a three-level hysteresis current controlled H-bridge are analyzed. The investigations are based on Tsypkin’s method for self-oscillations in relay control systems. So, the conditions for the different types of self-oscillations are given and the frequency of the oscillation and the on-to-off-ratio or pulse width of the switching hysteresis output are calculated exactly. The values correspond to the switching frequency and the duty cycle of the H-bridge. Furthermore, some analyses about the transfer characteristic of the control loop are made.
机译:在直流控制方案中,由于滞后控制器而发生自振荡或极限循环。在该贡献中,分析了三级滞后电流控制H桥中的不同类型的自振荡。该研究基于Tsypkin在中继控制系统中的自振荡的方法。因此,给出了不同类型的自振荡的条件,并准确地计算了振荡的频率和开关滞后输出的对截止比或脉冲宽度。值对应于H桥的开关频率和占空比。此外,对控制回路的传递特性进行了一些分析。

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