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Stability of ideal thyristor and diode switching circuits

机译:理想晶闸管和二极管开关电路的稳定性

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This paper analyzes the stability of a general RLC circuit with ideal thyristors or diodes and periodic sources. Applications include high power thyristor controlled reactor and bridge rectifier circuits. The periodic steady states of the circuit are analyzed using a Poincare map and transversality conditions are given to guarantee the smoothness of the Poincare map. A simple and exact formula for the Jacobian of the Poincare map is proved. Account is taken of the varying state space dimension as diodes switch on and off. When the transversality conditions fail, switching times can jump or bifurcate. Examples show that these switching time bifurcations can cause instability of thyristor circuits and mode changes of diode circuits. The simplification of the Jacobian formula is used to explain why the switching time bifurcations occur and are not predicted by the eigenvalues of the Jacobian. Periodic orbits of ideal diode circuits are proved to be stable using Jacobian and incremental energy methods. A source of damping in switching circuits is identified
机译:本文分析了具有理想晶闸管或二极管以及周期性电源的普通RLC电路的稳定性。应用包括大功率晶闸管控制电抗器和桥式整流电路。使用庞加莱图分析电路的周期性稳态,并给出横向条件以保证庞加莱图的平滑性。证明了庞加莱图的雅可比行列式的简单准确公式。考虑到二极管开关时状态空间尺寸的变化。当横向条件失败时,切换时间可能会跳跃或分叉。实例表明,这些开关时间分叉会引起晶闸管电路的不稳定性和二极管电路的模式变化。雅可比公式的简化用于解释为什么发生切换时间分叉而不是由雅可比的特征值预测。使用雅可比和增量能量方法证明了理想二极管电路的周期轨道是稳定的。确定开关电路中的阻尼源

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