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Fast time domain simulation of generic resonant mode power converter : mapping the stability region

机译:通用谐振模式功率转换器的快速时域仿真:映射稳定区域

摘要

A macromodeling technique for generic resonant-mode power converters is described. This technique enables the transient and frequency analyses of resonant converters, embedded in their control circuitry, to be carried out some three orders of magnitude faster than by full component-level circuit simulation. This increase in speed enables `an analysis' to be treated as a primitive operation and allows more complex interactions of an entire system to be explored. The paper describes the technique, and demonstrates the power of the idea with a much higher level analysis; a resonant-mode converter controlled by a feedback system, driving a complex load. Like any physical system of this nature, there are combinations of system parameters that can cause overall instability (oscillation). In a power conversion environment, this can be extremely dangerous. The example shown uses a three-component load (R, L, C) and generates the `stability surface' in {R, L, C} space that separates the stable from the unstable regions of overall operation. This also demonstrates that the volume of `component space' enclosed by the stability surface decreases monotonically with increasing system phase margin.
机译:描述了用于通用谐振模式功率转换器的宏建模技术。这种技术使嵌入在其控制电路中的谐振转换器的瞬态和频率分析比完整组件级电路仿真要快大约三个数量级。速度的提高使“分析”被视为原始操作,并允许探索整个系统的更复杂的交互。本文描述了该技术,并通过更高层次的分析来展示该思想的力量。由反馈系统控制的谐振模式转换器,驱动复杂的负载。像任何具有这种性质的物理系统一样,系统参数的组合也可能导致整体不稳定(振荡)。在电源转换环境中,这可能非常危险。所示示例使用三分量载荷(R,L,C),并在{R,L,C}空间中生成“稳定表面”,该空间将稳定区域与整体运行的不稳定区域分开。这也表明,被稳定表面包围的“组件空间”的体积随着系统相位裕度的增加而单调减小。

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