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A New Approach for Accurate Prediction of Subharmonic Oscillation in Switching Regulators—Part II: Case Studies

机译:准确预测开关调节器次谐波振荡的新方法-第二部分:案例研究

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This part of the paper illustrates the use of the expression derived in Part I for predicting subharmonic oscillation in switching regulators. Six case studies with different control schemes from the recent literature are used to validate the novel approach and the new derived expression, which is benchmarked for these case studies against results obtained using the discrete-time modeling approach or Floquet theory combined with Filippov method. Numerical simulations from the circuit-level switched models, implemented in PSIM software, are used to demonstrate the correctness of the derived closed-form condition. A procedure is presented to apply the approach of the paper to power converters with nonlinear sources, such as photovoltaic (PV) arrays or fuel cells. Experimental measurements from a boost converter prototype for PV applications are also provided to validate the theoretical predictions and the numerical simulations showing a remarkable agreement.
机译:本文的这一部分说明了在第一部分中得出的表达式在预测开关调节器中的次谐波振荡中的用途。使用来自最新文献的具有不同控制方案的六个案例研究来验证该新方法和新的派生表达式,该模型针对这些案例研究相对于使用离散时间建模方法或Floquet理论与Filippov方法相结合获得的结果进行了基准测试。在PSIM软件中实现的电路级开关模型的数值模拟用于证明导出的闭合形式条件的正确性。提出了一种程序来将本文的方法应用于具有非线性源的功率转换器,例如光伏(PV)阵列或燃料电池。还提供了用于光伏应用的升压转换器原型的实验测量值,以验证理论预测和数值模拟,从而显示出惊人的一致性。

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