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Large-signal stability-oriented design of boost regulators based on a Lyapunov criterion with nonlinear integral

机译:基于非线性积分李雅普诺夫准则的升压调节器大信号稳定化设计

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Exact nonlinear differential equations of boost pulsewidth modulation converters (either with hard-switching or soft-switching, in continuous and discontinuous conduction mode) are obtained, without using average approximations. An extended system of equations also contains the differential equation of the integrated error between the reference and the output voltage. A positive-definite Lyapunov function is defined, including in its expression a nonlinear integral of type Lurie. Sufficient conditions for the Lyapunov stability of the system are determined. Consequently, constraints on the feedback circuit parameters that assure the large-signal stability of the system are formulated. These constraints relate the parameters of the feedback circuit with the values of the power stage elements, load, switching frequency, steady-state duty-cycle. For different values of the steady-state duty-cycle, graphical boundaries which assure the large-signal stability for all the variation of the load are designed. Simulations and experiments confirm the stability of the design.
机译:在不使用平均逼近的情况下,获得了升压脉宽调制转换器的精确非线性微分方程(在连续和不连续导通模式下,无论是硬开关还是软开关)。扩展的方程组还包含参考电压和输出电压之间积分误差的微分方程。定义了一个正定的Lyapunov函数,在表达式中包括Lurie类型的非线性积分。确定了系统Lyapunov稳定性的充分条件。因此,制定了对确保系统的大信号稳定性的反馈电路参数的约束。这些限制条件将反馈电路的参数与功率级元件,负载,开关频率,稳态占空比的值相关联。对于稳态占空比的不同值,设计了图形边界,以确保所有负载变化的大信号稳定性。仿真和实验证实了设计的稳定性。

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