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Digital controller design for full-bridge Boost Rectifier using Singular Perturbation method based on pseudo continuous approach with power factor correction

机译:基于PSEUDO连续方法的奇异扰动方法,具有功率因数校正的奇异扰动方法的全桥梁升压整流器的数字控制器设计

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摘要

The systematic approach of designing a robust digital controller to solve output regulation problem for a full bridge boost rectifier with unknown external disturbances and varying parameters is discussed. The design of digital controller based on the so-called pseudo-continuous approach by using Singular Perturbation is presented, where this controller is the result of continuous-time controller discretization. In the paper the control scheme for full bridge Boost Rectifier begins with the assertion that inductor currents are “fast” states and capacitor voltages are “slow” states. This assertion must be true for power factor correction converter to allow independent control of current and voltage. The continuous-time controller using proportional integral approach in feedback is used, and the effect of discretization at discrete time instants has been taken into account by inclusion of a zero-order hold transfer function. The pseudo-continuous-time model of a control loop with the pure time delay is used to calculate the parameters of a digital controller, where the pure delay is a result of the zero-order hold transfer function approximation. Numerical simulation for full bridge boost rectifier in discrete mode is presented.
机译:设计一个稳定数字控制器解决输出调节问题与未知的外部干扰和参数变化全桥整流升压的系统方法进行了讨论。基于通过使用奇异摄动的所谓的伪连续方法的数字控制器的设计提出,其中,该控制器是连续时间控制器离散化的结果。在纸全桥整流升压控制方案开始断言,电感电流是“快”的状态和电容器的电压是“慢”的状态。这种说法必须是真实的功率因数校正转换器允许的电流和电压的独立控制。使用反馈比例积分方法的连续时间控制器被使用,并且离散的在离散时间瞬间的效果已经通过包括一个零阶保持传递函数的考虑。与纯的时间延迟的控制回路的伪连续时间模型被用来计算一个数字控制器,其中所述纯延迟是零阶保持传递函数近似的结果的参数。在离散模式全桥整流升压数值模拟呈现。

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