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Effects of switching-time uncertainties on pulsewidth-modulated power converters: modeling and analysis

机译:开关时间不确定性对脉宽调制功率转换器的影响:建模和分析

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This paper introduces a stochastic model for pulsewidth-modulated (PWM) switching dc-dc boost converters as an enhancement to conventional deterministic models. The important benefit of the stochastic model is that it includes effects of often ignored disturbances and their sources such as measurement error, ambient temperature, and parasitics, which are known to be present in power-electronic switching converters. In this approach, the stochastic model is based on introduction of perturbations in the duty ratio of switching converters as random-noise processes that account for these disturbances. The system dynamics are modeled as a diffusion process. Mean first-passage time (MFPT) is defined as a performance index. It quantifies the average time it takes for a state-space trajectory to evolve from a given operating point to the boundary of its domain of attraction under the influence of small perturbations. It is shown that MFPT provides further insight into converter operation under random perturbations.
机译:本文介绍了脉宽调制(PWM)开关DC-DC升压转换器的随机模型,作为对传统确定性模型的增强。随机模型的重要好处在于,它包含了经常被忽略的干扰及其影响源,例如测量误差,环境温度和寄生效应,这些都已在电力电子开关转换器中出现。在这种方法中,随机模型基于引入了开关转换器占空比中的扰动,作为扰动这些噪声的随机噪声过程。系统动力学建模为扩散过程。平均首次通过时间(MFPT)被定义为性能指标。它量化了状态空间轨迹在小扰动的影响下从给定的工作点发展到其吸引域边界所花费的平均时间。结果表明,MFPT可进一步了解随机扰动下的转换器操作。

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