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Hybrid Feedback Control Methods for Robust and Global Power Conversion *

机译:用于鲁棒和全局功率转换的混合反馈控制方法 *

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In this paper, the applicability and importance of hybrid system tools for the design of control algorithms for energy conversion in power systems is illustrated in two hybrid control designs, one pertaining to DC/DC conversion and the other to DC/AC inversion. In particular, the mathematical models considered consist of constrained switched differential equations/inclusions that include all possible modes of operation of the systems. Furthermore, the obtained models can be analyzed and their algorithms designed using hybrid system tools so as to attain key desired properties, such as stability, forward invariance, global convergence, and robustness. We argue that hybrid system tools provide a systematic approach for analysis and controller design of power systems. In particular, hybrid system tools usually leads to power quantities that have better performance and robustness to state perturbations. Furthermore, they provide guidelines on how to tune the controller parameters based on design requirements. These factors motivate the implementation of the proposed hybrid controllers in modern power conversion systems that use renewable energy sources. Simulations illustrating the main results and benchmark tests are included.
机译:本文通过两种混合控制设计(一种与DC/DC转换有关,另一种与DC/AC反转有关)说明了混合系统工具在电力系统能量转换控制算法设计中的适用性和重要性。特别是,所考虑的数学模型由约束开关微分方程/夹杂物组成,其中包括系统的所有可能操作模式。此外,可以使用混合系统工具对所获得的模型进行分析并设计其算法,以获得关键的所需属性,例如稳定性、前向不变性、全局收敛性和鲁棒性。我们认为,混合系统工具为电力系统的分析和控制器设计提供了一种系统的方法。特别是,混合系统工具通常会导致功率量具有更好的性能和对状态扰动的鲁棒性。此外,它们还提供了有关如何根据设计要求调整控制器参数的指南。这些因素促使在使用可再生能源的现代电力转换系统中实施拟议的混合控制器。包括说明主要结果和基准测试的模拟。

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