基于无线通信鲁棒控制器的多变换器系统建模与仿真

M. Zadeh, Reza Parseh, M. Molinas, K. Kansanen
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引用次数: 2

摘要

电力电子变流器的控制与稳定是分布式能源安全集成到智能电网中的主要问题。本文对反馈回路中有无线通信信道的多变换器系统的集中控制器进行了全面的建模和仿真。为了保证控制系统在瞬态和动态性能上的灵活性和鲁棒性,需要宽带通信系统。因此,它应与控制器系统一起建模为通信控制系统。为了研究在控制器反馈回路中存在通信系统时电力电子系统的稳定性,本文考虑了电压源变换器(VSCs)和通信系统组件的详细模型。选择通信系统元素,如噪声、延迟和由于量化引起的失真水平,以真实地模拟实际情况。
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Modeling and simulation of wireless communication based robust controller for multi-converter systems
Control and stability of power electronic converters is the main issue regarding the secure integration of distributed energy resources into the smart grid. In this paper, a centralized controller for a multi-converter system with a wireless communication channel in the feedback loop is modelled and simulated entirely. The wideband communication system is needed in order to guarantee the flexibility and robustness of the control system in both transient and dynamic performance. Therefore, it should be modelled together with the controller system as a communication-control system. The detailed model of voltage source converters (VSCs) is considered as well as communication system components in order to investigate the stability of power electronics systems in presence of a communication system in the feedback loop of the controller. The communication system elements such as noise, delay, and level of distortion due to quantization are selected to realistically model a practical situation.
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