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非平衡、非恒频供电的功率变换器谐振控制。

Power Converter Resonant Control for an Unbalanced and Non-Constant Frequency Supply.

机构信息

Department of Electrical and Electronic Engineering, Universidad del Bío-Bío, Concepción 4030000, Chile.

Department of Engineering Science, Universidad de Los Lagos, Puerto Montt 5480000, Chile.

出版信息

Sensors (Basel). 2023 May 19;23(10):4884. doi: 10.3390/s23104884.

Abstract

Distorted voltage supplied as unbalanced and/or non-constant frequency can be found in weak grids, such as microgrids, or systems working in islanding mode. These kinds of systems are more sensitive under load changes. Particularly, an unbalanced voltage supply may be produced for large, single-phase loads. On the other hand, the connection/disconnection of high current loads may lead to important frequency variation, especially in weak grids where the short circuit current capacity is reduced. These conditions make the control of the power converter a more difficult task, because of the variations in the frequency and unbalancing. To address these issues, this paper proposes a resonant control algorithm to deal with variations in the voltage amplitude as well as grid frequency when a distorted power supply is considered. The frequency variation is an important drawback for resonant control because the resonance must be tuned at the grid frequency. This issue is overcome by using a variable sampling frequency in order to avoid re-tuning the controller parameters. On the other hand, under unbalanced conditions, the proposed method relaxes the phase with lower voltage amplitude by taking more power from the other phases in order to help the stability of the grid supply. To corroborate the mathematical analysis and the proposed control, a stability study is performed, including experimental and simulated results.

摘要

在弱电网(如微电网)或孤岛运行模式下的系统中,可以发现不平衡和/或非恒定频率的失真电压。这些系统在负载变化下更为敏感。特别是,对于大型单相负载,可能会产生不平衡电压供应。另一方面,大电流负载的连接/断开可能会导致重要的频率变化,特别是在短路电流容量降低的弱电网中。这些情况使得功率转换器的控制变得更加困难,因为频率和不平衡会发生变化。为了解决这些问题,本文提出了一种谐振控制算法,以处理考虑失真电源时电压幅度和电网频率的变化。频率变化是谐振控制的一个重要缺点,因为必须在电网频率下调整谐振。通过使用可变采样频率来避免重新调整控制器参数,可以克服这个问题。另一方面,在不平衡条件下,所提出的方法通过从其他相获取更多功率来放松电压幅度较低的相位,以帮助电网供电的稳定性。为了验证数学分析和所提出的控制,进行了稳定性研究,包括实验和模拟结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f14/10223658/7b6165ebc38d/sensors-23-04884-g001.jpg

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