Performance analysis of distributed power systems using error dynamics passive output feedback control

IF 1.7 4区 计算机科学 Q3 AUTOMATION & CONTROL SYSTEMS Transactions of the Institute of Measurement and Control Pub Date : 2023-08-19 DOI:10.1177/01423312231190734
Monesha S, S. S
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Abstract

This paper presents a novel control approach for integrated converters using Exact Tracking Error Dynamics Passive Output Feedback control and Exact Static Error Dynamics Passive Output Feedback control. By continuously injecting active distributed power systems (DPS) power sources into the utility grid and loads, the approach reduces harmonic current distortion and maintains unity for the grid’s power factor. The paper compares existing control methods, such as P, PI, proportional–integral–derivative (PID), energy structuring and damping infusion and interconnection and damping assignment—passivity-based control and considers the impacts of instantaneous fluctuations in reference current elements on the AC side and oscillations in DC voltage generated by the DC-link voltage. Relevant switching state functions are designed, and if the maximum power can be fed exceeds the required power from grid-connected loads, the true, reactive, and harmonic current elements of loads are adjusted dynamically, resulting in in-phase sinewave grid currents. The performance analysis is performed using MATLAB/Simulink, and a smaller research prototype is built and discussed.
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基于误差动力学的分布式电力系统无源输出反馈控制性能分析
本文提出了一种采用精确跟踪误差动态无源输出反馈控制和精确静态误差动态无源输出反馈控制的集成变换器控制方法。该方法通过向电网和负荷连续注入有源分布式电源,降低了谐波电流畸变,保持了电网功率因数的一致性。本文比较了现有的控制方法,如P、PI、比例积分导数(PID)、能量结构和阻尼注入互联以及阻尼赋值无源控制,并考虑了参考电流元件在交流侧的瞬时波动和直流链路电压产生的直流电压振荡的影响。设计相应的开关状态函数,当能提供的最大功率超过并网负载所需功率时,动态调整负载的真电流、无功电流和谐波电流元,产生同相正弦波并网电流。利用MATLAB/Simulink进行了性能分析,并建立了一个较小的研究样机并进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.10
自引率
16.70%
发文量
203
审稿时长
3.4 months
期刊介绍: Transactions of the Institute of Measurement and Control is a fully peer-reviewed international journal. The journal covers all areas of applications in instrumentation and control. Its scope encompasses cutting-edge research and development, education and industrial applications.
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