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PWM控制的可变惯量与可变阻尼装置设计与分析

Design and Analysis of a PWM-Controlled Variable Inertance and Variable Damping Device With Nearly Continuous Adjustment

作者 Yinlong Hu · Changjun Cheng · Longxin Wang
期刊 IEEE Transactions on Industrial Electronics
出版日期 2025年10月
卷/期 第 73 卷 第 2 期
技术分类 控制与算法
技术标签 PWM控制 模型预测控制MPC 虚拟同步机VSG 下垂控制
相关度评分 ★★★ 3.0 / 5.0
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中文摘要

本文提出一种PWM控制的可变惯量与可变阻尼装置(VIVD),支持等效惯量和阻尼的近连续调节;引入预设时间正弦频率跟踪器(PTSFT)实现参数解耦;基于该VIVD构建新型动态振动吸振器(DVA),并通过硬件在环实验验证有效性。

English Abstract

This article proposes a pulse width modulation (PWM)-controlled variable inertance and variable damping device (VIVD) that allows for nearly continuous adjustment of the equivalent inertance and damping. A physical prototype is fabricated and tested. To decouple the inertance and damping adjustments for sinusoidal vibration systems, a prescribed-time sinusoidal frequency tracker (PTSFT) is adopted and embedded in the PWM-controlled VIVD. The feasibility of the method is demonstrated through theoretical and experimental verification. Additionally, a novel dynamic vibration absorber (DVA) is constructed using the proposed PWM-controlled VIVD with the embedded PTSFT. Hardware-in-the-loop tests are performed to demonstrate the effectiveness of the proposed DVA system.
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SunView 深度解读

该研究中PWM驱动的可变惯量/阻尼调控机制,可迁移至构网型储能变流器(如PowerTitan、ST系列PCS)的虚拟同步机(VSG)控制优化中,提升其在弱电网下的惯量响应与阻尼自适应能力。建议在iSolarCloud平台中集成类似PTSFT的快速频率跟踪算法,增强光储系统对电网扰动的主动支撑能力,尤其适用于高比例新能源并网场景下的调频调峰应用。