← 返回
储能系统技术 储能系统 ★ 5.0

一种用于新能源-火电打捆外送LCC-HVDC系统的多模式次同步阻尼控制器

A Multi-Mode Sub-Synchronous Damping Controller for Renewable-Thermal-Bundled Power Transmission by LCC-HVDC System

作者 Jiaqing Zhang · Chunyi Guo · Lie Xu
期刊 IEEE Transactions on Sustainable Energy
出版日期 2025年8月
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 次同步振荡 多模式抑制 等效SISO模型 阻尼增强能力指标 多模式次同步阻尼控制器
语言:

中文摘要

随着可再生能源发电比例的增加,LCC-HVDC输电系统中可能出现多种弱阻尼或不稳定的次同步振荡(SSO)模式,包括基于同步机的扭振模态和基于变流器的电磁模态。本文针对不同SSO模式,建立保留主导储能元件动态的等效单输入单输出传递函数模型,并从统一的阻尼转矩角度分析其稳定性。推导关键控制环路对各SSO模式的交互路径,提出阻尼增强能力指标以确定最优控制环节。基于相位补偿与增益调节,设计多模式次同步阻尼控制器(MSDC),实现对多种SSO模式的协同抑制。在光伏-火电打捆外送系统中的仿真验证表明,该控制器可有效抑制由光伏、LCC或同步机引发的各类SSO。

English Abstract

With the increase of renewable power generation, multiple poorly-damped or unstable sub-synchronous oscillation (SSO) modes induced by various devices may coexist in the renewable-thermal-bundled power transmission by LCC-HVDC system, including SG-based torsional SSOs and converter-based electromagnetic SSOs. Due to the complex dynamic interactions, it is still challenging to develop the consistent interpretation of the control interactive mechanism for different SSO modes, and to design a supplementary controller for multi-mode SSO suppression. To address these, this paper establishes the system equivalent single-input single-output (SISO) transfer function model for each SSO mode, by retaining its dominant energy storage element dynamic of the correlated device, and then their respective SSO stability is evaluated from a unified damping torque perspective. Subsequently, the interaction paths of key control loops contributing to the damping of each SSO mode are derived. On this basis, a damping enhancement capability index is proposed to identify the preferred control loop for the damping controller placement. Based on phase compensation and gain adjustment of the key control loop interaction path, a multi-mode sub-synchronous damping controller (MSDC) is proposed to realize the targeted damping compensation for different modes. Finally, the proposed MSDC approach is validated on a PVthermal-bundled power transmission by LCC-HVDC system, which effectively suppresses the PV-induced, LCC-induced or SG-induced SSOs.
S

SunView 深度解读

该多模式次同步阻尼控制技术对阳光电源光伏-储能打捆外送系统具有重要应用价值。针对SG系列光伏逆变器与火电机组通过LCC-HVDC外送场景,文章提出的MSDC控制器可协同抑制光伏变流器电磁振荡与同步机扭振模态,解决新能源高占比下的多模式SSO问题。其阻尼转矩统一分析方法和相位补偿设计思路可直接应用于ST系列储能变流器的构网型GFM控制策略优化,增强PowerTitan储能系统在弱电网下的宽频振荡抑制能力。建议将该多模式协同控制理念融入iSolarCloud平台的智能阻尼控制模块,实现光储打捆送出系统的自适应稳定性增强,提升阳光电源在大型新能源基地外送项目中的系统集成竞争力。