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电动汽车驱动
★ 5.0
混合级联HVDC系统中多个串联-并联LCC/MMC之间的交互分析
Interaction Analysis Among Multiple Series-Parallel Connected LCC/MMC in Hybrid Cascaded HVDC System
| 作者 | Chunyi Guo · Wei Zhao |
| 期刊 | IEEE Transactions on Power Delivery |
| 出版日期 | 2025年1月 |
| 技术分类 | 电动汽车驱动 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 混合级联高压直流系统 多换流器交互 系统稳定性 阻尼路径 控制参数调整 |
语言:
中文摘要
混合级联HVDC(HC-HVDC)系统中多个LCC/MMC的串并联结构虽提升了对不同负荷区域的输电灵活性,但在弱交流系统下可能因换流器间复杂交互引发失稳风险。本文建立系统的状态空间与多换流器运动方程模型,基于路径分解法将开环传递函数分解为五条阻尼路径,揭示LCC逆变器等效电感视角下的主导振荡模式弱阻尼成因。量化分析了LCC自稳定路径及与各MMC交互、多换流器间交互的去稳定路径对系统稳定性的影响,并研究控制器带宽变化对各路径阻尼特性的作用规律。结果表明,定直流电压控制MMC₁与LCC逆变器间的交互及多换流器耦合交互提供负阻尼,关键交互路径与敏感参数为提升系统稳定性提供了理论依据。
English Abstract
The series-parallel structure of multiple LCC/MMCs in hybrid cascaded HVDC (HC-HVDC) system facilitates flexible power transmission to different load areas, however, could introduce potential risk of instability arising from intricate interactions among multiple converters under weak AC system. To investigate the interaction paths among multiple converters and quantitatively evaluate their contributions to the system stability, this article establishes the state-space model and the motion equation model integrating multiple converters for HC-HVDC system. Then, based on the path decomposition method, the open-loop transfer function is decomposed into five damping paths viewed from the equivalent inductor of LCC inverter. This offers a perspective on system damping characteristics to reflect the key paths and contributing converters leading to the weak damping of dominant oscillatory mode. The impact of LCC inverter's self-stabilizing path, as well as the en-stabilizing paths involving the components related to interactions between LCC inverter and each MMC, and interactions among series-parallel connected multiple converters, on system stability is clearly quantified. Moreover, the outcome of controller bandwidth variations on the damping characteristics of different paths is studied, providing insights into adjusting control parameters to enhance the system damping under weak AC system. It is indicated that the interaction between DC-voltage-controlled MMC_1 and LCC inverter, as well as the interactions among multiple converters, provide negative damping on system stability. The critical interaction paths contributing to negative damping and the identified sensitivity parameters can offer valuable insights for further enhancement of system stability in HC-HVDC system.
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SunView 深度解读
该混合级联HVDC系统的多换流器交互分析技术对阳光电源大型储能系统PowerTitan及构网型控制产品具有重要价值。研究揭示的LCC/MMC串并联交互机理与路径分解法可直接应用于:1)ST系列储能变流器多机并联场景的振荡抑制,优化弱电网下的稳定性控制;2)构网型GFM控制器参数设计,通过量化阻尼路径识别关键交互参数,避免多台逆变器并网时的负阻尼效应;3)PowerTitan大型储能系统中多模块级联拓扑的协调控制优化。文中定直流电压控制与多换流器耦合交互的稳定性分析方法,可为阳光电源开发适应复杂电网的高可靠性储能与光伏并网解决方案提供理论支撑,提升弱电网适应能力。