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面向存在参数不确定性和系统动态与可重构通信网络耦合的多区域电力系统的鲁棒负荷频率控制
Robust Load Frequency Control for Uncertainties Multi-Area Power Systems With Couplings of Systems Dynamics and Reconfigurable Communication Networks
| 作者 | Bohui Wang · Zhanbo Xu · Xiaohong Guan |
| 期刊 | IEEE Transactions on Power Systems |
| 出版日期 | 2024年9月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 多物理场耦合 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 多区域电力系统 鲁棒负荷频率控制 分布式策略 参数不确定性 通信网络 |
语言:
中文摘要
本文研究了在标称系统运行条件和可重构通信网络下存在未知参数不确定性及耦合输入时,多区域电力系统鲁棒负荷频率控制(RLFC)的关键问题。提出一类耦合智能电网模型,其动态包含状态的标量组合的时间变化向量函数,且通信网络非互联。第一部分考虑静态连通但非动态变化的网络结构。为此设计了一种基于可配置通信网络的分布式RLFC策略,可处理系统耦合动态并实现多区域系统在多重聚合不确定性下的全局渐近稳定。进一步提出分布式自适应RLFC协议,可在线调节控制增益与时变自适应耦合动态,适用于包含匹配与不匹配未知参数不确定性的聚合模型。通过三区域电力系统仿真验证了所提方法的有效性,结果表明闭环系统在无需依赖任何有界状态集条件下仍具渐近稳定性。
English Abstract
This article focuses on the challenging problems for robust load frequency control (RLFC) in multi-area power systems considering unknown parameter uncertainties in both LFC operation conditions of nominal power systems and coupling inputs under reconfigurable communication networks. A class of coupled smart grids is modeled in which the process dynamics are composed of time-varying vector functions of scalar combinations of the states and communication networks that are not interconnected. In part I, the networks can be any connected static configuration but not dynamically changing network configurations. To overcome these issues, a distributed RLFC strategy is developed that uses a configurable communication network. This strategy can handle the system coupling dynamics and obtain global asymptotic stability for multi-area power systems with multiple aggregated uncertainties. Furthermore, a distributed adaptive RLFC protocol is proposed to schedule the control gains and time-varying adaptive coupling dynamics for the multi-area power systems with aggregated system uncertainties consisting of aggregated parameter uncertainties, coexisting matched, and mismatched parameter uncertainties that can be unknown. The proposed strategies are verified through the modeling of a three-area power system with configurable communication networks. The results show that the proposed methods are efficient. Specifically, for the case of unknown coexisting matched and mismatched parameter uncertainties, the LFC of closed-loop power systems is asymptotic stability without relying on any bounded-state set.
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SunView 深度解读
该分布式鲁棒负荷频率控制技术对阳光电源PowerTitan大型储能系统和ST系列储能变流器具有重要应用价值。研究提出的自适应RLFC协议可直接应用于多储能站点协同调频场景,解决通信网络重构和参数不确定性问题。对于阳光电源iSolarCloud云平台,可集成该分布式控制策略实现多区域储能电站的协同频率调节,提升电网稳定性。研究中处理系统动态耦合和通信非互联的方法,可优化PowerTitan系统在弱电网环境下的构网型GFM控制性能,增强多储能系统并网时的鲁棒性。该技术为阳光电源开发下一代智能储能集群控制系统提供理论支撑,特别适用于新型电力系统中源网荷储协同控制场景。