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储能系统技术 储能系统 户用光伏 ★ 4.0

双极性直流配电网中面向偏远居民社区的分层优化运行

Hierarchical optimal operation for bipolar DC distribution networks with remote residential communities

作者 Qianggang Wang · Yiyao Zhou · Bingxin Fan · Jianquan Liao · Tao Huang · Xuefei Zhang · Yao Zou · Niancheng Zhou
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 378 卷
技术分类 储能系统技术
技术标签 储能系统 户用光伏
相关度评分 ★★★★ 4.0 / 5.0
关键词 A hierarchical operation framework is proposed to save energy and improve voltage quality for remote residential communities.
语言:

中文摘要

摘要 为了促进可再生能源的无缝集成,双极性直流配电网(Bi-DCDNs)已在多个领域得到广泛应用,包括深圳未来大厦、波音787飞机以及新加坡的直流LED照明系统。Bi-DCDNs集成了多种灵活设备,以提升经济性和安全性。然而,目前尚缺乏一个综合协调框架来考虑这些灵活设备之间调控特性的异质性。为此,本文提出了一种针对Bi-DCDNs中灵活设备的分层协调框架。具体而言,上层模型考虑直流变压器(DCT)在不同运行模式下的操作差异,以确定最优切换方案从而降低损耗;下层模型则协调DCT、储能系统(ESSs)和直流电气弹簧(DCESs)的控制参数,以改善电压质量。此外,为准确刻画灵活设备的稳态行为,该分层框架引入了牛顿-拉夫逊潮流计算方法。该方法建立了多种灵活设备的稳态模型,并揭示了DCT不同控制模式对潮流分布的影响。随后,采用遗传算法求解所提出的模型,确保上层做出的次优决策可在下层得到修正,反之亦然。数值结果表明,所提框架能够在降低损耗和提升电压质量两方面实现Bi-DCDNs的最优运行。此外,该框架在包含额外DCT以连接偏远居民社区的Bi-DCDNs中也展现出良好的应用前景。

English Abstract

Abstract To facilitate the seamless integration of renewable energy, bipolar DC distribution networks (Bi-DCDNs) have been widely adopted in various applications, including the Shenzhen Future Building, the Boeing 787 aircraft, and DC LED lighting systems in Singapore. Bi-DCDNs incorporate diverse flexible devices to improve both economic efficiency and security. However, a comprehensive coordination framework considering the regulatory heterogeneity among these flexible devices remains absent. Hence, this paper proposes a hierarchical coordination framework for flexible devices in Bi-DCDNs. More specifically, the upper-level model considers the operational differences of the DC transformer (DCT) in various modes to determine the optimal switching scheme for reducing losses; In the lower-level model, the control parameters of the DCT, energy storage systems (ESSs), and DC electrical springs (DCESs) are coordinated to enhance voltage quality. Furthermore, to accurately capture the steady-state behavior of flexible devices, the hierarchical framework incorporates the Newton-Raphson power flow method. This method formulates a steady-state model for multiple flexible devices and demonstrates the impact of different control modes of DCT on power flow. Subsequently, a genetic algorithm is used to solve the proposed model, ensuring that suboptimal decisions made at the upper level are rectified at the lower level, and vice versa. The numerical results indicate that the proposed framework achieves the optimal operation for both reduced losses and enhanced voltage quality in Bi-DCDNs. Furthermore, it exhibits advantageous applications for Bi-DCDNs with additional DCTs for remote residential communities.
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SunView 深度解读

该双极直流配网分层优化技术对阳光电源ST系列储能变流器和户用光伏系统具有重要应用价值。论文提出的DCT多模式协调、储能系统与电气弹簧联合调控框架,可直接应用于PowerTitan储能系统的电压质量优化和损耗管理。分层控制架构与阳光电源iSolarCloud平台的智能调度逻辑高度契合,特别是在偏远社区光储一体化场景中,可结合SG系列逆变器的MPPT技术和ST储能PCS的GFM控制能力,实现源网荷储协同优化,提升系统经济性与供电可靠性,为户用及工商业直流微网解决方案提供技术创新方向。