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功率器件技术 SiC器件 ★ 5.0

考虑非光滑约束的数据-物理混合驱动配电网线性潮流

Data-Physical Hybrid Driven Distribution Network Linear Power Flow Considering Non-Smooth Constraints

作者 Yuntao Ju · Tianlei Zhang · Lei Wang · Yan Huang · Zongmin Yu · Yuxuan Ma
期刊 IEEE Transactions on Industry Applications
出版日期 2024年9月
技术分类 功率器件技术
技术标签 SiC器件
相关度评分 ★★★★★ 5.0 / 5.0
关键词 三相线性潮流模型 非光滑约束特性 电压源换流器 有载分接开关 计算精度
语言:

中文摘要

摘要:现有线性潮流(LPF)模型未考虑电压源换流器(VSC)和有载调压变压器(OLTC)包含运行限值和死区的非光滑约束特性,这限制了其应用。为此,提出一种考虑非光滑约束特性的配电网三相 LPF 模型。首先,利用光滑函数对非光滑约束特性进行有效拟合,得到连续可微的控制函数。然后,基于一阶泰勒级数展开对三相潮流方程进行物理线性化,并通过偏最小二乘法(PLS)得到误差补偿项。与未考虑非光滑约束的模型相比,考虑非光滑约束的三相 LPF 模型能够准确表征实际配电网中 VSC 和 OLTC 的运行特性,从而提供更可靠的潮流计算结果。基于一个典型的 42 节点配电网,将所提模型与其他 LPF 模型进行对比分析。结果表明,所提模型具备处理非光滑约束的能力,与现有的数据 - 物理混合驱动模型相比,计算精度更高。

English Abstract

Existing liner power flow (LPF) models do not consider the non-smooth constraint characteristics of the voltage source converter (VSC) and on-load tap changer (OLTC) that contain operation limit and dead zones, which limits its application. Thus, a three-phase LPF model for distribution networks is proposed, which considers non-smooth constraint characteristics. Firstly, smoothing functions are used to effectively fit the non-smooth constraint characteristics, resulting in control functions that are continuous and differentiable. Then, based on the first-order Taylor series expansion, the three-phase power flow equations are physically linearized, and the terms to compensate errors are obtained through the partial least squares (PLS) method. Compared with the model without considering the non-smooth constraints, the three-phase LPF model considering the non-smooth constraints can accurately represent the operating characteristics of the VSC and the OLTC in the actual distribution network, thus providing more reliable power flow calculation results. Based on a typical 42-node distribution network, the proposed model is compared and analyzed against other LPF models. The results indicate that the proposed model has the ability to handle non-smooth constraints, with higher computational accuracy compared to existing data-physical hybrid driven models.
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SunView 深度解读

该研究对阳光电源的VSC型产品(如SG系列逆变器、ST系列储能变流器)具有重要参考价值。通过数据-物理混合建模方法,可优化产品在配电网中的电压调节性能,提升系统稳定性。特别是对于大型储能电站的PowerTitan系统,该方法有助于提高VSC的无功补偿精度和OLTC变压器的调压效果。研究成果可用于改进iSolarCloud平台的潮流计算模块,为电站群优化调度提供更准确的技术支撑。建议在新一代产品的控制算法中融入该混合建模思路,进一步提升阳光电源在电网友好型产品方面的技术优势。