低压电网微发电一体化的连续潮流分析

Md. Morshed Alam, C. Moreira, Md. Rafiqul Islam, I. Mehedi
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引用次数: 9

摘要

配电网微发电的集成在技术和商业管理上都面临着新的挑战。在中低压配电网中集成μG对电网运行具有改善电压分布、减少电力损耗、降低支路拥塞等诸多优点。本文提出了一种指导配电馈线上积分μG连续潮流仿真的方法。设计了一个基本模型,采用可变电容器组,将光伏发电和风力发电等微发电机组集成在一起。采用一种控制方法来提高各节点的电压水平,同时提高系统的功率因数。利用从每个单独的住宅大厅和商业建筑收集的实际数据,对一所大学变电站区域的电力消耗进行建模,其中包括商业、住宅和市政负荷。该模型允许分析功率流和电压分布沿每个配电馈线连续时尚24小时期间在每小时制定。根据各负荷节点到配电馈线头的距离将馈线划分为负荷区,讨论了不同工况下不同运行方式的集成对馈线运行的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Continuous Power Flow Analysis for Micro-Generation Integration at Low Voltage Grid
The integration of micro-generation (μG) in distribution networks faces new challenges concerning the technical as well as commercial management. The μG integration in the Low and medium voltage distribution networks has many advantages for the grid operation, such as voltage profiles improvement, power losses reduction, and branches congestion levels reduction. This paper presents a method for guiding continuation power flow simulation of integrating μG on distribution feeders. A base model is designed with variable capacitor bank, μG unit such as PV and Wind generation are integrated. A control method is used to improve the voltage level of each node as well as improving power factor of the systems. The electricity consumption of a university's substation area where commercial, residential and municipal load are presented are modeled using actual data collected from each single residential hall and commercial buildings. This model allows analyzing the power flow and voltage profile along each distribution feeders on continuing fashion for a 24- hour period at hour-by-hour formulation. By dividing the feeder into load zones based on distance from each load node to distribution feeder head, the impact of integration of different μG operation in different condition has been discussed.
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