一种基于充电设施瞬时错峰度评估的接纳能力计算
作者:
作者单位:

(1.广东电网有限责任公司广州供电局,广东 广州 510620;2.广州市奔流电力科技有限公司,广东 广州 510670)

作者简介:

通讯作者:

邓文扬(1990—),男,博士,主要从事电力电子化电力系统优化控制的研究;E?mail: 523110355@qq.com

中图分类号:

TM863

基金项目:

中国南方电网有限责任公司科技项目(GZHKJXM20190063)


Acceptance capacity calculation based on instantaneous kurtosis evaluation of charging facilities
Author:
Affiliation:

(1.Guangzhou Power Supply Bureau, Guangdong Power Grid Co., Ltd., Guangzhou 510620, China;2.Guangzhou Power Electrical Engineering Technology Co., Ltd., Guangzhou 510670, China)

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    摘要:

    “碳中和、碳达峰”背景下为缓解大规模电动汽车接入带来的配电网增容扩容压力,提出考虑瞬时错峰度的配电网接纳充电设施的容量评估方法。首先建立区域现有负荷和充电负荷的计算模型;其次以全时段潮流计算结果作为安全约束,提出基于二分循环逼近法的接纳能力评估方法;最后利用该方法求解最大接纳能力。在算例中,通过瞬时错峰度评估不同负荷交互特性对接纳能力的影响,求解不同配电网场景下的充电设施接纳能力。结果表明所提方法可以提高配电网容量资源的利用率,减少不必要的扩容增容需求。

    Abstract:

    Under the background of "carbon neutralization" and "carbon peak", in order to alleviate the pressure of distribution network capacity expansion caused by large?scale electric vehicle access, a capacity evaluation method of distribution network receiving charging facilities is proposed considering instantaneous kurtosis. Firstly, the calculation models of regional existing load and charging load are established. Secondly, taking the full?time power flow calculation results as security constraints, an acceptance capacity evaluation method based on bisection cyclic approximation method is proposed. Finally the maximum acceptance capacity is calculated by the method. In the case study, the acceptance capacity of charging facilities under different distribution network scenarios is solved through evaluating the influence of different load interaction characteristics on the acceptance capacity by instantaneous kurtosis. The results show that the proposed method can improve the utilization of distribution network capacity resources and reduce unnecessary capacity expansion requirements.

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刘艳萍,李 欣,曾顺奇,等.一种基于充电设施瞬时错峰度评估的接纳能力计算[J].电力科学与技术学报,2023,38(3):76-83.
LIU Yanping, LI Xin, ZENG Shunqi, et al. Acceptance capacity calculation based on instantaneous kurtosis evaluation of charging facilities[J]. Journal of Electric Power Science and Technology,2023,38(3):76-83.

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  • 在线发布日期: 2023-09-19
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