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基于分组的光伏-储能系统在能源共享混合社区中的优化设计
A group-based optimization design for PV-BESS in energy-sharing hybrid communities
| 作者 | Changlan Liu · Zhongbing Liu · Yaling Wu · Benjia Li · Ruimiao Liu |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 391 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | A rule-based operation strategy and grouping method were proposed under TOU tariff. |
语言:
中文摘要
摘要 在能源共享型社区中,可再生能源与电池储能系统(BESS)的结合使用能够缓解电网负荷压力,并通过提高能源利用效率降低整体用电成本。然而,目前大多数社区BESS的设计忽略了能源共享潜力的影响,导致社区与电网之间的能量交换增多以及BESS容量过度配置。因此,本文提出一种面向混合型工业园区并网光伏-储能系统的分布式分组共享优化设计方法,旨在提升能源共享潜力的同时最小化所需储能容量。首先,将社区内的建筑划分为四组以最小化年度运行成本;随后,为降低年总成本和输电损耗,采用遗传算法(GA)对每组的储能容量进行优化。结果表明,与非分组的分布式优化设计相比,所提出的方案充分利用了工业园区的能源共享潜力,使总电池容量减少了20.7%,年总成本降低了16.1%。光伏发电与电力需求之间的不匹配是影响分组方式及电池容量分配的主要因素。峰谷电价比的差异对分组结果或电池容量分配没有影响。当光伏阵列面积增加且峰谷电价比差异减小时,相应的最优总电池容量和年总成本均下降,但输电损耗有所增加。本研究为社区级共享式储能系统的设计与应用提供了指导。
English Abstract
Abstract The utilization of a combination of renewable energy and battery energy storage system (BESS) in energy sharing communities can alleviate load pressure on the grid and reduce the overall cost of electricity by improving the efficiency of energy utilization. However, most designs of the BESS in communities neglect the effects of energy-sharing potential, resulting in more energy exchanges between community and the grid and oversized capacity of the BESS. Therefore, this paper proposed a distributed group shared optimization design for grid-connected PV-BESS in a hybrid industrial community, aimed at enhancing energy-sharing potential while minimizing the required storage capacity. Firstly, the buildings in community were divided into four groups to minimize annual operating cost. Then, to reduce the yearly total cost and transmission loss, the capacity of each group was optimized by the genetic algorithm (GA). The results showed that compared to the distributed non-grouping optimization design, the proposed design leveraged the energy-sharing potential of the industrial community, with a 20.7 % reduction of the total battery capacity and a 16.1 % decrease of the total annual cost. The mismatch between PV generation and electricity demand was the main factor affecting grouping and battery capacity allocation. Differences in peak-to-valley tariff ratios have no effect on grouping or battery capacity allocation. When the PV array area increases and the differences in peak-to-valley tariff ratios decrease, the corresponding total optimal battery capacity and annual cost decrease, but transmission loss is increased. This study provides guidance for the shared BESS design and application of community.
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SunView 深度解读
该分组优化设计对阳光电源ST系列储能变流器和PowerTitan系统具有重要应用价值。研究通过遗传算法优化分组配置,实现储能容量降低20.7%、年成本下降16.1%,验证了分布式储能系统的精细化配置策略。可为阳光电源工商业储能解决方案提供优化思路:结合iSolarCloud平台的负荷预测功能,根据用户用电特性动态分组,优化ST系列PCS容量配置;利用GFM控制技术提升能量共享效率,降低电网交互损耗。该方法可应用于工业园区、商业综合体等混合型社区的光储一体化项目设计。