具有信息通信基础设施的虚拟电厂多目标协同最优控制策略

Gujing Lin, Ciwei Gao, Meng Song, Chaoliang Wang, L. Li, Wei Liu
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引用次数: 0

摘要

在二碳目标下,可再生能源的大规模接入给系统的调峰、调频和故障恢复带来了巨大的挑战。随着信息通信技术的快速发展,基于通信基站备用储能(BSES)、互联网数据中心(IDC)等信息通信基础设施的大量可调负荷,拓宽了电力系统实现电力供需平衡的路径,可以解决可再生能源发电带来的突出问题。首先,为了充分利用BSESs和idc消耗可再生能源,本文研究了不同负荷水平下BSESs和idc的可调潜力,并构建了BSESs和idc的封装模型。其次,将虚拟电厂(VPP)作为一种有效的分布式资源聚合方式,在保证BSESs的备用需求和vdc正常运行的基础上,设计了虚拟电厂的多目标协同优化控制策略,以实现可再生能源的最大消耗和VPP的最优运行经济性。最后,通过案例研究验证了单目标和多目标情景对比下的低碳经济和运行经济。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-objective Cooperative Optimal Control Strategy for Virtual Power Plant with Information and Communication Infrastructure
Under the two-carbon target, the large-scale access of renewable energy brings great challenges to the peak modulation, frequency modulation and fault recovery of the system. With the rapid development of information and communication technology, a large number of adjustable loads based on information and communication infrastructure, including communication base station backup energy storage (BSES) and internet data center (IDC), broaden the path of the power system to achieve the balance of power supply and demand, and can solve the prominent problems brought by renewable energy power generation. First, in order to make full use of BSESs and IDCs to consume the renewable energy, this paper studies the adjustable potential of BSESs and IDCs under different load levels, and constructs the BSESs and IDCs encapsulation model. Secondly, the virtual power plant (VPP) is considered as an effective way of distributed resource aggregation, so on the basis of ensuring the backup demand of BSESs and the normal operation of IDCs, this paper designs a multi-objective collaborative optimization control strategy of VPP to achieve the maximum consumption of renewable energy and the optimal operation economy of VPPs. Finally, the case study verifies the low carbon and operation economy under the contrast of single objective and multi-objective scenarios.
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