Virtual Energy Storage Systems: Challenges and Opportunities

Chandra Prakash Barala, Parul Mathuria, R. Bhakar
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引用次数: 1

Abstract

Maintaining synchronism between generation and demand is becoming a tedious task with increasing penetration of renewables in the evolving power systems. Ancillary services are needed to settle these load-generation imbalances. The ancillary services requirement increasingly utilizing Energy Storage Systems (ESS) considering its quick response and high ramping capability. However, existing ESS technology faces challenges, such as high cost, unsteady charging/discharging cycles, life cycle issues, and optimal sizing. Thus, advanced mechanisms are required to cater the demand for ancillary services. Virtual Energy Storage Systems (VESS) is an innovative and economic way to replace/reduce higher ESS requirements. VESS utilizes existing network assets and Thermostatically Controlled Loads (TCLs). In recent years, the research in this area expands in multi-domains. Hence, there is a need to summarize the potential application of VESS in power systems. In this context, this paper is an attempt to summarise and develop an overarching view about the potential of VESS worldwide, the VESS technologies, the switching model of TCLs, and existing projects. Moreover, this review highlights the key factors and applications of VESS in power systems.
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虚拟能源存储系统:挑战与机遇
随着可再生能源在不断发展的电力系统中的渗透,保持发电和需求之间的同步正成为一项繁琐的任务。需要辅助服务来解决这些负载产生的不平衡。考虑到储能系统的快速响应和高斜坡能力,辅助服务越来越多地需要使用储能系统。然而,现有的ESS技术面临着成本高、充放电周期不稳定、寿命周期问题和最佳尺寸等挑战。因此,需要先进的机制来满足对辅助服务的需求。虚拟能源存储系统(VESS)是一种创新和经济的方式来取代或降低更高的ESS要求。VESS利用现有的网络资产和恒温控制负载(tcl)。近年来,该领域的研究扩展到多个领域。因此,有必要对VESS在电力系统中的潜在应用进行总结。在此背景下,本文试图总结和发展关于全球VESS潜力、VESS技术、tcl切换模型和现有项目的总体观点。此外,本文还介绍了VESS的关键因素及其在电力系统中的应用。
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