可再生能源发电厂提供电网服务的ICT要求和挑战

Kamal Shahid, R. Olsen, L. Petersen, F. Iov
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引用次数: 2

摘要

可再生能源对电力供应结构的渗透要求传统电网变得更有弹性、更可靠和更高效。确保这一点的一种方法是要求可再生能源发电厂具有与传统发电厂相似的调节特性,并协调它们的电网支持服务(GSS)。在其他要求中,GSS的协调将高度依赖于可再生能源电厂与系统运营商控制室之间的通信,从而对底层通信基础设施施加了很高的责任。尽管如此广泛的部署,目前仍不完全知道哪种通信技术解决方案正在使用,也不清楚哪种技术最适合未来接入和控制这些可再生能源发电厂。这是因为不同的GSS应用程序在数据有效载荷、采样率、延迟和可靠性方面有不同的通信需求。因此,本文简要介绍了未来电网中控制可再生能源电厂的控制和通信体系结构,包括通信网络技术、要求和研究挑战。为了帮助确定后续研究中的研究问题,本文试图确定通信堆栈中的底层协议如何影响上述场景下的及时可靠通信。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ICT Requirements and Challenges for Provision of Grid Services from Renewable Generation Plants
The penetration of renewable energy into the electricity supply mix necessitates the traditional power grid to become more resilient, reliable and efficient. One way of ensuring this is to require renewable power plants to have similar regulating properties as conventional power plants and to coordinate their grid support services (GSS) as well. Among other requirements, the coordination of GSS will highly depend on the communication between renewable plants and system operators’ control rooms, thereby imposing high responsibility on the under lying communication infrastructure. Despite such a widespread deployment, it is still neither completely known which communication technology solutions are currently in use, nor it is clear which of these technologies best fit to access and control these renewable plants in future. This is because of varying communication requirements for different GSS applications - in terms of data payloads, sampling rates, latency and reliability. Therefore, this paper presents a brief survey on the control and communication architectures for controlling renewable power plants in the future power grid, including the communication network technologies, requirements, and research challenges. To help identifying research problems in the continued studies, this paper attempts to ascertain how the underlying protocols in a communication stack influence timely and reliable communication in the said scenario.
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