岛屿智能电网框架下灵活资源开发的通信

J. Rodríguez-García, D. Ribó-Pérez, C. Álvarez-Bel, M. Alcázar-Ortega
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摘要

虽然岛屿是对气候变化负责最少的岛屿之一,但由于气候变化,岛屿面临着巨大的威胁。电力系统的脱碳成为确保适应和缓解气候变化的关键因素。岛屿的特点使可再生电力成为一项挑战。大多数岛屿是孤立的系统,惯性水平较低,需要稳定以确保供应安全。因此,必须充分开发智能电网和灵活资源的潜力,以确保可再生能源的可行整合。在这种情况下,有必要发展包括需求响应、电池和电力运输在内的系统,以增加可再生能源的份额。然而,所有这些元素都需要部署可靠的通信体系结构。本文提出了一种通信架构,并将其应用于加拉帕戈斯群岛,以开发灵活的资源。选择了不同的协议来对系统上集成的灵活资源进行互操作。他们每个人都试图为每个应用程序标准化,并确保最大的功能可用。在岛屿上部署智能电网可以减少碳足迹,加拉帕戈斯群岛圣克鲁斯的一个案例研究证实了这一点。从技术、经济和环境的角度来看,该系统以一种可行的方式确保了能源平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Communications for Exploiting Flexible Resources in the Framework of Smart Grids in Islands
Although being among the least responsible for climate change, islands are in great threat due to it. The decarbonisation of the power system arises as a key factor to ensure adaptation and mitigation to it. Islands' characteristics make renewable electrification a challenge. Most islands are isolated systems with low levels of inertia that require stability for ensuring security of supply. Therefore, the potential of smart grids and flexible resources must be fully exploited to ensure a viable integration of renewable energy sources. In this vein, it is necessary to evolve the system including demand response, batteries and electric transport to increase the share of renewables. However, all these elements require a reliable communication architecture to be deployed. A communication architecture is hereby presented and applied to Galapagos for exploiting flexible resources. Different protocols have been selected to interoperate flexible resources integrated on the system. Each of them tries for each application to standardise and ensure the largest functionalities available. The deployment of smart grids in islands can reduce their carbon footprint as it is validated with a case study in Santa Cruz, Galapagos. This system proves to ensure the energy balance in a viable way, in technical, economic and environmental terms.
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