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Optimal Utilization of Renewable Power Production by Sharing Power among Commercial Buildings: Case Study of Griffith University

机译:商业建筑物之间共享电力可再生能源发电的最佳利用:格里菲斯大学的案例研究

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Advancements in smart-grid technology such as the development of a bi-directional communication infrastructure and smart metering provide an opportunity to reduce energy cost by sharing renewable energy among buildings. A proactive building equipped with renewable energy sources (RESs) can share surplus renewable power (SRP) with neighboring traditional buildings (without RESs) for the optimal utilization of RESs. In this paper, the interaction of a proactive building with neighboring traditional buildings in the context of power sharing based on generation and load demand is considered. Within a given time horizon divided into multiple time steps in which generation and load demand occurs, the proactive buildings may experience a power surplus or deficit. While any deficit can be obtained from the utility grid, the proactive building may consider sharing/selling its unused power with neighboring buildings. An algorithm is developed to manage SRP based on price signals, RESs' production and load demand. The developed algorithm is tested using real-time load and generation data of different buildings situated in Griffith University, Australia. A cost-benefit analysis is also carried out using current electricity charges to show the cost effectiveness of power sharing.
机译:智能电网技术的进步,例如双向通信基础设施的发展和智能计量,为通过在建筑物之间共享可再生能源来降低能源成本提供了机会。配备可再生能源(RES)的主动型建筑物可以与相邻的传统建筑物(无RES)共享多余的可再生能源(SRP),以实现RES的最佳利用。在本文中,考虑了在基于发电和负荷需求的功率共享的情况下,主动建筑物与相邻传统建筑物之间的相互作用。在给定的时间范围内(分为多个时间步长,在该时间步长中会发生发电和负荷需求),主动式建筑物可能会出现功率过剩或不足。尽管可以从公用电网获得任何亏空,但主动建筑物可以考虑与邻近建筑物共享/出售其未使用的电力。开发了一种基于价格信号,RES的生产和负荷需求来管理SRP的算法。所开发的算法是使用位于澳大利亚格里菲斯大学的不同建筑物的实时负荷和发电数据进行测试的。还使用当前的电费进行了成本效益分析,以显示功率共享的成本效益。

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