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Proactive Demand Participation of Smart Buildings in Smart Grid

机译:智能电网中智能建筑的主动需求参与

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Buildings account for nearly 40 percent of the total energy consumption in the United States. As a critical step toward smart cities, it is essential to the building operations to improve the efficiency and reliability of overall energy system. With the advent of smart meters and two-way communication systems, various energy consumptions from smart buildings can now be coordinated across the smart grid together with other energy loads and power plants. In this paper, we propose a comprehensive framework to integrate the operations of smart buildings into the energy scheduling of bulk power system through . This new scheme enables buildings to proactively express and communicate their energy consumption preferences to smart grid operators rather than passively receive and react to market signals and instructions such as time varying electricity prices. The proposed scheme is implemented in a simulation environment. The experiment results show that the proactive demand response scheme can achieve up to 10 percent system generation cost reduction and 20 percent building operation cost reduction compared with passive demand response scheme. The results also demonstrate that the system cost savings increase significantly with more flexible load installed and higher percentage of proactive customers participation level in the power network.
机译:建筑物占美国总能耗的近40%。作为迈向智慧城市的关键一步,提高建筑物整体能源系统的效率和可靠性对建筑物运营至关重要。随着智能电表和双向通信系统的出现,智能建筑物中的各种能耗现在可以与其他能源负荷和发电厂一起在整个智能电网中进行协调。在本文中,我们提出了一个综合框架,通过该框架,可将智能建筑的操作集成到大功率系统的能源调度中。这一新方案使建筑物能够主动向智能电网运营商表达和传达其能耗偏好,而不是被动地接收和响应市场信号和指示,例如时变电价。所提出的方案是在仿真环境中实现的。实验结果表明,与被动需求响应方案相比,主动需求响应方案可以将系统发电成本降低多达10%,将建筑物运营成本降低20%。结果还表明,通过安装更灵活的负载和更高比例的主动客户参与电力网络,系统成本节省显着增加。

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