Building power demand response methods toward smart grid

Shengwei Wang, X. Xue, Chengchu Yan
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引用次数: 72

Abstract

Smart grid has been drawing attention particularly when renewable generations are integrated. In order to ensure high power reliability and energy efficiency in an electrical grid, research and application has been conducted at power supply side to solve the grid critical issues: peak load and power imbalance. However, as the major end-users at power demand side, buildings can also play a significant and cost-effective role by making use of their power demand responses. Different demand response programs (e.g., time- and incentive-based) have been developed and applied for encouraging the end-users to change their energy usage behaviors expected by the grid. Generally, buildings are able to limit and/or shift the power demands according to their own considerations under the specific incentives. A comprehensive review on the building power demand response methods is still missing, although research and application has been investigated and conducted on power demand aspects concerning the building system configuration and the control strategies of power demand optimization. This article, therefore, presents a comprehensive review on the strategies, impacts, and benefits of building power demand response in a grid to systematically evaluate and make better use of their demand response potentials. The possibility of developing proper building power demand response strategies for offline and online applications of the smart grid is also discussed.
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构建面向智能电网的电力需求响应方法
智能电网一直备受关注,特别是当可再生能源发电并网时。为了保证电网的高可靠性和高能效,在供电侧开展了解决电网峰值负荷和功率不平衡等关键问题的研究和应用。然而,作为电力需求方面的主要最终用户,建筑物也可以利用其电力需求响应发挥重要和具有成本效益的作用。不同的需求响应方案(例如,基于时间和激励的方案)已经被开发和应用,以鼓励最终用户改变他们的能源使用行为。一般来说,在特定的激励措施下,建筑物可以根据自身的考虑限制和/或转移电力需求。虽然在建筑系统配置、电力需求优化控制策略等电力需求方面已经开展了研究和应用,但对建筑电力需求响应方法的研究还不够全面。因此,本文将全面回顾在电网中建立电力需求响应的策略、影响和效益,以系统地评估和更好地利用其需求响应潜力。本文还讨论了为智能电网的离线和在线应用制定合适的建筑电力需求响应策略的可能性。
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HVAC&R Research
HVAC&R Research 工程技术-工程:机械
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EOV Editorial Board The never-ending search Accelerating fast fluid dynamics with a coarse-grid projection scheme Numerical modeling of volatile organic compound emissions from ozone reactions with human-worn clothing in an aircraft cabin Dynamic simulation and analysis of ancillary service demand response strategies for variable air volume HVAC systems
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