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首页> 外文期刊>Science and Technology for the Built Environment >Demonstration of HVAC chiller control for power grid frequency regulation-Part 1: Controller development and experimental results
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Demonstration of HVAC chiller control for power grid frequency regulation-Part 1: Controller development and experimental results

机译:用于电网频率调节的HVAC冷却器控制的演示-第1部分:控制器开发和实验结果

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摘要

Secondary frequency regulation is a necessary electric grid ancillary service that balances electric power system supply and demand on short time intervals of seconds to minutes. HVAC chillers may be well positioned to provide secondary frequency regulation as a demand side resource. This article describes the experimental development and performance of a practical controller that modifies chiller power demand to provide secondary frequency regulation. Chiller characteristics are identified through testing of a 200-ton (703-kW(th)) chiller serving a commercial building in Boston. Appropriate control strategies are subsequently determined. Controller demonstrations using standard electric system operator test routines show the chiller power response to exceed qualification requirements while providing up to +/- 25% of chiller nameplate power in secondary frequency regulation capability. The controller is further demonstrated to provide secondary frequency regulation continuously for several hours, during which building cooling load changes significantly. The companion article (Su and Norford 2015) discussed the experimental results and assesses the applicability of similar chiller control strategies for broader deployment in other buildings.
机译:次级频率调节是电网辅助服务,它可以在几秒钟到几分钟的短时间间隔内平衡电力系统的供需。 HVAC冷却器的位置可以很好地提供二次频率调节,作为需求侧资源。本文介绍了一种实用控制器的实验开发和性能,该实用控制器可修改冷水机功率需求以提供次级频率调节。通过测试为波士顿的一幢商业建筑提供服务的200吨(703 kW(th))冷水机组,可以确定冷水机组的特性。随后确定适当的控制策略。使用标准电气系统操作员测试程序进行的控制器演示显示,冷水机功率响应超过了合格要求,同时在次级频率调节功能中提供了最高+/- 25%的冷水机铭牌功率。进一步证明了该控制器可连续提供几个小时的次级频率调节,在此期间建筑物的制冷负荷会发生显着变化。配套文章(Su和Norford,2015年)讨论了实验结果,并评估了类似冷水机控制策略在其他建筑物中更广泛部署的适用性。

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