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Effects and Performance of a Demand Response Strategy for Active and Passive Building Cold Storage

机译:活性和被动建筑冷藏响应策略的影响与性能

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Demand response (DR) is a set of demand-side activities to reduce or shift electricity use to improve the electric grid reliability. Existing demand response programmes and tariffs that utilities or independent system operators (ISO) often provide great incentives to consider the use of sophisticated building operation and control strategies that reduce electricity use during occasional or emergency events. This paper presents the investigations on the power demand alternation potential in commercial buildings with cold storage systems aiming to provide effective power information for grid operation and optimization. A control strategy is developed to estimate the demand-shifting and demand-shedding potentials of buildings with comprehensive utilization of passive and active storages on the premise of certain capacity of chillers shut down at the beginning of emergency event. Compared with conventional exclusive passive or active storage control strategies, the developed strategy can provide a rapid response to electrical grid and an accurate estimation of power demand reduction in advance. Besides, it can also relieve ability degradation of handling latent load through reducing temperature of supply chilled water when chillers overriding. In addition, to reduce negative effects on the electric grid, rebound avoidance is considered in implementation of this strategy that allows HVAC system to slowly ramp up to limit power usage rise after DR event. The required rebound duration is also calculated as part of effective information sent to a grid.
机译:需求响应(DR)是一系列需求侧活动,以减少或换电器,以提高电网可靠性。公用事业或独立系统运营商(ISO)的现有需求响应计划和关税经常提供巨大的激励措施,以考虑使用复杂的建筑运行和控制策略,可在偶尔或紧急事件期间减少电力使用。本文介绍了商业建筑中电力需求交替潜力的调查,旨在为电网运行和优化提供有效的电力信息。制定了控制策略,以估算建筑物的需求转移和需求脱落潜力,以综合利用被动和活跃的故障,在紧急情况开始时的一定容量的内容。与传统的独家被动或主动存储控制策略相比,开发的策略可以对电网提供快速响应和预先降低电力需求的准确估计。此外,它还可以减轻能力通过减少供应冷却水的减少时处理潜伏负荷的劣化。此外,为了减少电网对电网的负面影响,考虑了这种策略的反弹避免,使HVAC系统慢慢增加以限制博士事件后的电力使用。所需的反弹持续时间也被计算为发送给网格的有效信息的一部分。

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