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A novel air-conditioning system for proactive power demand response to smart grid

机译:新型空调系统,可主动响应智能电网的电力需求

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摘要

Power demand response is considered as one of the most promising solutions in relieving the power imbalance of an electrical grid that results a series of critical problems to the gird and end-users. In order to effectively make use of the demand response potentials of buildings, this paper presents a novel air-conditioning system with proactive demand control for daily load shifting and real time power balance in the developing smart grid. This system consists of a chilled water storage system (CWS) and a temperature and humidity independent control (THIC) air-conditioning system, which can significantly reduce the storage volume of the chilled water tank and effectively enable a building with more flexibility in changing its electricity usage patterns. The power demand of the proposed air-conditioning system can be flexibly controlled as desired by implementing two types of demand response strategies: demand side bidding (DSB) strategy and demand as frequency controlled reserve (DFR) strategy, in respond to the day-ahead and hour-ahead power change requirements of the grid, respectively. Considerable benefits (e.g., energy and cost savings) can be achieved for both the electricity utilities and building owners under incentive pricing or tariffs. A case study is conducted in a simulation platform to demonstrate the application of the proposed system in an office building.
机译:电力需求响应被认为是缓解电网功率不平衡的最有前途的解决方案之一,电网不平衡会导致电网和最终用户面临一系列关键问题。为了有效利用建筑物的需求响应潜力,本文提出了一种新型的空调系统,该系统具有主动的需求控制功能,可以在发展中的智能电网中实现每日负荷转移和实时电力平衡。该系统由冷冻水存储系统(CWS)和温度和湿度独立控制(THIC)空调系统组成,可显着减少冷冻水箱的存储量,并有效地使建筑物更灵活地更换其用电模式。通过实施两种类型的需求响应策略,可以根据需要灵活地控制所提议的空调系统的电力需求:需求侧投标(DSB)策略和作为频率控制储备(DFR)策略的需求,以响应日后的需求电网的提前和小时更改功率要求。在激励性定价或电价下,电力公司和建筑物所有者都可以实现可观的收益(例如,节省能源和成本)。在模拟平台上进行了案例研究,以演示所提出的系统在办公大楼中的应用。

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