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Evaluation of control strategies in HVAC split systems

机译:HVAC分裂系统控制策略评估

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The important and continuous increment in the global electricity consumption is doing that energy saving strategies have turned into a crucial solution. Efficient heating, ventilation and air conditioning controls are generally the most cost-effective ways to minimize the use of energy in buildings. In this framework, an energy management and control system has been developed to schedule electric end-uses in the campus of the Polytechnic University of Valencia, Spain. As a result, each system or device in the campus is able to be switched on/off by using a web platform. This paper presents an evaluation of different control strategies for HVAC split systems, which have been performed by using an energy management and control system, developed in a similar way by UPV. In order to adapt and compare several schedules, this paper analyzes the effect of these actions in a common air conditioning device. Not affecting the comfort level and the indoor air quality is an important requirement. For that reason, a multi criteria comparison must be drawn. Demand response strategies are tested in several situations, and the economic saving is calculated taking into account the electricity contract clauses. Finally, a test is realized for the control of a group of similar devices in order to reduce the maximum peak power and obtain a flexible load shape with the HVAC loads. The studies are then extrapolated on a large system, the whole university campus, for which energy and economic savings are quantified.
机译:全球电力消耗中的重要和持续增量正在进行节能策略转变为一个重要的解决方案。高效的加热,通风和空调控制通常是最具成本效益的方法,可以最大限度地减少建筑物中的能量。在这一框架中,已经开发了一种能源管理和控制系统来安排西班牙瓦伦西亚理工学院校园中的电气最终用途。结果,校园中的每个系统或设备都能够使用Web平台打开/关闭。本文提出了对HVAC分体系统的不同控制策略的评估,该系统已经通过使用能量管理和控制系统进行,以与UPV类似的方式开发。为了使若干计划进行调整和比较,本文分析了这些动作在公共空调装置中的效果。不影响舒适度,室内空气质量是一个重要要求。因此,必须绘制多标准比较。需求响应策略在几种情况下进行测试,并考虑到电信条款的经济储蓄。最后,实现了一种测试,用于控制一组类似装置,以减小最大峰值功率并利用HVAC负载获得柔性负载形状。然后将研究在大型系统,整个大学校园内推断,能量和经济储蓄量化。

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