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Peak load reduction and load shaping in HVAC and refrigeration systems in commercial buildings by using a novel lightweight dynamic priority-based control strategy

机译:使用基于小型轻量级动态优先的控制策略,在商业建筑中HVAC和制冷系统中的峰值负荷和装载整形

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摘要

Reducing peak power demand in a building can reduce electricity expenses for the building owner and contribute to the efficiency and reliability of the electrical power grid. For the building owner, reduced expenses come from the reduction or elimination of peak power charges on electricity bills. For the power system operator, reducing peak power demand leads to a more predictable load profile and reduces stress on the electric grid system. We present a computationally inexpensive, dynamic, and retrofit-deployable control strategy to effect peak load reduction and load shaping. The effectiveness of the control strategy is examined in a simulation with 80 air-conditioning units and 40 refrigeration units. The results show that a peak demand reduction of 60 kW can be achieved relative to peak demand in a typical set point based approach. The proposed strategy was deployed in a gymnasium building with four rooftop HVAC units, where it showed over 15% peak demand (kW) reduction savings while maintaining or lowering energy consumption (in kilowatt-hours) relative to the set point based thermostat controls.
机译:降低建筑物中的峰值功率需求可以减少建筑物所有者的电力费用,并有助于电力电网的效率和可靠性。对于建筑物所有者,减少的费用来自减少或消除电费上的峰值电力费用。对于电力系统操作员,降低峰值功率需求导致更可预测的负载曲线并减少电网系统上的应力。我们介绍了一种计算地廉价,动态和改造可部署的控制策略,以实现峰值负载减少和负载整形。在具有80个空调单元和40个制冷单元的模拟中检查控制策略的有效性。结果表明,相对于基于典型设定点的方法的峰值需求,可以实现60kW的峰值需求减少。拟议的策略部署在一个具有四个屋顶HVAC单位的体育馆建筑中,在那里它显示出超过15%的峰值需求(kW)减少节省,同时保持或降低了基于设定点的恒温器控制的能耗(千瓦时)。

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