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Applying limited-preemptive scheduling to peak load reduction in smart buildings

机译:将抢先式调度应用于智能建筑的峰值负载降低

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The coordination of appliances in a smart building to limit the peak load is one of the common objectives of power load management approaches such as the Demand-Side Management (DSM). The DSM, in turn, is an important research challenge in the field of smart energy systems and smart grids. This paper investigates the use of the limited-preemption scheduling approach to the coordination of a set of household appliances in a smart building. This approach is enabled by the application of a real-time scheduling framework to manage the activation of electric loads. The limited-preemption technique aims to reduce the number of stop/restart operations applied to interruptible devices, while ensuring the same performance in terms of peak load reduction. The original contribution of this paper w.r.t. to previous works on real-time scheduling with limited-preemption is to present some peculiar issues related to preemptions of electric loads and to assess suitability and benefits of this approach when applied to interruptible household appliances. Simulated results show the effectiveness of this method.
机译:协调智能建筑中的设备以限制峰值负载是诸如需求方管理(DSM)之类的电力负载管理方法的共同目标之一。反过来,DSM是智能能源系统和智能电网领域的重要研究挑战。本文研究了有限抢占调度方法在智能建筑中协调一组家用电器的用途。通过应用实时调度框架来管理电负载的激活,可以启用此方法。有限抢占技术旨在减少应用于可中断设备的停止/重新启动操作的数量,同时在降低峰值负载方面确保相同的性能。本文的原始贡献先前关于有限抢占的实时调度的工作是提出一些与抢占电力负载有关的特殊问题,并评估将这种方法应用于可中断家用电器时的适用性和益处。仿真结果表明了该方法的有效性。

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