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Consumer Operational Comfort Level based power demand management in the smart grid

机译:智能电网中消费者运营舒适级基于电力需求管理

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In the smart grid, peak-load shifting allows smart homes to limit their peak hour demand to reduce electricity cost. By means of balancing the demand and supply, efficiency and stability are achieved in the power grid. While most existing Demand Response (DR) programs only use pricing signals to encourage consumers to alter their power consumption patterns, the impacts on consumers have been overlooked. In this paper, we propose a novel demand management scheme that takes into account of the consumer comfort level. We define the concept of Operational Comfort Level (OCL), and construct the OCL models for a range of smart appliances. These OCL models are integrated into our load management scheme. We develop a Min-Max Load Scheduling (MMLS) algorithm to minimize the peak-to-average ratio (PAR), while maximize the OCL of consumers. Simulation results confirm that our proposed MMLS algorithm is able to achieve both peak-load shifting and energy cost saving with minimal impact on consumers' comfort levels.
机译:在智能电网中,峰值负荷移位允许智能房屋限制其高峰时段需求,以降低电力成本。通过平衡需求和供应,在电网中实现效率和稳定性。虽然大多数现有需求响应(DR)程序仅使用定价信号来鼓励消费者改变其功耗模式,但对消费者的影响被忽视了。在本文中,我们提出了一种新的需求管理方案,考虑了消费者的舒适程度。我们定义了操作舒适度(OCL)的概念,并为一系列智能设备构建OCL模型。这些OCL模型集成到我们的负载管理方案中。我们开发了最小的最大负载调度(MMLS)算法,以最小化峰值平均值(PAR),同时最大化消费者的OCL。仿真结果证实,我们提出的MMLS算法能够实现峰值负载换档和能源成本,并对消费者的舒适度影响最小。

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