Autonomous appliance scheduling based on time of use probabilities and load clustering

C. Adika, Lingfeng Wang
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引用次数: 9

Abstract

The ultimate smart grid will operate autonomously by implementing intelligent decision-making schemes with as little consumer intervention as possible. Its success will be heavily reliant on accurate real-time information exchange between the grid and the consumers. Customers will be expected to submit energy demand schedules to actively monitor energy price signals and participate in energy bids and respond to energy management signals in real time. This kind of smart grid-user interaction will be overwhelming and can result in consumer apathy. There is therefore a need to develop intelligent systems that will execute all these tasks without the active involvement of the consumer. This paper proposes such an approach. Demand response scheme by smart scheduling of household electrical appliances is presented. The scheduler calculates individual device hourly probabilities that it uses to automatically generate optimal schedules. An optimal schedule is considered to be the one that meets the consumer's deadlines while ensuring energy cost savings to the customer.
基于时间使用概率和负荷聚类的自主设备调度
最终的智能电网将通过实施智能决策方案,在尽可能少的消费者干预下自主运行。它的成功将在很大程度上依赖于电网和消费者之间准确的实时信息交换。客户将被要求提交能源需求时间表,积极监控能源价格信号,参与能源投标,并实时响应能源管理信号。这种智能电网与用户的交互将是压倒性的,并可能导致消费者的冷漠。因此,有必要开发智能系统,在没有消费者积极参与的情况下执行所有这些任务。本文提出了这样一种方法。提出了基于智能调度的家用电器需求响应方案。调度器每小时计算单个设备的概率,用于自动生成最佳调度。最优计划被认为是满足消费者的最后期限,同时确保为客户节省能源成本的计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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