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Hardware Design of Smart Home Energy Management System With Dynamic Price Response

机译:具有动态价格响应的智能家居能源管理系统的硬件设计

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摘要

The smart grid initiative and electricity market operation drive the development known as demand-side management or controllable load. Home energy management has received increasing interest due to the significant amount of loads in the residential sector. This paper presents a hardware design of smart home energy management system (SHEMS) with the applications of communication, sensing technology, and machine learning algorithm. With the proposed design, consumers can easily achieve a real-time, price-responsive control strategy for residential home loads such as electrical water heater (EWH), heating, ventilation, and air conditioning (HVAC), electrical vehicle (EV), dishwasher, washing machine, and dryer. Also, consumers may interact with suppliers or load serving entities (LSEs) to facilitate the load management at the supplier side. Further, SHEMS is designed with sensors to detect human activities and then a machine learning algorithm is applied to intelligently help consumers reduce total payment on electricity without or with little consumer involvement. Finally, simulation and experiment results are presented based on an actual SHEMS prototype to verify the hardware system.
机译:智能电网计划和电力市场运营推动了需求侧管理或可控负载的发展。由于住宅部门的大量负载,家庭能源管理引起了越来越多的兴趣。本文提出了一种智能家居能源管理系统(SHEMS)的硬件设计,其中包括通信,传感技术和机器学习算法的应用。通过提出的设计,消费者可以轻松实现针对住宅家用负载的实时,价格敏感的控制策略,例如电热水器(EWH),供暖,通风和空调(HVAC),电动汽车(EV),洗碗机,洗衣机和烘干机。而且,消费者可以与供应商或负载服务实体(LSE)进行交互,以促进供应商端的负载管理。此外,SHEMS被设计为具有传感器以检测人类活动,然后应用机器学习算法来智能地帮助消费者减少电费的总支出,而无需或只需很少的消费者参与。最后,基于实际的SHEMS原型给出了仿真和实验结果,以验证硬件系统。

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