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Smart residential electricity distribution system (SREDS) for demand response under smart grid environment
CSI Transactions on ICT Pub Date : 2019-11-11 , DOI: 10.1007/s40012-019-00259-2
Selvan Manickavasagam Parvathy

The present research work attempts to develop a Smart Residential Electricity Distribution System (SREDS) for enabling Smart Residences (SR) to participate in Demand Response (DR) schemes of Power Distribution Company (PDC) with either Flat Rate tariff, Time of Use tariff or Real Time Pricing. SREDS includes a Smart Energy Meter (SEM) enabled with Internet of Things, an Intelligent Residential Load Management System (IRLMS) with Wi-Fi connectivity, distributed Wi-Fi enabled Smart Load Nodes (SLN) and Smart Battery Charing/Discharging Controller (SBCDC). The SEM receives the key parameters such as electricity pricing, maximum demand limit, etc. as per the DR schemes from the PDC through Meter Data Management System (MDMS) using Internet. IRLMS receives the required operational timings of the loads as per the desire and comfort of the user either through the user interface or from the SLN connected to the appliances participating in DR. If the SR is equipped with battery storage system, then the battery units are interfaced with the IRLMS through SBCDC. The present status of the battery is communicated to IRLMS by SBCDC. The communication between SEM, IRLMS, SLNs and SBCDC is established through Home Area Network using Wi-Fi. The IRLMS processes the PDC parameters and load requirements, and executes an optimization algorithm to find the best possible scheduling of appliances in order to get minimized electricity bill. The SEM communicates back the energy consumption data to the PDC through MDMS.

中文翻译:

智能住宅配电系统(SREDS),用于智能电网环境下的需求响应

本研究工作试图开发一种智能住宅配电系统(SREDS),以使智能住宅(SR)能够以固定费率电费,使用时间电费或电费的形式参与配电公司(PDC)的需求响应(DR)计划。实时定价。SREDS包括支持物联网的智能电表(SEM),具有Wi-Fi连接的智能住宅负载管理系统(IRLMS),支持分布式Wi-Fi的智能负载节点(SLN)和智能电池充电/放电控制器(SBCDC) )。SEM根据DR方案从PDC通过使用Internet的电表数据管理系统(MDMS)接收关键参数,例如电价,最大需求限制等。IRLMS通过用户界面或从连接到参与DR的设备的SLN中,根据用户的期望和舒适性接收所需的负载操作时序。如果SR配备了电池存储系统,则电池单元将通过SBCDC与IRLMS连接。SBCDC将电池的当前状态传达给IRLMS。SEM,IRLMS,SLN和SBCDC之间的通信是通过使用Wi-Fi的家庭局域网建立的。IRLMS处理PDC参数和负载要求,并执行优化算法以找到最佳的设备调度,以使电费降至最低。SEM通过MDMS将能耗数据传回PDC。如果SR配备了电池存储系统,则电池单元将通过SBCDC与IRLMS连接。SBCDC将电池的当前状态传达给IRLMS。SEM,IRLMS,SLN和SBCDC之间的通信是通过使用Wi-Fi的家庭局域网建立的。IRLMS处理PDC参数和负载要求,并执行优化算法以找到最佳的设备调度,以使电费降到最低。SEM通过MDMS将能耗数据传回PDC。如果SR配备了电池存储系统,则电池单元将通过SBCDC与IRLMS连接。SBCDC将电池的当前状态传达给IRLMS。SEM,IRLMS,SLN和SBCDC之间的通信是通过使用Wi-Fi的家庭局域网建立的。IRLMS处理PDC参数和负载要求,并执行优化算法以找到最佳的设备调度,以使电费降到最低。SEM通过MDMS将能耗数据传回PDC。SLN和SBCDC是通过使用Wi-Fi的家庭局域网建立的。IRLMS处理PDC参数和负载要求,并执行优化算法以找到最佳的设备调度,以使电费降到最低。SEM通过MDMS将能耗数据传回PDC。SLN和SBCDC是通过使用Wi-Fi的家庭局域网建立的。IRLMS处理PDC参数和负载要求,并执行优化算法以找到最佳的设备调度,以使电费降至最低。SEM通过MDMS将能耗数据传回PDC。
更新日期:2019-11-11
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