Design of Arduino-based communication agent for rural Indian microgrids

S. R. R. Dhiwaakar Purusothaman, R. Rajesh, Vineeth Vijayaraghavan, Karan K. Bajaj
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引用次数: 14

Abstract

This paper explains the design of a communication system, using an Arduino microcontroller and GSM Module and its functions / associated components to be implemented in a microgrid. The microgrid control and coordination infrastructure has been realized as a hierarchical multi-agent system (MAS) comprising of the DG agents, the Mu agent and the D agent. The Communication (Mu) Agent acts as a link between the lower-level microgrid agents (distributed energy resources (DERs), the load, the storage and the utility grid) which provide the required digital parameter inputs, and the Control Agent comprising of the Cloud. Data storage, analytics and control commands are generated based on the rule engine updates given by the Utility Service Provider (USP) to the Cloud. The microgrid side input data are converted into appropriate GPRS signals within the Arduino. The specific functions that enable this conversion are elucidated as pseudocode. Further, the cloud control commands are sent back to the various microgrid-side agents via the Mu agent as GPRS signals. The communication strategy has been explained in detail and has been implemented using Arduino keeping in mind system costs, ease of operability and maintenance.
基于arduino的印度农村微电网通信代理设计
本文介绍了一个通信系统的设计,利用Arduino单片机和GSM模块及其功能/相关组件在微电网中实现。微电网的控制和协调基础结构是由DG agent、Mu agent和D agent组成的分层多智能体系统(MAS)。通信(Mu)代理充当提供所需数字参数输入的底层微电网代理(分布式能源(DERs)、负载、存储和公用电网)与由云组成的控制代理之间的链接。数据存储、分析和控制命令是根据公用事业服务提供商(USP)提供给云的规则引擎更新生成的。微电网侧输入数据在Arduino内转换为相应的GPRS信号。支持这种转换的特定函数被解释为伪代码。此外,云控制命令通过Mu代理作为GPRS信号发送回各个微电网侧代理。考虑到系统成本、易操作性和可维护性,详细解释了通信策略,并使用Arduino实现。
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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