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MPPT-Based Solar Powered Water Pumping With RMS: Augmentation of IoE Technology

MPPT-Based Solar Powered Water Pumping With RMS: Augmentation of IoE Technology
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Author(s): Sushri Mukherjee (Indian Institute of Technology, New Delhi, India), Sumana Chattaraj (Indian Institute of Technology, Rajasthan, India), Dharmbir Prasad (Asansol Engineering College, Asansol, India), Rudra Pratap Singh (Asansol Engineering College, Asansol, India)and Md Irfan Khan (Supreme & Co. Pvt. Ltd., India)
Copyright: 2021
Pages: 31
Source title: Role of IoT in Green Energy Systems
Source Author(s)/Editor(s): Vasaki Ponnusamy (Universiti Tunku Abdul Rahman, Malaysia), Noor Zaman (Taylor's University, Malaysia), Low Tang Jung (Universiti Teknologi PETRONAS, Malaysia)and Anang Hudaya Muhamad Amin (Higher Colleges of Technology, UAE)
DOI: 10.4018/978-1-7998-6709-8.ch009

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Abstract

In the present era of technology drift, the Internet of Things (IoT) is a promising technology that shows the considerable transition from enterprises to businesses. In this context, renewable energy has played critical roles in developing the agricultural sector with its functionality to generate power over distant areas and different terrain. There has been a transformation in the way we consume electricity and the way it is operated by the utilities. The smart monitoring features are an efficient way to utilize energy and minimize losses. These losses might be the transmission and distribution losses or losses by the inefficient household wiring or appliances. These losses can be minimized if they are monitored well with relevant data and analytics. This book chapter presents an application of the Internet of Energy (IoE) technology in the renewable sector. The study was carried applying Maximum Power Point Tracking (MPPT) functions and corresponding Remote Monitoring System (RMS) functions. The undertaken site for Solar Water Pump (SWP) installation for irrigation is Bihar Sharif (Nalanda, Bihar). The proposed IoE based technology served maximum power output with high efficiency during operating hours. Here, the farmers may do automatic start/shut, remote start/shut from SMS/web with a health check, and self-diagnostic mechanisms for easy maintenance. Thus, the SWP system emerged as a cost-effective and environment-friendly irrigation solution for remote farmers throughout the year. The solar potential assessment of the site and circuital development were done using PVsyst 7.0 and KiCad software tools, respectively. The successful working of the developed product has been observed at the site.

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