Modular Open Source Solar Photovoltaic-Powered DC Nanogrids with Efficient Energy Management System

Md Motakabbir Rahman, Joshua Pearce
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Abstract

Initially the concept of a DC nanogrid was focused on supplying power to individual homes. Techno-economic advances in photovoltaic (PV) technology have enabled solar PV stand-alone nanogrids to power individual devices using device-specific architectures. To reduce costs and increase accessibility for a wider range of people, a modular open-source system is needed to cover all applications at once. This article introduces a modular PV-powered nanogrid system, consisting of a do it yourself (DIY) PV system with batteries to allow for off-grid power. The resultant open-source modular DC nanogrid can deliver DC power to loads of different voltage levels, which is possible because of the efficient and parametric energy management system (EMS) that selects modes of operation for the grid based on DC bus voltage and state of charge of batteries. Simulation results verify the coordination between the EMS and the PV-battery system under varying PV power generation and load conditions. This EMS has potential to enable easy personalization of a vast area of applications and expand appropriate technology for isolated communities. A thorough stability analysis has been conducted, leading to the development of an LQR (Linear Quadratic Regulator) controller as a replacement for the conventional PI (Proportional - Integral) controllers for better transient stability of the system.
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模块化开源太阳能光伏发电直流纳米电网与高效能源管理系统
最初,直流纳米电网的概念主要是为个人家庭供电。光伏(PV)技术在技术经济方面的进步使太阳能光伏独立纳米电网能够利用特定设备架构为单个设备供电。为了降低成本,让更多人能够使用,需要一种模块化开源系统来同时覆盖所有应用。本文介绍了一种模块化光伏供电纳米电网系统,该系统由一个自己动手(DIY)的光伏系统和电池组成,可以离网供电。由此产生的开源模块化直流纳米电网可为不同电压等级的负载提供直流电,这得益于高效的参数化能源管理系统(EMS),该系统可根据直流母线电压和电池充电状态为电网选择运行模式。仿真结果验证了 EMS 与光伏电池系统在不同光伏发电和负载条件下的协调性。该 EMS 具有潜力,可轻松实现广泛领域的个性化应用,并为孤立的社区扩展适当的技术。在进行了全面的稳定性分析后,开发出了 LQR(线性二次调节器)控制器,以取代传统的 PI(比例-积分)控制器,从而提高系统的瞬态稳定性。
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