Energy Router Based Energy Management System for Nearly Zero Energy Buildings

Mahdiyyeh Najafzadeh, I. Roasto, T. Jalakas
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引用次数: 2

Abstract

Nearly Zero Energy Buildings (NZEBs) in the building sector, one of the most energy intensive fields in the modern world, are facing new challenges. These extremely energy efficient buildings can produce their own energy whereas local storage and sources are needed. To meet those goals, new technologies and control principles must be developed and implemented. Energy usage could be best optimized by a central energy management system (EMS). This paper proposes an energy router-based EMS for NZEBs. The concept and its features will be explained and analyzed. The energy router has many tasks, e.g. energy routing, system protection and reliability, voltage regulation. However, the focus of this paper will be on the power quality at the point of common coupling (PCC). Modern households are overwhelmed by the nonlinear electrical loads, which are lowering the power quality in the grid. The power quality is a serious issue also in NZEB. This paper will demonstrate how an energy router can be used to control reactive and active power and compensate current harmonics at the PCC. The system behavior will be simulated and verified by the experimental prototype.
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基于能量路由器的近零能耗建筑能源管理系统
近零能耗建筑作为当今世界能源最密集的领域之一,正面临着新的挑战。这些非常节能的建筑可以产生自己的能源,而需要当地的储存和来源。为了实现这些目标,必须开发和实施新的技术和控制原则。能源利用可以通过中央能源管理系统(EMS)得到最佳优化。提出了一种基于能源路由器的nzeb环境管理系统。本文将对其概念及其特点进行解释和分析。能量路由器具有能量路由、系统保护和可靠性、电压调节等功能。然而,本文的重点将放在共耦合点(PCC)的电能质量上。现代家庭不堪重负的非线性电力负荷,降低了电网的电能质量。电能质量也是NZEB的一个严重问题。本文将演示如何使用能量路由器来控制PCC的无功和有功功率并补偿电流谐波。该系统的性能将通过实验样机进行模拟和验证。
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