首页> 外文会议>2013 IEEE Grenoble Power Tech >A power flow control strategy for high energy efficient smart LED lighting system powered by PV and MPPT controlled DC grid
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A power flow control strategy for high energy efficient smart LED lighting system powered by PV and MPPT controlled DC grid

机译:由PV和MPPT控制的直流电网供电的高能效智能LED照明系统的功率流控制策略

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In office buildings, the use of LED lighting system to replace the inefficiency of the common lightings like incandescent, fluorescent and halogen lamps presents a wide opportunity to get high efficiency, long life-time, significant cost reduction, and low maintenance. In this paper, a power flow control strategy for high energy efficient smart LED lighting system powered by Maximum Power Point Tracking (MPPT) controlled DC grid in office buildings is proposed. The proposed system architecture is studied in three main aspects, which are the choice and the design of the topology of the whole system, the smart LED lighting driving and dimming, and the control strategy combining the MPPT with the energy management. In addition to that, two targets are taking into account: The CO2 emissions reduction and the power flow reduction from the grid when the PV generation and energy storage capacity are less than the local demand. Several modes of operation are used to achieve these goals, and their strengths and weaknesses are evaluated. In order to verify the effectiveness of the proposed system, a computer simulation is achieved, using DIALUX simulator for lighting system design, MATLAB/SIMULINK simulation package for energy management, and some experiments are carried out on a test room equipped with the smart LED lighting system.
机译:在办公大楼中,使用LED照明系统来代替白炽灯,荧光灯和卤素灯等普通照明设备的低效率,为获得高效率,长寿命,显着降低成本和降低维护成本提供了广阔的机会。本文提出了一种由最大功率点跟踪(MPPT)控制的直流电网为办公大楼供电的高能效智能LED照明系统的功率流控制策略。从整个系统拓扑的选择与设计,智能LED照明驱动与调光,MPPT与能量管理相结合的控制策略三个方面对提出的系统架构进行了研究。除此之外,还考虑了两个目标:当光伏发电和储能能力低于当地需求时,减少二氧化碳排放量和减少电网的潮流。使用几种操作模式来实现这些目标,并评估其优缺点。为了验证所提出系统的有效性,使用DIALUX模拟器进行照明系统设计,使用MATLAB / SIMULINK进行能源管理的模拟程序包进行了计算机仿真,并在配备了智能LED照明的测试室中进行了一些实验。系统。

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