首页> 外文会议>2017 International Conference on Technological Advancements in Power and Energy >Design and simulation of stand-alone three phase power supply system using solar photo voltaics for industrial load application
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Design and simulation of stand-alone three phase power supply system using solar photo voltaics for industrial load application

机译:用于工业负载应用的太阳能光伏独立式三相电源系统的设计和仿真

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Industries that are situated far away from grid access, industries which cannot tolerate frequent power outages and power quality issues would produce a portion or whole of their demand using fossil fuel based technologies in their site. Fossil fuel based technologies exhibit disadvantages like high operating cost, fluctuations of t he p rice of f uel, g reenhouse g as emission etc. Therefore, the use of renewable resources for electricity generation is gaining awareness. Inverters are predominantly used in such systems. Most commonly used the inverter in these applications is the three phase three leg voltage source inverter(VSI). When supplying unbalanced loads and nonlinear loads, the inverter performs with numerous problems such as poor dc link utilization, lower efficiency, high common mode volt-age(CMV) and adverse electromagnetic interference(EMI) effects. In this paper a standalone three phase four wire supply system utilizing solar photovoltaic system(PV), battery energy storage system(BESS) and a four leg VSI in developed. Zero sequence injected pulse width modulation(PWM) coupled with near state pulse width modulation(PWM) is chosen as the control scheme for the inverter. The proposed system is simulated under balanced as well as unbalanced load condition. The results are validated and verified in MATLAB.
机译:远离电网接入的行业,不能忍受频繁的停电和电能质量问题的行业,将在其站点中使用基于化石燃料的技术来满足其部分或全部需求。基于化石燃料的技术具有以下缺点:较高的运行成本,大米的燃料波动,废气的蓄积等。因此,将可再生资源用于发电已引起人们的关注。在这种系统中主要使用逆变器。在这些应用中最常用的逆变器是三相三脚电压源逆变器(VSI)。当提供不平衡负载和非线性负载时,逆变器会出现许多问题,例如直流链路利用率低,效率低,共模电压(CMV)高以及不利的电磁干扰(EMI)效应。本文开发了一个独立的三相四线供电系统,该系统利用太阳能光伏系统(PV),电池能量存储系统(BESS)和四脚VSI。选择零序注入脉冲宽度调制(PWM)结合近状态脉冲宽度调制(PWM)作为逆变器的控制方案。所提出的系统是在平衡和不平衡负载条件下进行仿真的。结果在MATLAB中得到验证和验证。

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