微电网拓扑下电压源正弦PWM逆变器性能分析

Priyanka Mane, S. Suryawanshi, Vilas S. Bugade
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引用次数: 1

摘要

正在开展微电网系统运行与控制的研究工作。同时,实验室规模微电网的分析、设计和实现也是研究人员的优化工作。在许多出版物、文献和小组讨论中,关于设计分析、电池设计问题、逆变器设计和降压变换器问题都有很好的记录。MG实验室测试台的实际实施会遇到前面提到的各种问题,需要在实施前进行实际的软件仿真来克服。MG方案由太阳能光伏板、风力涡轮机、储能、转换器、逆变器、充电控制器和几个通过电压源逆变器(VSI)供电的电力负载组成。本文提出的逆变器采用比例谐振(PR)控制器的PWM控制。每当系统中出现一些干扰时,静态转换开关(STS)必须打开并应在很短的时间内隔离公用事业和MG。此时,分布式能源(DERs)能够向连接的负载供电,并保持良好的电压调节。现在,DERs必须将电力输送到连接的负载,当故障清除并且系统正常运行时,MG应该能够从孤岛运行模式顺利地与公用电网重新同步。所设计的MG实验室试验台将对电力系统进行全谐波畸变(THD)、暂态特性分析以及负荷侧功率因数的改善等其他分析。由于可再生能源(RES)的大量使用,在MG拓扑中使用DERs对环境非常有益。
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Performance Analysis of Voltage Source Sine PWM Inverter for Micro Grid Topology
A research work is being carried out on Micro grid system operation and control. Also, analysis, design and implementation of laboratory scale Micro Grid (MG) are much optimized work for the researchers. It is well documented in many publications, literatures and group discussions about the design analysis, battery design issues, design of Inverter, and Buck converter problem. The actual implementation of MG laboratory test bed leads to different issues mentioned earlier and has to overcome by doing actual software simulation before implementation. The scheme MG comprises of Solar PV panel, Wind Turbine, Energy Storage, Converter, Inverter, Charge Controller and several electrical loads which are fed through a Voltage Source Inverter (VSI).The Inverter which is proposed here is with PWM control with Proportional Resonant (PR) Controller. Whenever some disturbances occur in the system, Static Transfer Switch (STS) has to open & should isolate the Utility and MG within a very short duration. By this time the Distributed Energy Sources (DERs) is able to supply to the connected load maintains the good voltage regulation. Now, the DERs must deliver the power to connected loads and when fault clears and system is healthy, the MG should be able to re-synchronize with utility grid smoothly from Islanding mode of operation. The designed MG lab test bed will be undergone the different analysis about Total Harmonic Distortion (THD), transient behavior and other analysis regarding power system such as improvement of Power Factor on load side. By the use of DERs in the MG topology it is very beneficial to the environment as there is massive use of Renewable Energy Resources (RES).
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