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首页> 外文期刊>Journal of Mechatronics, Electrical Power, and Vehicular Technology >Design of a DC-AC Link Converter for 500W Residential Wind Generator
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Design of a DC-AC Link Converter for 500W Residential Wind Generator

机译:500W家用风力发电机DC-AC链接转换器的设计

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As one of alternative sources of renewable energy, wind energy has an excellence prospect in Indonesia, particularly in coastal and hilly areas which have potential wind to generate electricity for residential uses. There is urgent need to locally develop low cost inverter of wind generator system for residential use. Recent developments in power electronic converters and embedded computing allow improvement of power electronic converter devices that enable integration of microcontrollers in its design. In this project, an inverter circuit with suitable control scheme design was developed. The circuit was to be used with a selected topology of Wind Energy Conversion System (WECS) to convert electricity generated by a 500W direct-drive permanent magnet type wind generator which is typical for residential use. From single phase AC output of the generator, a rectifier circuit is designed to convert AC to DC voltage. Then a DC-DC boost converter is used to step up the voltage to a nominal DC voltage suitable for domestic use. The proposed inverter then will convert the DC voltage to sinusoidal AC. The duty cycle of sinusoidal Pulse-Width Modulated (SPWM) signal controlling switches in the inverter was generated by a microcontroller. The lab-scale experimental rig involves simulation of wind generator by running a geared DC motor coupled with 500W wind generator where the prototype circuit was connected at the generator output. The experimental circuit produced single phase 240V sinusoidal AC voltage with frequency of 50Hz. Measured total harmonics distortion (THD) of the voltage across load was 4.0% which is within the limit of 5% as recommended by IEEE Standard 519-1992.
机译:作为可再生能源的替代来源之一,风能在印度尼西亚具有卓越的前景,特别是在沿海和丘陵地区,那里有潜在的风能为居民使用发电。迫切需要在本地开发用于住宅的风力发电系统的低成本逆变器。电力电子转换器和嵌入式计算的最新发展允许对电力电子转换器设备进行改进,从而使微控制器能够集成到其设计中。在该项目中,开发了具有合适控制方案设计的逆变器电路。该电路将与选定的风能转换系统(WECS)拓扑一起使用,以转换由500W直驱永磁型风力发电机(通常用于住宅)产生的电能。从发电机的单相交流输出中,设计了一个整流器电路,可将交流电转换为直流电压。然后,使用DC-DC升压转换器将电压升压至适合家用的额定DC电压。然后,建议的逆变器会将直流电压转换为正弦交流电。逆变器中正弦脉冲宽度调制(SPWM)信号控制开关的占空比由微控制器生成。实验室规模的试验台通过运行与500W风力发电机耦合的齿轮直流电动机来模拟风力发电机,其中原型电路连接到发电机输出。实验电路产生频率为50Hz的单相240V正弦交流电压。负载两端电压的测量总谐波失真(THD)为4.0%,在IEEE标准519-1992建议的5%的范围内。

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