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A microprocessor based firing scheme for three-phase converters working under a variable frequency supply

机译:基于微处理器的三相电源可变频率触发方案

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In a weak power system like the one in India, power supply faces a lot of voltage swells and sags. Apart from this, the supply frequency also deviates up to /spl plusmn/5% of its rated value in accordance with the variations in the load. This can cause malfunctioning of digitally controlled converters as it is required that timings of the control signals fed to such converters should be accurate. In this paper, a generalised microprocessor based firing scheme for converters working under a three-phase variable frequency supply is presented. The scheme is built using the Intel processor 8086 along with a timer 8253 and a peripheral interface 8255. The firing scheme uses the concept of hardware interrupt to generate the firing signals so that the CPU time of the processor can be used for other useful purposes. The truncation error involved in the calculation of delay corresponding to the delay angle of the converter is also minimised by incorporating an algorithm for correction. This scheme allows the firing angle of the converter to be varied as and when required. The firing scheme enables the converter to be operated over a wide range of frequencies so that the converter could be employed in the rotor side of a static Kramer drive. The firing scheme responds to any variation in the supply frequency within one cycle duration. In general, this robust firing scheme can be used for any three-phase converter such as an AC chopper for switching PF correction capacitors or a rectifier in a HVDC transmission system.
机译:在印度这样的弱电系统中,电源面临许多电压骤升和骤降。除此之外,根据负载的变化,电源频率也会偏离其额定值的/ spl plusmn / 5%。这可能会导致数控转换器出现故障,因为要求馈送到此类转换器的控制信号的时序应准确无误。本文提出了一种在三相变频电源下工作的基于通用微处理器的变流器点火方案。该方案是使用Intel处理器8086以及计时器8253和外围设备接口8255构建的。触发方案使用硬件中断的概念来生成触发信号,以便处理器的CPU时间可用于其他有用目的。通过合并校正算法,还可以最小化与转换器的延迟角相对应的延迟计算中涉及的截断误差。该方案允许在需要时改变转换器的触发角。点火方案使变流器可以在很宽的频率范围内工作,因此该变流器可以用于静态克莱默驱动器的转子侧。触发方案在一个周期内响应电源频率的任何变化。通常,这种鲁棒的点火方案可用于任何三相转换器,例如用于切换PF校正电容器的AC斩波器或HVDC传输系统中的整流器。

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