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Quasi-Z-Source Indirect Matrix Converter Fed Induction Motor Drive for Flow Control of Dye in Paper Mill

机译:用于造纸厂染料流控制的准Z源间接矩阵变换器馈电感应电动机驱动

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This paper describes a flow control of the dye in the paper mill with the quasi-Z-source indirect matrix converter (QZSIMC) fed induction motor drive. More than a decade the voltage-source inverter (VSI) and current-source inverter (CSI) have been used to control the speed of the induction motor, which in turns controls the flow of dye. Recently, the matrix converter (MC) has been an excellent competitor for the VSI or CSI for its compactness. The voltage transfer ratio of the VSI, CSI, and MC has been limited to 0.866. Thus, the efficiency of these converters is less. To improve the voltage transfer ratio the quasi-Z-source network (QZSN) is to be used between voltage source and indirect MC (IMC). The modification in the shoot-through duty ratio of the QZSN varies the voltage transfer ratio greater than 0.866. Different voltage transfer ratios are needed for different voltage sag conditions. For a variation of the duty ratio of the QZSN, the fuzzy logic controller has been presented. To control the IMC vector control with space vector modulation has been presented. This paper proposes the implementation of QZSIMC adjustable speed drive for the flow control of dye in paper mill during different voltage sag conditions. A 4-kW prototype has been built and the effectiveness of the proposed system is verified with simulation results and experimental setup. Simulation is done in MATLAB, Simulink platform. Experimental setup is done with the aid of a TMS320F2812 (Texas Instrument) processor. The experimental results validate the maintenance of the speed of an induction motor at the set condition, thus controlling the perfect flow of dye in paper manufacturing technology.
机译:本文介绍了使用准Z源间接矩阵转换器(QZSIMC)供电的感应电动机驱动器对造纸厂中染料的流量控制。十多年来,电压源逆变器(VSI)和电流源逆变器(CSI)已用于控制感应电动机的速度,而感应电动机又控制着染料的流动。最近,矩阵转换器(MC)的紧凑性一直是VSI或CSI的出色竞争对手。 VSI,CSI和MC的电压传输比已限制为0.866。因此,这些转换器的效率较低。为了提高电压传输率,将在电压源和间接MC(IMC)之间使用准Z源网络(QZSN)。 QZSN的直通占空比的修改使电压传输比大于0.866。对于不同的电压骤降条件,需要不同的电压传输比。为了改变QZSN的占空比,提出了模糊逻辑控制器。为了控制IMC矢量,需要使用空间矢量调制。本文提出了QZSIMC变频器的实现方案,用于在不同电压骤降条件下造纸厂中的染料流量控制。已经建立了一个4kW的原型,并通过仿真结果和实验设置验证了所提出系统的有效性。仿真是在MATLAB Simulink平台上完成的。实验设置是借助TMS320F2812(Texas Instrument)处理器完成的。实验结果证明了在设定条件下可以保持感应电动机的速度,从而在造纸技术中控制染料的完美流动。

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