The novel algorithm-based hysteresis current control technique (HCCT) to eliminate sub and inter harmonics (SIH) in load current

IF 1.4 Q2 ENGINEERING, MULTIDISCIPLINARY
T. Mohapatra, Asim Kumar Dey
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引用次数: 0

Abstract

Purpose This study aims to propose a unique algorithm-based hysteresis current control technique (HCCT) for induction motor using a single-phase voltage source inverter (SPVSI) to eliminate both sub and inter harmonics (SIH) and electromagnetic interference (EMI). The total harmonic distortion (THD) of the load current also reduces in comparison to standard HCCT and modified technique-based existing HCCT. Design/methodology/approach Matlab simulation has been carried out to develop an SPVSI model and the unique algorithm-based HCCT. The same platform has also been used to develop a few existing HCCTs such as standard, dual-band and modified. The switching frequency and harmonic analysis of load currents for all the HCCTs have been compared in the paper. The hardware implementation of the proposed algorithm-based HCCT was also verified and compared with the simulation results. Findings The proposed unique algorithm-based HCCT provides the benefits of both unipolar and bipolar switching techniques. It reduces the switching frequency as unipolar switching scheme and eliminates the EMI. It also reduces THD and nullifies SIH of the load current. This enables an improvement in the overall performance and efficiency of the motor. Practical implications This proposed HCCT eliminates the SIH and improves the overall efficiency of the motor, hence can prevent overheating, vibration, acoustic noise, pulsating torque and braking of the rotor shaft of the motor and increasing the reliability of the system. Social implications It can be implemented for the motors that are used in household applications and electric vehicles through one-phase inverter. Originality/value This proposed HCCT has detected the zero crossing point of reference current, allowed samples and shifted the necessary amount of hysteresis band at zero crossing region to eliminate SIH and THD.
提出了一种新的基于算法的磁滞电流控制技术(HCCT)来消除负载电流中的次谐波和间谐波(SIH)
本研究旨在提出一种独特的基于算法的磁滞电流控制技术(HCCT),用于使用单相电压源逆变器(SPVSI)来消除次谐波和间谐波(SIH)以及电磁干扰(EMI)。与标准HCCT和基于改进技术的现有HCCT相比,负载电流的总谐波失真(THD)也有所降低。设计/方法学/方法matlab仿真开发了SPVSI模型和独特的基于算法的HCCT。同样的平台也被用于开发一些现有的hcct,如标准、双频和改进。本文对所有hcct的开关频率和负载电流的谐波分析进行了比较。验证了基于算法的HCCT的硬件实现,并与仿真结果进行了对比。所提出的独特的基于算法的HCCT提供了单极和双极开关技术的优点。它降低了单极开关频率,消除了电磁干扰。它还降低了THD并消除了负载电流的SIH。这可以提高电机的整体性能和效率。本文提出的HCCT消除了SIH,提高了电机的整体效率,从而可以防止电机转子轴的过热、振动、噪声、脉动力矩和制动,提高了系统的可靠性。它可以通过单相逆变器实现用于家用应用和电动汽车的电机。独创性/价值本文提出的HCCT检测了参考电流的过零点,允许采样,并在过零点区域移动了必要的迟滞带量,以消除SIH和THD。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
World Journal of Engineering
World Journal of Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
4.20
自引率
10.50%
发文量
78
期刊介绍: The main focus of the World Journal of Engineering (WJE) is on, but not limited to; Civil Engineering, Material and Mechanical Engineering, Electrical and Electronic Engineering, Geotechnical and Mining Engineering, Nanoengineering and Nanoscience The journal bridges the gap between materials science and materials engineering, and between nano-engineering and nano-science. A distinguished editorial board assists the Editor-in-Chief, Professor Sun. All papers undergo a double-blind peer review process. For a full list of the journal''s esteemed review board, please see below.
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