基于单片机的交流斩波馈电交流串联电机性能分析

S. Sivaranjani, C. Ramakrishnan
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引用次数: 4

摘要

交流系列电机广泛应用于许多工业应用,如便携式钻机,缝纫机,食品搅拌机和需要高启动扭矩的手动工具。电枢电压控制在大多数这些应用中是一种有效和简单的速度控制方法。固态交流电压控制器可以用来控制施加到电机上的电压。交流电压控制器背靠背连接的可控硅或triac采用相位控制策略,可用于此目的。然而,人们发现控制器在输入电源中引入谐波,电源功率因数差以及对通信设备的影响等问题。这些问题在控制器的大射击角度下尤为严重。采用脉宽调制技术对交流串联电动机进行调速,可以克服相控方法所带来的问题。通过脉宽调制(PWM)斩波控制,可以降低谐波失真,提高功率因数。采用选择性消谐波策略的多脉宽斩波器可以进一步降低谐波。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis of AC chopper fed AC series motor using microcontroller
AC series motors are extensively employed in many industrial applications such as portable drills, sewing machines, food mixers and hand tools requiring high starting torque. Armature voltage control is an effective and simple method of speed control in most of these applications. Solid state AC voltage controllers can be used to control the voltage applied to the motor. AC voltage controllers with back to back connected SCRs or TRIACs employing phase control strategy are commercially available for this purpose. However the controllers are found to create problems like introduction of harmonics in the input supply, poor supply power factor and inference to communication equipments. These problems are severe at large firing angles of the controller. The problems introduced by phase control method can be overcome if pulse width modulation technique is employed for the speed control of AC series motor. With pulse width modulation (PWM) chopper control, the harmonic distortion can be reduced and the power factor can be improved. Multiple pulse width chopper employing selective harmonic elimination strategy is employed can further reduce the harmonics.
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