Design and implementation of a sinusoidal flux controller for core loss measurements

B. Tekgun, Ali R. Boynuegri Chowdhury, Md Asif Mahmood, Y. Sozer
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引用次数: 4

Abstract

In this paper, design and implementation of a sinusoidal flux controller has been proposed for a core loss tester for eliminating the higher order harmonics from the flux passing through the core. The core loss test is performed with a toroidal transformer that consists of a main and sense windings wound on a toroidal core. The flux through the core is calculated with the numerical integration of the sense coil voltage. The controller commands the voltage applied to the main winding to keep the sense coil voltage thus the flux waveform sinusoidal. A single-phase SiC inverter operating at 150 kHz has been developed to generate the waveforms, an LC filter is used between the converter and the toroidal transformer to smooth the pulsating inverter output voltages. To be able to achieve zero steady state error and fast tracking as well as being robust to the periodic errors, a new controller is proposed. The proposed controller includes the periodic, conventional feedback and feedforward controllers and coordinates them. The designed controller has been simulated and it has been found that the flux waveform tracks the reference fast enough with a satisfactory steady state error. The system has been tested through experiments and experimental results are in good agreement with the simulation results.
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铁芯损耗测量用正弦磁通控制器的设计与实现
本文提出了一种用于铁芯损耗测试仪的正弦磁通控制器的设计和实现,用于消除通过铁芯的磁通的高次谐波。铁芯损耗测试是用环形变压器进行的,环形变压器由绕在环形铁芯上的主绕组和感测绕组组成。通过感应线圈电压的数值积分计算铁心磁通。控制器命令施加到主绕组的电压以保持检测线圈电压,从而使磁通波形呈正弦。开发了工作频率为150 kHz的单相SiC逆变器来产生波形,在变换器和环形变压器之间使用LC滤波器平滑逆变器输出的脉动电压。为了实现零稳态误差和快速跟踪,并对周期误差具有鲁棒性,提出了一种新的控制器。该控制器包括周期控制器、常规反馈控制器和前馈控制器,并对它们进行协调。对所设计的控制器进行了仿真,结果表明,磁链波形对参考点的跟踪速度足够快,且具有满意的稳态误差。通过实验对系统进行了测试,实验结果与仿真结果吻合较好。
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