逆变器输出扼流圈中高畸变电流的铁损估计

F. Bachheibl, D. Gerling
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引用次数: 2

摘要

在长电缆供电电机的驱动应用中,需要分别保护逆变器和机器免受高充电电流和过调电压的影响。这种保护通常使用带层压芯的逆变器输出扼流圈来平滑输出电流波形并限制充电电流。由于电缆和扼流圈电抗器形成lc电路,它们确实支持电流和电压的振荡,特别是在逆变器终端,对输出扼流圈的铁芯损耗具有不可预测的影响。本文的研究是试图量化高畸变电流波形下层压铁芯的铁芯损耗。在实验室设置中,扼流圈电感器的比例模型集成到lc电路中,并提供逆变器馈电,以模拟现实世界应用中的电流信号。将测量到的电流波形输入到基于磁等效电路和等效椭圆环模型的损耗模型中,将模拟损耗与实测值进行比较。达成了很好的协议。
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Iron loss estimation for highly distorted currents in inverter output chokes
In drive applications with long cable fed electrical machines, inverters and machines need to be protected from high charging currents and overshoot voltages, respectively. This protection is often performed using inverter output chokes with laminated cores to smooth the output current waveform and limit charging currents. As cable and choke reactor form an LC-circuit, they do support oscillations of current and voltage especially at the inverter terminal with unpredictable effect on the core loss of the output choke. The research presented in this paper is an attempt to quantify the core loss in laminated iron cores for highly distorted current waveforms. In a laboratory setup, a scale model of a choke inductor is integrated into an LC-circuit and supplied with inverter feed in order to imitate the current signal found in real world applications. The measured current waveforms are fed into a loss model based on a magnetic equivalent circuit and the equivalent elliptical loop model to compare simulated losses with the measured values. A good agreement is achieved.
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