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Modeling of dual-active soft-switching converter for MTEM transmitter

机译:用于MTEM发射器双极电动开关转换器的建模

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Multi-channel transient electromagnetic (MTEM) is an artificial source electromagnetic detection method, the transmitter injects the high-power pseudo-random binary sequence (PRBS) signals with different coding frequencies into the earth to obtain the geological structure and the mineral resources. However, the current transmitters have many problems, such as small power-density, low efficiency, and poor quality output signals. A novel dual-active soft-switching converter can significantly reduce the circuit loss and achieve stable output from nearly zero to full load. Because of the proposed converter containing 18 operating modes in a duty cycle, it cannot be directly modeled. Based on the model of the full-bridge hard-switching converter, the steady-state and low-frequency small-signal model of the proposed converter is established by analyzing the influences of resonant inductance, input voltage and output current fluctuations on the effective duty cycle. Finally, the simulation and experimental results verify the validity of the model, and a 50kW principle prototype is implemented.
机译:多通道瞬态电磁(MTEM)是一种人工源电磁检测方法,发射器将具有不同编码频​​率的高功率伪随机二进制序列(PRBS)信号喷射到地球中以获得地质结构和矿产资源。然而,目前的发射机具有许多问题,例如小的功率密度,低效率,质量输出信号差。一种新型双极电源开关转换器可以显着降低电路损耗,实现从近零到满载的稳定输出。由于所提出的转换器包含在占空比中的18个操作模式,因此不能直接建模。基于全桥硬开关转换器的模型,通过分析谐振电感,输入电压和输出电流波动对有效义务的影响,建立了所提出的转换器的稳态和低频小信号模型循环。最后,模拟和实验结果验证了模型的有效性,实现了50kW的原理原型。

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