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Design and Analysis of an Isolated Constant Current to Constant Current Converter with Capacitor Transferring Energy

机译:电容器传输能量恒流变换器隔离恒流的设计与分析

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The underwater electric energy conversion modules are the key instruments for powering electric facilities in the cabled underwater information networks (CUINs) which have promoted the development of marine science. The performance of the energy conversion modules determines the stable operation of the entire CUINs. Different from previous energy conversion circuit that uses inductors to store and transfer energy, a novel isolated constant current to constant current (CC-CC) converter that uses capacitors as energy storage and conversion media is proposed in this paper, in which the energy of the load is completely supplied by the capacitor. To prove the feasibility of the designed converter, we first analyze the circuit working process by applying the state space method. Simulation and experiments show that the current ripple is small while the converter has excellent constant current (CC) output characteristic. Moreover, the output current can be modulated by the duty cycle of the PWM signal and the turns ratio of transformer while the dynamic adjustment range of the converter is large. The proposed CC-CC converter has good rationality and feasibility, which provides technical support for electric energy conversion, and is suitable for the future development of the CC remote power supply system of CUINs.
机译:水下电能转换模块是用于在有线水下信息网络(CUIN)中的电气设施供电的关键仪器,这些信息促进了促进海洋科学的发展。能量转换模块的性能决定了整个CUIN的稳定运行。与先前的能量转换电路不同,使用电感器存储和转移能量,在本文中提出了一种用于恒流(CC-CC)转换器的新型隔离电流作为能量存储和转换介质的恒流(CC-CC)转换器,其中能量负载由电容器完全提供。为了证明设计转换器的可行性,我们首先通过应用状态空间方法来分析电路工作过程。仿真和实验表明,电流纹波很小,而转换器具有出色的恒定电流(CC)输出特性。此外,输出电流可以通过PWM信号的占空比和变压器的匝数比而调制,而转换器的动态调节范围大。拟议的CC-CC转换器具有良好的合理性和可行性,可为电能转换提供技术支持,适用于CC远程电源系统的CC远程电源系统的CC远程电源系统。

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