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Modeling and Voltage Control of Bidirectional Resonant DC/DC Converter for Application in Marine Power Systems

机译:双向谐振DC / DC转换器的建模与电压控制在海洋电力系统中的应用

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摘要

DC/DC converters have gained popularity in a number of industrial applications like electric vehicles or marine power systems, due to their high efficiency and power density levels. Pulse width modulation (PWM) and resonant converters are two main types of the DC/DC converters. Thereby, the resonant converters happen to be the preferred technology in the design of modern marine power systems since these converters are more suitable for the high and middle voltage DC applications. The resonant converters are, however, highly nonlinear systems, which limits the use of linear control methods. In this study, we propose a comprehensive analysis, modeling and control concept of a DC/DC resonant converter in marine power systems. First, a mathematical model of the DC/DC resonant converter in the so-called CLLC topology is derived based on the generalized state-space averaging method. The model is used to design a dual-loop voltage control, which aims to regulate the voltage level at the low-voltage DC bus of the resonant converter. The dual-loop voltage control consists of the primal linear controller, which directly regulates the voltage and the reference generator, which dynamically modifies the voltage reference of the primal controller. The major advantage of the suggested control concept is the improved performance of the simple controller without the need to substitute it as well as the possibility to realize, if required, a multi-rate control concept. Simulation studies under different load conditions show that the suggested modeling and control concept improves voltage control and the closed-loop system response.
机译:由于其高效率和功率密度水平,DC / DC转换器在许多电动汽车或海洋电力系统等工业应用中获得了普及。脉冲宽度调制(PWM)和谐振转换器是DC / DC转换器的两种主要类型。因此,谐振转换器恰好是现代海洋电力系统设计中的优选技术,因为这些转换器更适合高和中电压DC应用。然而,谐振转换器是高度非线性系统,其限制了线性控制方法的使用。在本研究中,我们提出了船用电力系统中DC / DC谐振转换器的全面分析,建模和控制概念。首先,基于广义状态空间平均方法导出所谓的CLLC拓扑中DC / DC谐振转换器的数学模型。该模型用于设计双回路电压控制,旨在调节谐振转换器的低压DC总线处的电压电平。双回路电压控制由原始线性控制器组成,直接调节电压和参考发生器,动态修改了原始控制器的电压参​​考。建议的控制概念的主要优点是简单控制器的性能提高,无需替换它,如果需要,可以实现多速率控制概念。不同负载条件下的仿真研究表明,建议的建模和控制概念提高了电压控制和闭环系统响应。

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