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Model Predictive Control for Dual-Active-Bridge Converters Supplying Pulsed Power Loads in Naval DC Micro-Grids

机译:海军直流微电网中提供脉冲功率负载的双有源桥转换器的模型预测控制

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Pulsed power loads (PPLs) are becoming prevalent in medium-voltage naval dc micro-grids. To alleviate their effects on the system, energy storages are commonly installed. For optimal performance, their interface converters need to have fast dynamics and excellent disturbance rejection capability. Moreover, these converters often need to have voltage transformation and galvanic isolation capability since common energy storage technologies such as batteries and supercaps are typically assembled with low-voltage strings. In order to address these issues, a moving discretized control set model predictive control (MDCS-MPC) is proposed in this paper and applied on a dual-active-bridge converter. Fixed switching frequency is maintained, enabling easy passive components design. The proposed MDCS-MPC has a reduced prediction horizon, which allows low computational burden. The operating principle of theMDCS-MPC is introduced in the development of a cost function, which provides stiff voltage regulation. Resonance damping and sampling noise resistance can also be achieved with the proposed cost function. An adaptive step is introduced to enable a fast transition. Assessments on the performance of the proposed MDCS-MPCare conducted. Comparisons with other control methods are also provided. Experimental validations on a 300 V/300 V 20-kHz 1-kW dual-active-bridge converter are carried out to verify the theoretical claims.
机译:脉冲功率负载(PPL)在中压海军直流微电网中变得越来越普遍。为了减轻它们对系统的影响,通常安装储能器。为了获得最佳性能,其接口转换器需要具有快速的动态特性和出色的抗干扰能力。此外,这些转换器通常需要具有电压转换和电流隔离功能,因为通常的能量存储技术(例如电池和超级电容器)通常与低压串组装在一起。为了解决这些问题,本文提出了一种运动离散控制集模型预测控制(MDCS-MPC),并将其应用于双有源桥变换器。保持固定的开关频率,使无源元件设计变得容易。所提出的MDCS-MPC具有减小的预测范围,这允许较低的计算负担。在成本函数的开发中引入了MDCS-MPC的工作原理,该函数可提供严格的电压调节。利用建议的成本函数也可以实现共振阻尼和采样抗噪性。引入了自适应步骤以实现快速过渡。对提议的MDCS-MPC的性能进行了评估。还提供了与其他控制方法的比较。在300 V / 300 V 20 kHz 1-kW双有源桥转换器上进行了实验验证,以验证理论要求。

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