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Design and Control of Coupled Inductor DC–DC Converters for MVDC Ship Power Systems

机译:MVDC船用电力系统耦合电感DC-DC转换器的设计和控制

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This paper deals with the design and control aspects of modern ship power systems within the paradigm of an all-electric ship. The widespread use of power electronic converters is central in this context due to the technological advances in automation systems and the integration of the electrical propulsion systems and other components, such as electrical energy storage systems and renewable energy sources. The issue to address in this scenario is related to the request of increased performances in dynamic operation while pursuing advantages in terms of energy savings and overall system security. In addition, the presence of large load changes requires providing robustness of the control in terms of system stability. This paper is focused on medium voltage direct current (MVDC) ship power systems and the design and control of coupled inductor DC–DC converters. The load is handled in terms of a constant power model, which generally is considered the most critical case for testing the stability of the system. The robustness of the design procedure, which is verified numerically against large and rapid load variations, allowed us to confirm the feasibility and the attractiveness of the design and the control proposal.
机译:本文以全电船为例,探讨现代船舶动力系统的设计和控制方面。在此背景下,由于自动化系统中的技术进步以及电力推进系统和其他组件(例如电能存储系统和可再生能源)的集成,电力电子转换器的广泛使用是至关重要的。在这种情况下要解决的问题与在动态操作中提高性能的要求有关,同时在节能和整体系统安全性方面追求优势。另外,大的负载变化的存在要求在系统稳定性方面提供控制的鲁棒性。本文着重于中压直流(MVDC)船用电源系统以及耦合电感DC-DC转换器的设计和控制。负载以恒定功率模型处理,通常认为这是测试系统稳定性的最关键情况。设计过程的鲁棒性已通过大量快速负载变化进行了数值验证,从而使我们能够确认设计和控制建议的可行性和吸引力。

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