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Next-Generation Shipboard DC Power System: Introduction Smart Grid and dc Microgrid Technologies into Maritime Electrical Networks

机译:下一代舰载直流电源系统:将智能电网和直流微电网技术引入海事电网

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摘要

In recent years, evidence has suggested that the global energy system is on the verge of a drastic revolution. The evolutionary development in power electronic technologies, the emergence of high-performance energy storage devices, and the ever-increasing penetration of renewable energy sources (RESs) are commonly recognized as the major driving forces of the revolution. The explosion in consumer electronics is also powering this change. In this context, dc power distribution technologies have made a comeback and keep gaining a commendable increase in research interest and industrial applications. In addition, the concept of flexible and smart distribution has also been proposed, which tends to exploit distributed generation and pack together the distributed RESs and local electrical loads as an independent and self-sustainable entity, namely a microgrid. At present, research in the area of dc microgrids has investigated and developed a series of advanced methods in control, management, and objective-oriented optimization that would establish the technical interface enabling future applications in multiple industrial areas, such as smart buildings, electric vehicles, aerospace/aircraft power systems, and maritime power systems.
机译:近年来,证据表明全球能源系统正处于一场激烈的革命的边缘。电力电子技术的演进发展,高性能能量存储设备的出现以及可再生能源(RES)的不断普及,被公认为是革命的主要推动力。消费电子产品的爆炸式增长也推动了这一变化。在这种情况下,直流配电技术已经卷土重来,并在研究兴趣和工业应用中获得了可喜的增长。此外,还提出了灵活智能分配的概念,该概念倾向于利用分布式发电,并将分布式RES和本地电力负荷打包在一起,作为一个独立且可自我维持的实体,即微电网。目前,直流微电网领域的研究已经研究并开发了一系列先进的控制,管理和面向目标的优化方法,这些方法将建立技术接口,使未来在智能建筑,电动汽车等多个工业领域得到应用。 ,航空航天/飞机动力系统和海上动力系统。

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