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Electrical characteristics of cold ironing energy supply for berthed ships

机译:靠泊船舶冷熨能源的电气特性

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The reduction of emissions in harbours is of particular importance due to the proximity to human habitation. Vessels normally run onboard generators, typically using diesel fuel, to provide the service loads while berthed. New and upcoming regulations aim to decrease emissions from shipping, and coupled with increased environmental consciousness of ship owners and harbour operators, shore supply is becoming a more popular and feasible option. Cold ironing provides an alternative locally emission-free solution by having berthed ships plug in to the shore electrical network, such that the onboard electrical energy demand is supplied from land. Electrically, a number of different shore network topologies are possible, providing different infrastructural options of supplying power to multiple berths. This paper examines the electrical characteristics of one such installation and the impact on the shoreside electrical network for an existing port using actual visiting ship power profiles. The paper examines how the cold ironing system influences important electrical network characteristics such as bus voltages and power quality, as well as the potential impact on the rest of the utility distribution system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由于靠近人类居住,减少港口的排放尤为重要。船只通常在船上运行发电机,通常使用柴油,以在停泊时提供服务负荷。新的和即将出台的法规旨在减少航运排放,加上船主和港口经营者对环境的意识增强,岸上供应正成为一种更受欢迎和可行的选择。通过将停泊的船舶插入岸上电网,冷熨可以提供一种替代的局部无排放解决方案,从而使船上的电能需求从陆地供应。在电气上,可以使用多种不同的岸网拓扑结构,从而提供向多个泊位供电的不同基础设施选项。本文使用实际的来访船舶功率曲线,研究了一种此类装置的电气特性以及对现有港口对岸边电网的影响。本文研究了冷熨烫系统如何影响重要的电网特性,例如母线电压和电能质量,以及对其他公用事业配电系统的潜在影响。 (C)2015 Elsevier Ltd.保留所有权利。

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