AbstractA ship’s electric-power system (SEPS) provides reliable functioning of ship systems, as well as safety in navigation and the living '/> Assessment of Supply-Voltage Quality in a Ship's Electric-Power System by Means of Computer Simulation
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Assessment of Supply-Voltage Quality in a Ship's Electric-Power System by Means of Computer Simulation

机译:通过计算机仿真评估船舶电力系统的供电电压质量

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AbstractA ship’s electric-power system (SEPS) provides reliable functioning of ship systems, as well as safety in navigation and the living conditions and work of the crew. SEPSs in large-displacement vessels can have a capacity of more than 100 MW and consist of thousands of interconnected components and subsystems. On ships with a propulsion system (PS), the SEPS powers both the PS, which consumes most of the power generated by a ship power plant, and numerous general consumers of power on the ship. The PS includes frequency converters with dc links; for a ship’s power plant, these converters are a high-power nonlinear load that causes significant voltage distortions in the ship’s network. When designing a vessel, at the stage of selecting the structure and components of the SEPS, electromagnetic compatibility between the PS and general vessel users needs to be provided. According to the requirements specified in theRussian Maritime Register of Shipping, the nonsinusoidal voltage in the ship’s electrical network must not exceed 10%. Computer simulation is the only effective tool for assessing the quality of ship-network voltage at the initial stages of design. In this paper, we present the results of estimating two alternative SEPS designs by means of the MATLAB Simulink package. It is shown that high-power transformers can be removed from the PS without significant deterioration of network-voltage quality, which makes it possible to reduce the cost, weight, and dimensions of electrical equipment.
机译: 摘要 船舶的电力系统(SEPS)提供了可靠的船舶系统功能,以及航行安全和居住条件和船员的工作。大排量船舶中的SEPS可能具有超过100 MW的容量,并且由数千个相互连接的组件和子系统组成。在带有推进系统(PS)的船舶上,SEPS为PS供电,该PS消耗了船舶发电厂产生的大部分电力,并且为船舶上的众多普通用户供电。 PS包括带有直流链路的变频器;对于船舶发电厂而言,这些转换器是高功率非线性负载,会在船舶网络中引起严重的电压畸变。在设计船舶时,在选择SEPS的结构和组件的阶段,需要提供PS和一般船舶用户之间的电磁兼容性。根据俄罗斯海事船舶注册中指定的要求,船上电网中的非正弦电压不得超过10%。计算机仿真是在设计初期评估船网电压质量的唯一有效工具。在本文中,我们介绍了通过MATLAB Simulink软件包估算两种备选SEPS设计的结果。结果表明,可以从PS上卸下大功率变压器,而不会显着降低网络电压质量,从而可以降低电气设备的成本,重量和尺寸。

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