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Analysis of system wide distortion in an integrated power system utilizing a high voltage DC bus and silicon carbide power devices

机译:使用高压直流总线和碳化硅功率器件的集成电源系统中的系统范围失真分析

摘要

This research investigates the distortion on the electrical distribution system for a high voltage DC Integrated Power System (IPS). The analysis was concentrated on the power supplied to a propulsion motor driven by an inverter with simulated silicon carbide switches. Theoretically, silicon carbide switches have the advantage of being able to withstand a very large blocking voltage and carry very large forward currents. Silicon carbide switches are also very efficient due to their quick rise and fall times. Since silicon carbide switches can withstand high voltage differentials and switch faster than silicon switches, the switching effects on the electrical distribution system were investigated. The current state of silicon carbide power electronics was also investigated. This research quantifies the current and voltage distortion over various operating conditions. A system model was developed using Matlab, Simulink, and SimPowerSystems. The model consisted of a synchronous generator supplying a rectifier and inverter set driving an induction motor. This induction motor simulates the propulsion motor for a Navy ship. This model had a DC link voltage of 10 kV in order to simulate future Navy IPS systems. The current and voltage distortion were compared to MIL STD 1399 and IEEE STD 519 and 45.
机译:这项研究调查了高压直流集成电源系统(IPS)配电系统上的失真。分析集中在由模拟碳化硅开关的逆变器驱动的推进电机的电源上。从理论上讲,碳化硅开关的优点是能够承受很大的阻断电压并承载很大的正向电流。碳化硅开关由于具有快速的上升和下降时间,因此也非常有效。由于碳化硅开关比硅开关可以承受高电压差并且开关速度更快,因此研究了开关对配电系统的影响。还研究了碳化硅功率电子设备的当前状态。这项研究量化了各种工作条件下的电流和电压失真。使用Matlab,Simulink和SimPowerSystems开发了系统模型。该模型由为整流器供电的同步发电机和驱动感应电动机的逆变器组组成。该感应电动机模拟海军舰船的推进电动机。该模型的直流链路电压为10 kV,以模拟未来的海军IPS系统。将电流和电压失真与MIL STD 1399和IEEE STD 519和45进行了比较。

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  • 作者

    Fallier William F.;

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  • 年度 2007
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