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Dynamic Response Evaluation of a 20 MW Scale Dual Wound Machine Based Power System

机译:基于20 MW刻度双缠绕机的动力系统动态响应评估

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Several power system technical architectures are being evaluated for the Navy's next generation all-electric warship. One proposed power system concept involves the use of dual-wound generators to power both the Port and Starboard side buses using different 3-phase sets from the same machine. However, due to the collocated sets of stator windings sharing a common rotor, there are inductive and electromechanical coupling mechanisms between the two sets of windings. This, in effect, couples the port and starboard electrical buses, resulting in the possibility of load changes and faults on one bus creating disturbances on the other bus. Thus, for this power system architecture to be implemented, the coupling between buses must be evaluated and managed to ensure the isolation that is required.In this work, a notional power system consisting of a 20 MW gas turbine connected to a dual-wound generator and two active rectifiers was considered. The generator and active rectifier models were implemented in MATLAB? both using average value modeling and switching (space vector modulation) simulation models. The system was analyzed with both a permanent magnet synchronous machine (PMSM) and a wound rotor synchronous machine (WRSM) acting as the generator. The frequency dynamics of the system between the load on one side and the dc voltage on the other side are studied, and possible mitigation strategies are proposed.
机译:正在为海军的下一代全电机进行评估几种电力系统技术架构。一个提出的电力系统概念涉及使用双卷绕发电机来使用来自同一台机器的不同的三相组来为端口和右舷侧总线供电。然而,由于分子绕组的分子绕组组成,两组绕组之间存在电感和机电耦合机构。实际上,这使得端口和右舷电气总线耦合,从而导致在一个总线上创建其他总线的扰动的负载变化和故障。因此,对于要实现的该电力系统架构,必须评估和管理总线之间的耦合,以确保所需的隔离。在这项工作中,由连接到双卷绕发电机的20 MW燃气轮机组成的名义电力系统。考虑了两个活性整流器。发电机和主动整流器模型是在Matlab中实现的?都使用平均值建模和切换(空间矢量调制)仿真模型。用永磁同步机(PMSM)和缠绕转子同步机(WRSM)分析系统,作为发电机。研究了一侧的负载与另一侧的DC电压之间的系统的频率动态,提出了可能的缓解策略。

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