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Time and frequency domain methods to evaluate grounding strategies for medium voltage DC shipboard power systems

机译:评估中压直流舰载电力系统接地策略的时域和频域方法

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Several key performance parameters of shipboard power systems are affected by the grounding scheme applied. The grounding scheme impacts the nature of voltage transients during switching events and faults, identifiability and locatability of ground faults, fault current levels, and power quality. Power system simulations play an important role in choosing an appropriate grounding scheme and optimizing its components. The tools typically used for power system analysis need to be carefully tested to determine if they are appropriate for modeling effects of different grounding schemes and in particular the high frequency transients. This paper sheds light on modeling and validation techniques specific to grounding models. Furthermore, insight is provided to present research into new types of power system modeling techniques based on scattering parameters for improved accuracy at higher frequencies of interest. A testbed designed to study the impact of different types of grounding schemes is also introduced and first characterization measurements in the frequency domain provided. The paper concludes with an outlook to future work, which will focus on rigorous validation of the models developed.
机译:船上电力系统的几个关键性能参数受所采用的接地方案的影响。接地方案会影响开关事件和故障期间电压瞬变的性质,接地故障的可识别性和可定位性,故障电流水平以及电能质量。电力系统仿真在选择合适的接地方案并优化其组件方面起着重要作用。需要仔细测试通常用于电力系统分析的工具,以确定它们是否适合于建模不同接地方案(尤其是高频瞬变)的影响。本文阐明了针对接地模型的建模和验证技术。此外,提供了洞察力来提出对基于散射参数的新型电力系统建模技术的研究,以提高感兴趣的更高频率下的精度。还介绍了旨在研究不同类型接地方案的影响的试验台,并提供了频域中的首次表征测量。本文以对未来工作的展望作为结尾,该展望将集中于对开发模型的严格验证。

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