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Voltage Stability in Large Marine-Integrated Electrical and Electronic Power Systems

机译:大型船用集成电力和电子电源系统中的电压稳定性

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Offshore oil and gas vessels operating in deep and ultra-deep waters demand larger and more sophisticated power and control systems. This tendency brings new challenges in integrated power system’s design, especially for platforms/vessels requiring both dynamic positioning and high levels of redundancy. Voltage stability is essential in such systems, being in islanded operation (with related limited power generation) and with continuously changing load demands. In particular, voltage stability issues can arise due to the increasing amount of power electronic converters installed onboard, used to feed variable frequency drives and other electronic loads. Indeed, most of these have a controlled front-end, whose control can affect network voltage with a destabilizing effect named constant power loads (CPLs) instability. Such a behavior deserves special attention in islanded power systems, mostly if the quota of power electronics loads on the total installed power reaches very high values (up to the 85% for new large all electric ships). This paper initially focuses on the CPL voltage instability. Two different models to assess voltage stability in marine systems with high penetration of electronic power conversion are given, focusing on a design-stage assessment. Using the conditions obtained by such models, a practical stability analysis methodology is proposed, to help assessing voltage stability already at design stage, to avoid equipment retrofits during vessel building or commissioning. Finally, some practical case studies are discussed, and solutions to overcome the CPL instability are suggested.
机译:在深水和超深水域中作业的海上石油和天然气船需要更大,更复杂的动力和控制系统。这种趋势给集成电源系统的设计带来了新的挑战,特别是对于要求动态定位和高冗余度的平台/船舶而言。电压稳定性在此类系统中至关重要,处于孤岛运行状态(相关发电量有限),并且负载需求不断变化。尤其是,由于安装在板上的用于为变频驱动器和其他电子负载供电的功率电子转换器数量增加,可能会引起电压稳定性问题。实际上,其中大多数具有受控的前端,前端的控制会影响网络电压,并具有称为恒定功率负载(CPL)不稳定的不稳定作用。在孤岛电力系统中,这种行为值得特别注意,尤其是在电力电子负载在总装机功率上的配额达到很高的值时(对于新型大型全电船,这一比例最高为85%)。本文首先关注CPL电压不稳定性。给出了两种不同的评估电子功率转换渗透率高的船舶系统中电压稳定性的模型,重点是设计阶段评估。利用通过这些模型获得的条件,提出了一种实用的稳定性分析方法,以帮助评估在设计阶段就已经存在的电压稳定性,从而避免了在船舶建造或调试期间进行设备改造。最后,讨论了一些实际案例研究,并提出了解决CPL不稳定性的解决方案。

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