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Ensuring Large-Displacement Stability in Aircraft and Shipboard DC Power Systems

机译:确保飞机和舰载直流电源系统的大位移稳定性

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Due to the instabilities that may occur in dc power systems with regulated power-electronic loads such as those used in aircraft, ships, as well as terrestrial vehicles, many analysis techniques and design methodologies have been developed to ensure stable operation for expected operating conditions. However, these techniques do not guarantee large-displacement stability following major disturbances such as faults, regenerative operation, large pulsed loads, and/or the loss of generating capacity. Recently, a design paradigm was set forth that ensures large-displacement stability for any single positive or negative step change in commanded load power PL provided the step change lies within the steady-state rating of the source. In this paper, a formal mathematical definition of large-displacement stability is set forth and the previous results are extended to show that it is possible to design a dc system that is large-displacement stable for any piecewise continuous $P_{L}(t)$ that is bounded by the steady-state rating of the dc source. Moreover, and a new large-displacement stability margin is set forth and illustrated for two example systems.
机译:由于具有稳定的电力电子负载的直流电源系统(例如飞机,轮船和陆地车辆中使用的负载)可能会发生不稳定,因此已经开发出许多分析技术和设计方法来确保在预期的运行条件下稳定运行。然而,这些技术不能保证在诸如故障,再生操作,大的脉冲负载和/或发电能力的损失等主要干扰之后的大位移稳定性。最近,提出了一种设计范例,可确保命令负载功率P的任何单个正或负阶跃变化都具有大位移稳定性。 L 只要步长变化在源的稳态额定值之内。在本文中,提出了大位移稳定性的形式化数学定义,并扩展了先前的结果,以表明可以为任何分段连续$ P_ {L}(t )$受直流电源的稳态额定值限制。此外,针对两个示例系统提出并示出了新的大位移稳定性裕度。

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