高能量密度电容器在预计美国海军ETC炮操作条件下的特性

G. Grater, F. Macdougall, M. Hudis, X.H. Yang
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引用次数: 10

摘要

自1990年以来,美国海军一直在发展电热化学(ETC)舰炮系统技术,用于舰艇自卫和水面火力支援任务。重点介绍了基于电容的脉冲成形网络(PFN)作为能量存储和脉冲成形的主要手段。定义和理解高能量密度电容器的电气和机械性能特征对于PFN设计师和整个武器系统工程都至关重要。Aerovox型LM功率电容器(2.4 MJ/m/sup 3/)在海军预计的操作场景下进行了评估,包括再现率和突发模式。Aerovox型LM电容器于1991年首次用于美国陆军8.5 MJ脉冲功率模块,已知在电容和电压方面是非线性的。此外,已知这种电容器的充电/放电效率低于其他低能量密度电容器。在正常工作条件下,建立了电容器的寿命特性。本文讨论了Aerovox型LM电容器在正常模式和故障模式下的性能。所讨论的参数包括温度变化、电压反转和峰值电流性能。对电力电容器的热稳定性和故障模式性能进行了定义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of high energy density capacitors under projected US Navy ETC gun operating conditions
The US Navy has been developing electrothermal-chemical (ETC) gun system technologies since 1990 for use in ship self-defense and surface fire support missions. Emphasis has been placed on the capacitor-based pulse forming network (PFN) as the primary means of energy storage and pulse shaping. Defining and understanding the electrical and mechanical performance characteristics of high energy density capacitors is critical for both the PFN designer and overall weapons system engineering. Aerovox Type LM power capacitors (2.4 MJ/m/sup 3/) were evaluated under the projected Navy operating scenarios, including rep-rate and burst modes. The Aerovox Type LM capacitors, first used in the US Army 8.5 MJ Pulsed Power Module in 1991, are known to be nonlinear with respect to capacitance and voltage. Additionally, the charge/discharge efficiency is known to be lower for this capacitor than for other, lower energy density capacitors. The life characteristics of the capacitor have been established under normal operating conditions. This paper discusses the performance of the Aerovox Type LM capacitors in both normal and fault mode conditions. The parameters discussed include temperature variations, voltage reversal and peak current performance. Thermal stability and fault mode performance for the power capacitor is also defined.
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