舰艇综合电力系统实现了全舰能源的综合利用,是舰艇平台由机械化向电气化和信息化发展的必由之路,代表现代舰艇动力平台的发展方向。本文通过对国外舰艇综合电力系统应用现状、技术状态、军事意义及未来发展趋势进行分析梳理,供相关人员参考。
The integrated utilization of the ship's power system, is the way for the development of ship's platform from the mechanization to the electrification and informationization. It represents the development direction of the modern ship's power platform. It is proposed that the ship's integrated application of the power system State, military significance and future development trend analysis, for the relevant units.
2017,39(9): 1-5 收稿日期:2017-06-12
DOI:10.3404/j.issn.1672-7649.2017.09.001
分类号:U664
作者简介:陈锋(1796–),男,工程师,主要从事船舶动力装置设计研究
参考文献:
[1] 芮江, 由大伟. 舰船综合电力推进技术的现状和发展趋势[J]. 舰船科学技术, 2010, (04):3-6. RUI Jiang, YOU Da-wei. Survey and preview on warship integrated electric propulsion[J]. Ship Science and Technology, 2010, (04):3-6.
[2] 纪锋, 付立军, 叶志浩, 等. 舰船综合电力系统中压直流发电机组并联运行试验研究[J]. 海军工程大学学报, 2017, (02):11-16. JI Feng, FU Li-jun, YE Zhi-hao, et al. Experimental research of MVDC parallel operation generator sets for vessel integrated power systems[J]. Journal of Naval University of Engineering, 2017, (02):11-16.
[3] 张维, 马镜. 舰船综合电力系统的关键技术及发展策略[J]. 科技展望, 2017, (01):139. ZHANG Wei, MA Jing. Key technology and development strategy of ship integrated power system[J]. Technology and Application, 2017, (01):139.
[4] 张义农, 汤建华. 美英未来舰船综合电力系统电制选择分析[J]. 舰船科学技术, 2012, (04):136-139. ZHANG Yi-nong, TANG Jian-hua. The busbar architecture choice of integrated power system for US and UK future surface ship[J]. Ship Science and Technology, 2012, (04):136-139.
[5] DOERRY N. Next generation integrated power system NGIPS technology development roadmap[Z]. Naval Sea Systems Command, 2007.
[6] Naval power systems technology devroadmap PMS 320[Z]. Naval Sea Systems Command, 2013.
[7] Naval power and energy systems technology development roadmap[Z]. Naval Sea Systems Command, 2015.