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对基于光流法的舰船运动要素测定原理进行了研究,主要包括光流法测定舰船运动要素的思想、光流场解算、三维运动参数解算和舰船运动要素解算。该方法的提出,提高了运动要素测定的自主性,而且满足新型全封闭舰船的测定要求。 相似文献
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结合工程应用中的实际问题,模拟实船干扰因素情况,采用理论和仿真分析相结合的方法,研究了船体变形、舰船运动、基准信息跳变等对舰载武器速度匹配传递对准性能的影响。结果表明:1)速度匹配传递对准不易受船体变形影响;2)舰船航向机动有助于提高速度匹配传递对准性能,舰船在匀速直航状态下,方位姿态角对准精度2′左右,等效北向陀螺漂移的估计精度能达到80%,无法估计等效东向陀螺漂移和加速度计零偏;舰船在转弯状态下武器惯导各误差量估计精度和估计速度都有所提高,能够估计等效东向陀螺漂移和加速度计零偏,估计精度达90%以上;3)基准信息跳变会干扰速度匹配传递对准性能,引起姿态角估计误差。 相似文献
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结合工程应用中的实际问题,模拟实船干扰因素情况,采用理论和仿真分析相结合的方法,研究了船体变形、舰船运动、基准信息跳变等对舰载武器速度匹配传递对准性能的影响。结果表明:1)速度匹配传递对准不易受船体变形影响;2)舰船航向机动有助于提高速度匹配传递对准性能,舰船在匀速直航状态下,方位姿态角对准精度2′左右,等效北向陀螺漂移的估计精度能达到80%,无法估计等效东向陀螺漂移和加速度计零偏;舰船在转弯状态下武器惯导各误差量估计精度和估计速度都有所提高,能够估计等效东向陀螺漂移和加速度计零偏,估计精度达90%以上;3)基准信息跳变会干扰速度匹配传递对准性能,引起姿态角估计误差。 相似文献
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《船舶与海洋工程学报》2014,(1):126-126
正San Francisco,California,June 8-13,2014.OMAE 2014 is the ideal forum for researchers,engineers,managers,technicians and students from the scientific and industrial communities from around the world to:·meet and present advances in technology and its scientific support;·to exchange ideas and experiences whilst promoting technological progress and its application in industry·to promote international cooperation in ocean,offshore and arctic engineering.In line with the tradition of excellence of previous OMAE conferences,more than 900 technical papers are planned for presentation.Outreach for Engineers Specialty Forum This Specialty Forum is designed for students and professionals who may not be familiar with the Ocean and Offshore industry,as well as those who have just recently specialized in this field. 相似文献
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《船舶与海洋工程学报》2014,(2)
正In the paper"Influence of Fouling Assemblage on the Corrosion Behaviour of Mild Steel in the Coastal Waters of The Gulf of Mannar,India"in Vol.12,No.4,Page:509,References were lost,and the two authors’biographies were identical.The correct text is shown below.We apologize to the authors and our readers for any inconvenience caused by the errors. 相似文献
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《船舶与海洋工程学报》2014,(4)
正St.John's,Newfoundland,Canada,May 31-June 5,2015 OMAE2015 is the ideal forum for researchers,engineers,managers,technicians and students from the scientific and industrial communities from around the world to: meet and present advances in technology and its scientific support; 相似文献
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联合作战计划和执行系统 总被引:2,自引:1,他引:1
全球指挥控制系统(GCCS)实施当前美国海军网络中心战信息基础设施的联合计划网络。联合作战计划和执行系统(JOPES)支持GCCS实现联合计划。JOPES有两类计划:时间不限的精密预案计划生成作战计划、方案计划或职能计划;时间敏感的危机行动计划生成作战命令或战役方案。前者在和平时期创建的作战计划是后者的计划基础,加速应付危机的能力。 相似文献
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《船舶与海洋工程学报》2014,(1)
正19–24 October 2014 SingaporeCONFERENCE THEMES The overall aim of the ICHD Conference is to provide a forum for participants from around the world to review,discuss and present the latest developments in the broad discipline of hydrodynamics and fluid mechanics.The first International Conference on Hydrodynamics(ICHD)was initiated in 1994 in Wuxi,China.Since then,9 more ICHD conferences were held subsequently in Hong Kong,Seoul,Yokohama,Tainan,Perth,Ischia,Nantes,Shanghai and St Petersburg.Evidently the ICHD conference has become an important event among academics,researchers,engineers and operators,working in the fields closely related to the science and technology of hydrodynamics.The 11th ICHD will be held in Singapore in 2014. 相似文献
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《船舶与海洋工程学报》2014,(2)
正November 4-6,2014Moody Gardens HotelConvention Center/Galveston,TX The Deepwater Operations Conference and Exhibition is celebrating its 12th anniversary this year.This growing event will continue the tradition of excellence in addressing operational challenges involved in developing deepwater resources.We will return to the Moody Gardens Hotel and Convention Center on November 5-7,2014 in Galveston,Texas. 相似文献
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In terms of equal sailing distances, where is the inflexion when ships depart from ports in the Asian Continent to New York via Suez and/or Panama?
The answer is China South Port Group (Hong Kong, Shenzhen and Guangzhou). 相似文献
The answer is China South Port Group (Hong Kong, Shenzhen and Guangzhou). 相似文献
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桥梁防撞设施物理模型试验 总被引:1,自引:0,他引:1
物理模型试验是预报防撞设施所受撞击力及优化设计方案的主要方法之一。结合杭州湾大桥柔性防撞设施及东海大桥独立式防撞体设计方案,阐述了船—防撞体撞击试验的基本原理、方法、试验方案及相关试验结果。提出了柔性防撞系统的优化方案。试验结果表明,该方案经济有效,可供预报类似桥梁防撞设施撞击力时参考。 相似文献