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11.
海洋目标探测卫星的通用效能模型初探 总被引:1,自引:0,他引:1
为有效构建海洋目标探测卫星体系,建立一套能对各类卫星的海洋目标探测效果进行分析与评估的通用效能模型非常重要。初步建立了以目标探测概率为度量的海洋目标探测卫星通用效能模型,可用于光学成像、雷达成像和电子侦察卫星等。模型考虑了影响目标探测概率的三类主要因素即观测区域与目标特性、卫星平台参数和卫星有效载荷特性,分析了卫星技术性能指标和作战性能指标的相互关系,可作为海洋目标探测卫星体系需求分析、顶层设计以及效能评估的依据。并以大型舰船为探测目标用仿真结果说明了模型的适用性。 相似文献
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针对传统侦察星座目标单一、弹性低的问题,提出了多等级区域侦察弹性星座的设计方法。该方法将星座设计过程按区域等级信息分为多个子星座逐步设计,直到整体星座对所有的区域性能满足设计要求。以区域被划分为3个等级为例,首先对星座设计需求、设计指标及设计步骤进行了分析。其次推导了地面最低分辨率和轨道高度的关系并确定了不同子星座的轨道高度。最后考虑轨道倾角、一箭多星发射、光照和升交点漂移同步约束,构建基础星座、子星座1和子星座2的优化模型。最终设计星座为3层混合星座,共8个轨道面和70颗卫星,星座对各等级区域的最大重访时间分别为10937s,12241s和17437s,弹性指数为2213%,2420%和6361%。结果表明该方法设计的星座可实现对区域覆盖和弹性分级的设计要求,证明了方法的有效性。对比Walker星座设计方法,在同等设计要求下,Walker星座所需卫星数为156颗,多等级区域侦察弹性星座所需卫星数远低于Walker星座,结果进一步证明了该星座设计方法的优越性。 相似文献
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区域多重覆盖Walker星座 总被引:4,自引:0,他引:4
本文提出一种新的卫星星座优化方法,得出最优的区域覆盖星座,并给出了应用实例。 相似文献
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Wei Shi Menghua Wang 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2014
The event of 2009–2011 El Niño Southern Oscillation (ENSO) provides an opportunity to gain insight into the biological variability of the equatorial Pacific Ocean for an entire ENSO cycle with satellite and in situ observations. Even though El Niño and La Niña in general led to respectively weakened and enhanced chlorophyll-a concentration and net primary production (NPP) along the equatorial Pacific Ocean during the 2009–2011 ENSO cycle, biological responses were highly disparate along the equator and attributed to different driving mechanisms. In the eastern equatorial Pacific east of 150°E, the El Niño-La Niña biological change was in general small except for the transition period even though sea surface temperature (SST) showed over ∼5 °C drop from El Niño to La Niña. In the central-eastern (170°W–140°W) equatorial Pacific, moderate change of biological activity is attributed to the changes of thermocline driven by the eastward propagating equatorial Kelvin waves and changes of zonal currents and undercurrents. Highest biological response in this ENSO cycle was located in the central (170°E–170°W) and central-western (150°E–170°E) equatorial Pacific with quadruple chlorophyll-a concentration and over ∼400 mg C m−2 d−1 increase of NPP from El Niño in 2009 to La Niña in 2010. However, spatial pattern of ENSO biological variability as represented with NPP is not exactly the same as chlorophyll-a variability. Wind-driving mixing of nutrients and eastward advection of the oligotrophic warm pool waters are attributed to this significant biological variability in this region. 相似文献
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在中轨卫星移动通信系统中 ,确定小区驻留时间分布对于合理地规划切换策略具有十分重要的意义。文中指出了地球固定覆盖与卫星固定覆盖两种方式下小区驻留时间分布不同的原因。提出一种仿真计算卫星固定覆盖方式下小区驻留时间分布的方法 ,得出了数值结果 ,并与地球固定覆盖方式下的小区驻留时间分布作了比较 相似文献
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C. Lázaro M.F. Juliano M.J. Fernandes 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2013
Satellite altimetry has been widely used to study the variability of the ocean currents such as the Azores Current (AzC) in the North Atlantic. Most analyses are performed over the region that encloses the current, thus being somehow affected by other oceanographic signals, e.g., eddies. In this study, a new approach for extracting the axis of a zonal current solely based on satellite altimetry is presented. This is a semi-automatic procedure that searches for the maximum values of the gradient of absolute dynamic topography (ADT), using the geostrophic velocity as auxiliary information. The advantage of this approach is to allow the analyses to be performed over a buffer centered on the current axis instead of using a wider region. It is here applied to the AzC for the period June 1995–October 2006. 相似文献
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Gang Li Shuren Guo Jing Lv Kanglian Zhao Zehua He 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2021,67(5):1701-1708
Short Message Communication (SMC) is a featured service of BeiDou Navigation Satellite System (BDS). After its successful deployment in 2003, Regional Short Message Communication (RSMC) service has been continuously serving China and its neighboring countries and regions, especially in life safety scenarios. In this paper, the architecture of the Global Short Message Communication (GSMC) system is proposed based on the medium earth orbit (MEO) constellation and the crosslinks of the global BeiDou navigation system (BDS-3). Three subtypes of GSMC service, i.e. positioning report, emergency search and rescue (SAR) and regular SMC are designed in accordance with the technical characteristic of integration of navigation and communication in BDS-3, which supports future wide applications of GSMC. The performance of the designed GSMC system is analyzed by numerical calculations. As BDS-3 was officially announced completion on July 31, 2020, GSMC has been providing initial service. First test results of the in orbit GSMC payloads are also presented in the paper to verify the designed capabilities. Preliminary results also show that the requirements of Global Maritime Distress and Safety System (GMDSS) can also be fulfilled. 相似文献