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CAESAR PROJECT: NANO-SATELLITE CONSTELLATION FOR SEARCH AND RESCUE SERVICES FOR MARITIME VESSELS IN DISTRESS

机译:凯撒项目:用于海上船舶紧急求救的纳米卫星星座

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This paper presents the design of a system for geo-location of persons in distress in high-seaareas by means of a constellation of 48 nano-satellites (Cubesats). The CAESARconstellation is designed to orbit in Low Earth Orbits (LEO) in a Walker Delta Pattern constellation at an altitude of 710 km and an inclination of 45?. The system geo-locates a userby means of a TDOA algorithm refined by an Extended Kalman Filter used to estimate theuser's true location from the TDOA initial location, thus allowing the use of only 2 satellitesin a formation rather than 3 as required by independent TDOA algorithms. The constellation'scharacteristics, geo-location algorithm and formation control, allows the location of a user inless than 15 minutes from the moment of signal transmission and with a location errorsmaller than 1 km. A detailed design of the mission-related attributes of the constellation aswell as the satellites' hardware design is presented in this paper. Also, a programmatic design,including WBS, cost estimation, reliability and risk analyses is presented hereinafter.
机译:本文提出了在公海中遇险人员的地理定位系统的设计 区域由48个纳米卫星(Cubesats)组成。凯撒 该星座被设计为以710公里,倾斜度为45?的沃克三角洲模式星座在近地轨道(LEO)上运行。系统对用户进行地理位置定位 通过由扩展卡尔曼滤波器改进的TDOA算法来估计 用户从TDOA初始位置开始的真实位置,因此仅允许使用2颗卫星 的形式,而不是独立TDOA算法要求的3种形式。星座的 特性,地理位置算法和编队控制,可以将用户定位在 从信号传输的那一刻起不到15分钟,并且出现位置错误 小于1公里。星座的与任务相关的属性的详细设计如下: 本文还介绍了卫星的硬件设计。还有程式设计 包括WBS,成本估算,可靠性和风险分析。

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