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Real time data acquisitions of missile position using spacecraft passive infrared sensor and GPS integrated angular rate positioning system

机译:利用航天器无源红外传感器和GPS集成角速率定位系统实时获取导弹位置的数据

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It is commonly regarded by the spacecraft (SC) passive infrared (IR) sensor acquisition community that the SC passive IR sensor (SPASS) can not measure a range to a missile. Because of that IR ray from the missile to the SPASS lacks an IR propagation time component. Therefore, the objective of this paper is to present the innovative idea to use the SC velocity (Earth center angular rate arch, BL), to form a triangle, and to derive the range equation applying the trigonometric triangle sign equation to the formed triangle, SPASS and GPS integrated angular rate positioning system (GARS) transform the measured range into the missile 3-dimensional (3-D) position and identifier data. Then, they provide those data to the SPASS operation center in real time.
机译:航天器(SC)被动红外(IR)传感器获取社区通常认为,SC被动IR传感器(SPASS)无法测量导弹的射程。由于从导弹到SPASS的IR射线缺少IR传播时间分量。因此,本文的目的是提出一种创新的思想,即使用SC速度(地心角速度弓,BL)来形成三角形,并使用三角三角符号方程对形成的三角形推导范围方程, SPASS和GPS集成角速率定位系统(GARS)将测量范围转换为导弹的3维(3-D)位置和标识符数据。然后,他们将这些数据实时提供给SPASS运营中心。

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