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SATELLITE GUIDANCE AND CONTROL DURING OPERATIVE OPTOELECTRONIC IMAGERY FOR DISASTER MANAGEMENT

机译:手术光电成像过程中的卫星制导和控制,以进行灾害管理

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We consider problems on surveying the Earth surface during operative optoelectronic imagery for disaster management with respect to attitude guidance and control of the agile spacecraft. The land surveying is carried out by a set of extended orthodromic routes of scanning optoelectronic observation for a given part of the Earth surface. We present developed methods for synthesis of nonlinear guidance and attitude control laws, dynamic research of the spacecraft attitude control system with the satellite astroinertial attitude determination and digital control by the excessive gyro moment cluster. We present results on the efficiency of the developed vector spline guidance laws, algorithms for discrete filtering and the digital gyromoment control of a satellite orientation during the areal landsurveying of Istanbul neighborhoods for the spacecraft on sun-synchronous orbit with altitude of 720?km when the allowed deviation of the target line from Nadir is within the cone with semi-angle of 40?deg.
机译:我们考虑在操作性光电成像过程中测量地面以进行灾害管理方面的问题,这些问题涉及敏捷航天器的姿态指导和控制。土地测量是通过一系列扩展的正视路线,对给定的地球表面部分进行光电扫描扫描。我们提出了合成非线性制导和姿态控制定律的方法,利用卫星天文学确定姿态的航天器姿态控制系统的动力学研究,以及由过度陀螺力矩簇进行数字控制的方法。我们将介绍已开发的矢量样条导引律,离散滤波算法和卫星定向的数字陀螺仪控制的效率,这些航天器将在伊斯坦布尔邻域进行面积为720 km的太阳同步轨道上进行航天器的伊斯坦布尔邻域土地勘测时,目标线与天底之间的最大允许偏差在半角为40°的圆锥内。

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