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Determination of the Inertia Tensor of the International Space Station on the Basis of Telemetry Data

机译:基于遥测数据的国际空间站惯性张量的确定

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We describe the method and results of determination of the inertia tensor of the International Space Station using telemetry data related to its attitude motion and the total angular momentum of gyrodines. A linear system of differential equations describing the variation of the total angular momentum of gyrodines on some time interval is derived on the basis of the data related to the station orientation in the same time interval. This linear system represents the theorem related to the variation of the total angular momentum of the station and gyrodines and takes into account the action of gravitational and aerodynamic moments upon the station. The solution to the system depends linearly on the components of the inertia tensor of the station and on the parameters specifying the aerodynamic moment. The estimates of these quantities are carried out by the least squares method on the condition of the best approximation by the solutions to the considered linear system of the telemetry values of the total angular momentum of the gyrodines.
机译:我们描述了使用遥测数据确定国际空间站惯性张量的方法和结果,这些数据与它的姿态运动和陀螺仪的总角动量有关。基于与同一时间间隔中的测站方向有关的数据,得出了一个线性的微分方程系统,该系统描述了一定时间间隔内的陀螺仪总角动量的变化。该线性系统表示与测站和陀螺仪的总角动量变化有关的定理,并考虑了重力和空气动力力矩对测站的作用。系统的解决方案线性地取决于站的惯性张量的分量以及指定空气动力学力矩的参数。这些量的估计是通过最小二乘法在最佳近似条件下进行的,该条件是对所考虑的陀螺仪总角动量遥测值线性系统的解的最佳近似。

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