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针对美国Arecibo 大射电望远镜(口径305 m )设计方案的不足与对新一代大射电望远镜的要求,提出了全新的机电光一体化设计方案。对悬索馈源系统的非线性随机响应与二次稳定平台的运动精度做了理论分析与计算机仿真研究,结果表明该方案能够满足跟踪精度的要求。
Aiming at the shortcomings of American Arecibo radio telescope (diameter of 305 m) and the requirements of a new generation of large radio telescope, a new design scheme of electromechanical integration was put forward. The theoretical analysis and computer simulation of the nonlinear response of the suspension feed system and the motion accuracy of the quadratic stabilization platform are made. The results show that this scheme can meet the requirements of tracking accuracy.