Experiment results show that the algorithm developed in this thesis is effective and feasible.
模拟实验的结果表明,本文所设计的算法是有效且切实可行的。
The simulation analyzed the error distribution in the workspace with an algorithm developed to compensate for these errors.
将铰链制造误差映射为驱动轴长度误差,并据此开发出误差实时补偿算法。
Experimental results demonstrate that the algorithm developed is fairly efficient for solving the rectangle and circle packing problem.
测试结果表明,算法对求解矩形和圆形装填问题是行之有效的。
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