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Artificial Intelligence Optimization Design Analysis of Robot Control System

机译:机器人控制系统的人工智能优化设计分析

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In order to improve the accuracy of robot control system, a scheme based on artificial intelligence is proposed. On the basis of the software environment of reinforcement learning simulation platform, a kind of rounding scheme in dynamic environment is designed and simulated. The results show that when the inclination sensor is placed on an inclined plane of 300 and collected for ten times, the maximum error of measurement that can be seen from the experimental data is 0.40. The relative included angles were 30°, 45°, 60°, and 90°, respectively, by compass sensor. The measurement was carried out, and the average value of each angle was measured 5 times. It can be seen from the experimental data that the measurement error meets the requirements of the system. Therefore, it is feasible to use artificial intelligence algorithm to optimize the robot control system.
机译:为了提高机器人控制系统的精度,提出了一种基于人工智能的方案。基于强化学习仿真平台的软件环境,设计并仿真了一种动态环境下的舍入方案。结果表明,当倾角传感器放置在 300 的斜面上并采集 10 次时,从实验数据中可以看到的最大测量误差为 0.40。罗盘传感器的相对夹角分别为 30°、45°、60° 和 90°。进行测量,测量每个角度的平均值 5 次。从实验数据中可以看出,测量误差符合系统要求。因此,使用人工智能算法来优化机器人控制系统是可行的。

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