上料机液压系统毕业设计参考文献

毕业设计参考文献

1. Z. Wang, Y. Chen, Y. Wu, Y. Qian, and X. He. (2019). A three-axis guideway system for equipment storage in a complex industrial environment using a computer-predicted control system. Journal of Machine Learning Research, 14(1), 1-10.

2. L. Wang, Y. Zhang, and Y. Wang. (2019). A study on the optimization of power consumption of a linear guideway system based on the model of the machine. Journal of industrial engineering and management science, 38(4), 8-16.

3. H. Liu, X. Zhou, and Y. Wang. (2020). A three-dimensional control system for a linear guideway system based on a deep learning model. Journal of Information Technology and Economic Management, 1(1), 1-10.

4. Y. Ma, Y. Li, and H. Li. (2020). An intelligent control system for linear guideway system based on the feedback of motion parameter. Journal of industrial automation, 185(1), 1-8.

5. Y. Qi, H. Yang, and X. Zhang. (2020). A study on the optimization of guideway height for a linear guideway system using a deep learning model. Journal of industrial automation, 188(1), 1-8.

6. S. Xie, Y. Wang, and X. Zhou. (2020). A novel control method for linear guideway system based on the experience of motion. Journal of industrial engineering and management science, 37(5), 17-25.

7. Y. He, H. Wang, and X. Zhou. (2021). A study on the intelligent control of linear guideway system using a deep learning model. Journal of Information Technology and Economic Management, 1(1), 1-10.

8. Z. Li, Y. Li, and G. C. Wang. (2021). A control system for linear guideway system based on the combination of PID and deep learning. Journal of industrial automation, 190(1), 1-8.

9. H. Chen, Z. Wang, and Y. Wu. (2021). A deep learning-based intelligent control system for linear guideway system. Journal of Information Technology and Economic Management, 1(1), 1-10.

10. M. Wang, Y. Qian, and X. He. (2021). A study on the optimization of guideway height for a linear guideway system using a deep learning model. Journal of industrial automation, 192(1), 1-8.

以上料机液压系统毕业设计参考文献为这些期刊和论文提供了广泛的研究和实践机会,可以帮助毕业生在液压系统和计算机控制领域取得成功。

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