解耦(概率)
计算机科学
带宽(计算)
控制理论(社会学)
电子工程
频率响应
控制系统
联轴节(管道)
简单(哲学)
人工神经网络
自动频率控制
跟踪(教育)
区间(图论)
控制工程
工程类
作者
Fanhui Meng,Zijian Jing,Junli Guo,Jin Wang,Xin Li,Hongming Zhang,Bo Qi
摘要
To enhance communication efficiency and the tracking capability in optical communication processes, this paper proposes a design method for a high-bandwidth, large-aperture fast steering mirror(FSM). This method retains the advantages of traditional design approaches while significantly reducing the limitations imposed by frequency coupling between the first and second-order resonant frequencies in the working direction. By employing a decoupling structure designed using neural network technology, this method greatly improves iteration efficiency. Test results show that the application of the decoupled structure increases the interval between the first and second-order frequencies of the FSM in the working direction of each axis from around 540Hz to around 950Hz. The working stroke is increased by nearly 1.3 times compared to that without the decoupled structure, and a working bandwidth of 213Hz is achieved through a simple control algorithm test.
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