基于反向传播神经网络的智能导弹加速度计和陀螺仪最优控制输出反馈方法

Kamil Faqih, S. Sujito, S. Sendari, Faiz Syaikhoni Aziz
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引用次数: 0

摘要

作为一个面积大的海洋国家,除了需要用军事自卫外,还需要用可以自动控制的航空航天技术来保护自己。本研究旨在开发一种能够高精度自动控制制导导弹的防空系统。正确的方法可以在控制导弹到达目标物体时提供高精度。利用最优控制输出反馈的反向传播神经网络方法,可以处理雷达的信息数据,以高精度控制导弹的运动。该控制器使用最优控制输出反馈,配备锁定系统,利用可以检测导弹斜率的加速度计和可以检测导弹目标方向之间斜率的陀螺仪来跟踪目标,控制导弹的位置和方向。导弹通过锁定系统可以很容易地识别和跟踪目标的运动速度。采样数据来自位于防御区的雷达和导弹产生的信号。每个零件的数据处理速度都是使用快速算法计算的,该算法可靠,具有一定的准确性和快速处理水平。数据处理会影响导弹运动的准确性,影响目标位置和运动以及目标速度的任何变化。在第一次训练系统中,提高的机动精度可以检测到1000个文件,负载为273,而在最后一次训练中,该系统可以检测到没有负载周期的1000个文件。因此,导弹在机动时可以被引导无障碍地击中目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smart guided missile using accelerometer and gyroscope based on backpropagation neural network method for optimal control output feedback
As a maritime country with a large area, besides the need to defend itself with the military, it also needs to protect itself with aerospace technology that can be controlled automatically. This research aims to develop an air defense system that can control guided missiles automatically with high accuracy. The right method can provide a high level of accuracy in controlling missiles to the targeted object. With the backpropagation neural network method for optimal control output feedback, it can process information data from the radar to control missile’s movement with a high degree of accuracy. The controller uses optimal control output feedback, which is equipped with a lock system and utilizes an accelerometer that can detect the slope of the missile and a gyroscope that can detect the slope between the target direction of the missile to follow the target, control the position, and direction of the missile. The target speed of movement can be easily identified and followed by the missile through the lock system. Sampling data comes from signals generated by radars located in defense areas and from missiles. Each part’s data processing speed is calculated using a fast algorithm that is reliable and has a level of accuracy and fast processing. Data processing impacts on the accuracy of missile movements on any change in the position and motion of targets and target speed. Improved maneuvering accuracy in the first training system can detect 1000 files with a load of 273, while in the last training, the system can detect 1000 files without a load period. So the missile can be guided to hit the target without obstacles when maneuvering.
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CiteScore
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