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基于单片机的舰载光电跟踪系统开发及稳定性研究 被引量:1

Development and stability research of shipborne photoelectric tracking system based on single chip microcomputer control technology
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摘要 在现代船舶控制系统中,由于应用了大量的电气自动化设备,因此需要通过复杂的单片机控制系统进行综合管理。舰艇中一般都会安装光电跟踪设备,通过此设备来远程监控可能来袭的导弹等飞行物体,而单片机系统的响应速度也必须足够稳定,才能适应系统的要求。本文主要对舰载光电跟踪系统的工作原理进行了分析,并重点对几项关键技术进行了数学建模与优化,包括系统的隔离度分析与稳定性分析等。然后结合数学模型优化了舰载光电跟踪系统的响应速度,通过仿真优化,大大提高了整个单片机光电控制系统的稳定性,同时跟踪性能也获得了很大的改善,大大提高了物体的识别能力。 In the modern ship control system, due to the application of a large number of electrical automation equipment, it is necessary to carry out comprehensive management through a complex single-chip control system. Photoelectric tracking equipment is generally installed in ships, and this device is used to remotely monitor flying objects such as missiles that may come, and the response speed of the single-chip system must be stable enough to meet the requirements of the system. This paper mainly analyzes the working principle of shipborne photoelectric tracking system, and focuses on mathematical modeling and optimization of several key technologies, including system isolation analysis and stability analysis. Then the mathematical model is used to optimize the response speed of the shipborne photoelectric tracking system. Through simulation optimization, the stability of the whole single-chip photoelectric control system is greatly improved, and the tracking performance is also greatly improved, which greatly improves the recognition ability of the object.
作者 王戴林 刘妍 太荣剑 WANG Dai-lin;LIU Yan;TAI Rong-jian(Yanbian University Institute of Technology,Yanji 133002,China;Changchun University of Science and Technology,Changchun 130022,China)
出处 《舰船科学技术》 北大核心 2019年第6期118-120,共3页 Ship Science and Technology
关键词 单片机 光电跟踪 稳定性 single chip microcomputer photoelectric tracking stability
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