Application of Computer Vision-Based Optoelectronic Target Tracking Algorithm in Command and Control System
With the continuous improvement of modern war and security monitoring needs, the command and control system has more and more strict requirements on the precision and real-time of target tracking technology. The photoelectric target tracking algorithm based on computer vision has been widely used in...
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| Published in: | 2024 International Conference on Power, Electrical Engineering, Electronics and Control (PEEEC) pp. 960 - 964 |
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| Main Authors: | , |
| Format: | Conference Proceeding |
| Language: | English |
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IEEE
14.08.2024
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| Abstract | With the continuous improvement of modern war and security monitoring needs, the command and control system has more and more strict requirements on the precision and real-time of target tracking technology. The photoelectric target tracking algorithm based on computer vision has been widely used in command and control system because of its efficient and accurate features. In this paper, the basic principle of photoelectric target tracking algorithm and its application in command and control system are discussed in depth, focusing on analyzing the selection and realization methods of different algorithms and their effects in practical application. Through the comparative analysis of several typical algorithms, this paper reveals the potential of optoelectronic target tracking algorithms in enhancing the efficiency and accuracy of command and control systems, and points out the challenges faced by the current technology and the future development direction. The results show that with the development of emerging technologies and the continuous optimization of algorithms, optoelectronic target tracking will play an increasingly important role in command and control systems. |
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| AbstractList | With the continuous improvement of modern war and security monitoring needs, the command and control system has more and more strict requirements on the precision and real-time of target tracking technology. The photoelectric target tracking algorithm based on computer vision has been widely used in command and control system because of its efficient and accurate features. In this paper, the basic principle of photoelectric target tracking algorithm and its application in command and control system are discussed in depth, focusing on analyzing the selection and realization methods of different algorithms and their effects in practical application. Through the comparative analysis of several typical algorithms, this paper reveals the potential of optoelectronic target tracking algorithms in enhancing the efficiency and accuracy of command and control systems, and points out the challenges faced by the current technology and the future development direction. The results show that with the development of emerging technologies and the continuous optimization of algorithms, optoelectronic target tracking will play an increasingly important role in command and control systems. |
| Author | Jia, Yanyan Feng, Bo |
| Author_xml | – sequence: 1 givenname: Bo surname: Feng fullname: Feng, Bo email: fengbo3@cetc.com.cn organization: China Academy of Electronics and Information Technology,Beijing,China,100140 – sequence: 2 givenname: Yanyan surname: Jia fullname: Jia, Yanyan email: yy_llfeng@163.com organization: North China University of Technology,Beijing,China,100144 |
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| Snippet | With the continuous improvement of modern war and security monitoring needs, the command and control system has more and more strict requirements on the... |
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| SubjectTerms | Accuracy algorithm optimization command and control system Command and control systems Computer vision data processing deep learning feature extraction optical target tracking Optimization performance enhancement real-time surveillance Real-time systems Stability analysis Target recognition Target tracking Technical requirements Technological innovation |
| Title | Application of Computer Vision-Based Optoelectronic Target Tracking Algorithm in Command and Control System |
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