Design of a Communication Device of Infrared Thermal Imaging Target Recognition and Tracking System

Author:

Zhang Le12,Wang Jinsong1ORCID,An Zhiyong1

Affiliation:

1. Opto-Electronic Engineering Department, Changchun University of Science and Technology, Changchun 130022, Jilin, China

2. Equipment Engineering Department, Shenyang Ligong University, Shenyang 100168, China

Abstract

Due to the presence of solar radiation, each object emits electromagnetic waves at different temperatures. Thermal infrared imaging is to image an object through a thermal infrared CCD, which can reflect the temperature field of the object. The image information is obtained by infrared radiation intensity distribution, and the infrared light invisible to the human eye is converted into a visible image. Thermal infrared has a wide range of applications in military, industrial, automotive, medical, and other fields. This technology is still a research hotspot at present, and it has high research value for any region. This paper designs a communication device architecture for an infrared thermal imaging target recognition and tracking system and optimizes and compares different target recognition and tracking algorithms. The test results show that the device system can reduce the system software frame processing time from 120 ms to an average of 28 ms, and the processing speed is increased by about 4.3 times.

Funder

Department of Education of Liaoning Province

Publisher

Hindawi Limited

Subject

General Computer Science

Reference28 articles.

1. Research of multiple-instance learning for target recognition and tracking

2. Design of the amoeba model wireless human detection alarm system using passive infrared sensor;M. K. Dey;IOSR Journal of Electronics and Communication Engineering,2016

3. Novel design OF an I-V converter for infrared receivers;Y.-F. Shi;Electronics World,2016

4. Design of a Smartphone Platform Compact Optical System Operational Both in Visible and Near Infrared Spectral Regime

5. A cooperative positioning with Kalman filters and handover mechanism for indoor microcellular visible light communication network

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