Application of laser induced bias interference technology in vehicle active protection system

Authors

  • Gao Wei
  • Zhibing Wu

Keywords:

Laser induced interference, Laser semi-active guidance, Vehicle active protection

Abstract

In order to effectively combat the laser guided weapons and improve the survivability of vehicle-mounted weapon systems on the battlefield, we proposed a laser induced bias interference countermeasures technology for vehicle-mounted active defense systems. According to the incoming threat information and characteristics of semi-active guided weapon systems, we discussed the feasibility of laser induced interference technique. Moreover we recorded the trajectory of the tracking system from tracking and identifying the target to starting the interference system by experimental device with synchronous forward interference mode. It is verified that the system can implement interference antagonism within 7 s and reach active protection ability. © 2019, Editorial Board, Journal of Applied Optics. All right reserved.

References

Zhou L., Yang Y., Research on vehicle-mounted interference active protection technology based on battlefield threat analysis, Electronic Information Warfare Technology, 32, 1, pp. 42-49, (2017)

Zhou P., Zhao C., Mei L., Et al., Analysis on the development status and trend of modern active tank protection system, Command Control & Simulation, 38, 2, pp. 132-136, (2016)

Zhang Y., Warning and spoofing techniques in laser countermeasures, (2013)

Ma S., Study on laser tracking and spoofing demonstration system, (2014)

Zhang X., Tong L., Research on laser guided weapon spoofing technology, Aerospace Electronic Warfare, 29, 2, pp. 7-8, (2013)

Bai F., Wei W., Man G., Et al., Current status and development of active laser spoofing technology, Defence-related Science and Technology, 30, 6, pp. 5-8, (2009)

Li H., Analysis of countermeasures against active jamming of laser guided weapons, Laser Magazine, 31, 6, pp. 57-58, (2010)

Sun X., High precision localization algorithm based on four-quadrant detector, (2012)

Jurba M., Popescu E., Cojocaru S., Et al., Extended spectral range laser receiver, Optoelectronics and Advanced Materials-Rapid Communications, 6, pp. 11-12, (2012)

Li Y., Meng W., Ma L., Principle and Application of Photoelectric Countermeasure, pp. 135-146, (2009)

Manasson V.A., Sadovenik L.S., Laser warning receiver based on coherence discrimination, pp. 869-873, (1996)

Zhang J., Wang Z., A review of laser warning receiver based on spectral discrimination and coherent detection, Journal of Test and Measurement Technology, 20, pp. 95-101, (2006)

Song H., Zhang K., Liu Y., Et al., Comprehensive response time analysis of active protection system of armored vehicle, Electronic Information Warfare Technology, 29, 2, pp. 36-38, (2014)

Wang Q., Wang D., Cui Y., Et al., Research on application of photoelectric technology in vehicle active protection system, Scientific and Technological Exploration in Scientific Stories Expo, 12, pp. 7-11, (2013)

Li S., Zhang T., Li L., Et al., Study on infrared decoy spoofing technology of ground maneuvering target, Infrared Technology, 35, 11, pp. 727-731, (2013)

Published

31-12-2019

How to Cite

Wei, G., & Wu, Z. (2019). Application of laser induced bias interference technology in vehicle active protection system. Journal of Applied Optics, 40(2), 217–222. Retrieved from https://appliedopticsjournal.net/index.php/JAO/article/view/19

Issue

Section

Original Research Article

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