| Clay Pigeon Shooting is a main competition of the Olympic Games, WorldChampionships, Asian Games and the Asian Shooting Championships. Although in recentyears the overall competitive level of our Clay Pigeon Shooting has made considerableprogress. But in the past, the athlete mostly use qualitative trainings, especially the Dry-Fireexercises which tend to be boring and lack of targets, so the trainings can not be effective inreal-time consideration training. Current training method has been unable to meet the trainingneeds of high level athletes. To further improvement of the competitive level, athletes need todo some in-depth quantitative research, and let the coaches and athletes more accurately graspof the characteristics and regularities to guide the trainings, so they need a set of auxiliarytraining system to help coaches to monitor and analyze the training of athletes.This paper presents a Clay Pigeon Shooting simulation training system which cansimulate the real Clay Pigeon Shooting competition scene, reproduce target throw competitionstandard solution and provide results, the point of impact location, and shooting process thestate of motion of the gun body changes and other data for the shooting coaches and athletes.The key problem with the system to be solved are: analyze the characteristics andfunctional requirements of the Clay Pigeon Shooting Games; determine the needs of thesystem and design the overall structure of this system; use virtual reality technology to buildpersonalized shooting simulation environment according to the Beijing Shooting Range andthe weather conditions you might encounter. Reproduce the target based on CSA’s rules andthe force during the flight; use computer vision and image processing techniques to achievethe shooting results; use the MPU6050motion sensor to design and realize the gun bodymotion parameters acquisition module; design and realize of simulation scenarios MFCparameter setting system and data management system based on the completion of.Now the system has been delivered to the national shooting team, a series of simulation andexperimental tests show that this system mechanism design is reasonable, and it’s easy tooperate, can meet the diverse shooting training requirements, which can reduce the cost oftraining, provide quantitative, reliable data for improving the efficiency and quality of thetraining for coaches, and have some help for the athletes to prepare Olympic Games. |