Abstract
AbstractThe traditional training system based on case teaching is according to the analysis of past competitions and training cases to carry out the strength training of aerobics special movements. The training results cannot be evaluated intelligently and accurately, and the performance of dynamic analysis is poor. To address this problem, the core training system of strength quality of aerobics special movements based on artificial intelligence is designed to realize the intelligent training of the strength quality of aerobics special movements. Through the study of fuzzy paradigm system, intelligent functions such as optimization and decision-making of intelligent fuzzy network are realized. The design system architecture framework includes the modules of sensor, receiver, database, and analysis decision. The core chip of the system is the main control module of Atmega1280 MCU for man-machine interaction, so as to realize the comprehensive training of the strength quality of aerobics special movements. Information collection module is used to collect information on strength training information such as instrument, movement, and language. The problem of phase distortion in signal transmission process is processed by FIR filter. Through information management module, trainee information management and training results statistics and queries are implemented. In the system software part, the system software structure diagram and system startup and landing procedure are given. By analyzing the working process of the module, the strength of aerobics special movements is analyzed. Experimental results show that the designed system can achieve real-time and stable strength training for aerobics special movements and improve training efficiency.
Publisher
Springer Science and Business Media LLC
Subject
Computer Networks and Communications,Computer Science Applications,Signal Processing
Reference22 articles.
1. F.A. Ghasemi, S. Daneshpayeh, I. Ghasemi, An investigation on the Young’s modulus and impact strength of nanocomposites based on polypropylene/linear low-density polyethylene/titan dioxide (PP/LLDPE/TiO 2) using response surface methodology. Polymer. Bull. 73(6), 1741–1760 (2016)
2. T.A. Prikhna, A.V. Starostina, D. Lizkendorf, Studies of the oxidation stability, mechanical characteristics of materials based on max phases of the Ti-Al-(C, N) systems, and of the possibility of their use as tool bonds and materials for polishing. J. Superhard Mater. 36(1), 9–17 (2014)
3. X. Zhang, J. Dong, Z. Huang, Study of soil structures strength and stiffness loss based on thermodynamics and continuum mechanics. Environ. Earth Sci. 73(8), 4143–4149 (2015)
4. J.H. Low, N. Andenan, A.W.A. RWan, The influence of crosslink chemicals on the mechanical strength and water absorption of rice straw-based green composites. J. of Nat. Fibers 15(1), 1–9 (2017)
5. C.S. Liang, Z.F. Lv, Y.L. Zhu, Molybdate-based conversion treatment for improving the peeling strength between aluminum foil and polypropylene grafted with glycidyl methacrylate. Surface Coatings Technol. 249(249), 1–5 (2014)
Cited by
24 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献