location:Home > 2019 VOL.2 Apr No.2 > Technology-based multimedia network teaching platform remote control system

2019 VOL.2 Apr No.2

  • Title: Technology-based multimedia network teaching platform remote control system
  • Name: Gabriel Lawrence
  • Company: Federation University Australia,
  • Abstract:

    Abstract-Designed and built a multimedia teaching platform based on network technology with multimedia animation and sound effects. Aiming at the needs of modern teaching work under information conditions, it is of great significance to construct a network online and multimedia multimedia teaching platform to realize remote control of the distance learning platform. The cost and resources of education and teaching are saved through the network teaching platform, and the multimedia network teaching platform improves the quality of teaching. A network transmission system is established based on TCP/IP protocol and C/S. Remote control and data transfer are successfully implemented and training and labing costs can be saved through the platform. Design and test results show that if the platform is very good, multimedia performance. The network test results show that the remote control and data transmission performance is stable, showing the prospect of platform application.

  • Keyword: network; multimedia; remote control; teaching
  • DOI: 10.12250/jpciams2019020112
  • Citation form: Gabriel Lawrence.Technology-based multimedia network teaching platform remote control system[J]. Computer Informatization and Mechanical System, 2019, vol. 2, pp. 1-5.
Reference:

[1] ZHENG Qing-zhong,ZHOU Yi-chun. Implementation of the Remote Supervision System for Multimedia Classrooms Based on Campus Network [J]. Journal of Zhejiang Ocean University(Natural Science). 2009,28(4): 491-494.

[2] Lawton, G. Making. Virtual Reality More Assessable[M]. Computer, 2006.

[3] HONG Kang, LIANG Hong, YANG Changsheng. Visual Simulation of Anti-torpedo System[C]. 2009 IEEE Youth Conference on information, Computing and Telecommunications “Microsoft Cup” IEEE China Student paper Contest, 2009, 9: 243-246.

[4] Hu Guangbo,  Zhou Yong. Study on Virtual Simulation for Ship Wake Based on Vega Prime[J]. Ship Electronic Engineering, 2010, 30(6): 91-94.

[5] Zhang Yi, Zhou Bingying, Hu Guangbo. Hardware System Design of Underwater Motor Pump Faults Diagnose Detector[J].Computer & Digital Engineering, 2012, 40(11): 162-166.

[6] HU Guang-bo, LIANGHong, XUQian. Research on Chaotic Feature Extraction of Ship Radiated Noise[J]. Computer Simulation, 2011, 28(2): 22-24.

[7] R. Gharieb. Higher order statistics based IIR notch filtering scheme for enhancing sinusoids in coloured noise[C]. IEEE Proceedings-Vision, Image and Signal Processing, 2000, 147(2): 115-121.

Tsuruta Institute of Medical Information Technology
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