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Computer Simulation Of Compensated Dish Antenna Positioning System Mounted On Distributed Telemedicine Mobile Network
Subject area: Science,Engineering and Technology · Area of research: Computer Science
Abstract
In mobile networks, effective communication among distributed nodes is a perquisite to achieving adequate data/information sharing, signal transmission and reception, fast response and stability. With the aid of computer simulation software such as MATLAB, the performance of a communication system can be studied. In this paper, a computer simulation has been conducted to study the performance characteristics of dish antenna system mounted on distributed telemedicine mobile network. A compensation algorithm was designed and added into the network loop, which was represented by transfer function. Simulation results indicated that the addition of the compensation algorithm largely enhance the overall time domain response performance of the system in terms of rise time (2.75 s), peak time (6.73 s), overshoot (4.87%), settling time (10.1s) and steady state error (0 at 30 s).
Keywords
Compensator, Computer simulation, Mobile network, Telemedicine.
References
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[2] T.S. Ibiyemi, & A.T. Ajiboye, “Automatic Tracking of NigComSat-1R Satellite by Dish Network Mounted on Mobile Telemedicine Vehicles,” International Journal of Engineering Research & Technology, 2012, 1(4), pp 1-4.
[3] T.S. Ibiyemi, & A.T. Ajiboye, “Robust PID Control of Mobile Satellite Dish Network within Nigeria,” International Journal of Computer Applications, 2012, 41(21), pp 32-36
[4] R. Makena , & C. C. Hayes, “ Flexible usage of space for Telemedicine,” IEEE, 2011, pp 1134– 1139.
[5] F.N.C. Anyaegbunam, “On National e-Healthcare Delivery Through Nigcomsat-1,” International Journal of Engineering Research & Technology, 2014, 3(1), pp 2270-2276
[6] A. T. Ajiboye, A. O. Yusuf, & A. R. Ajayi, “Characterization and Analysis of Propagation Time Delay within NigComSat-1R Footprints,” Nigerian Journal of Technological Development, 2019, 16(3), 105-110
[7] A. T. Ajiboye, A. R. Ajayi, & S. L. Ayinla, “Effects of PID Controller on Performance of Dish Antenna Position Control for Distributed Mobile Telemedicine Nodes,” Arid Zone Journal of Engineering, Technology & Environment, 2019, 15(2), pp 304-313
[8] T.S. Ibiyemi, & A.T. Ajiboye. “On PID Controller Design for Mobile Node Network with Variable Delays,” International Journal of Science and Advanced Technology, 2012, 2, 176-180.
How to cite this paper
@article{1701975,
author = {Dr. Okolie S. A., Nwabueze E. C., Okoronkwo C., Akpan E. I.},
title = {Computer Simulation Of Compensated Dish Antenna Positioning System Mounted On Distributed Telemedicine Mobile Network},
journal = {Iconic Research And Engineering Journals},
year = {2020},
volume = {3},
number = {9},
pages = {30-34},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1701975.pdf},
abstract = {In mobile networks, effective communication among distributed nodes is a perquisite to achieving adequate data/information sharing, signal transmission and reception, fast response and stability. With the aid of computer simulation software such as MATLAB, the performance of a communication system can be studied. In this paper, a computer simulation has been conducted to study the performance characteristics of dish antenna system mounted on distributed telemedicine mobile network. A compensation algorithm was designed and added into the network loop, which was represented by transfer function. Simulation results indicated that the addition of the compensation algorithm largely enhance the overall time domain response performance of the system in terms of rise time (2.75 s), peak time (6.73 s), overshoot (4.87%), settling time (10.1s) and steady state error (0 at 30 s).},
keywords = {Compensator, Computer simulation, Mobile network, Telemedicine.},
month = {March},
}