An efficient technique for digital video broadcasting using high-altitude aerial platforms and adaptive arrays

被引:1
作者
Albagory Y. [1 ,2 ]
机构
[1] College of Computers and Information Technology, Taif University
[2] Faculty of Electronic Engineering, Menoufia University
来源
Progress In Electromagnetics Research M | 2017年 / 61卷
关键词
Multimedia systems - Spectral density - Beam forming networks - Antenna lobes - Broadcasting - Beamforming - Digital video broadcasting (DVB);
D O I
10.2528/PIERM17082403
中图分类号
学科分类号
摘要
In this paper, an efficient broadcasting technique for digital-video and audio broadcasting (DVB/DAB) is proposed using High-Altitude Platforms (HAP) and a new adaptive beamforming technique. The proposed beamforming technique uses two cascaded weighting functions to generate uniform flat footprint with improved link performance compared to terrestrial systems. These two weighting functions include flattening and smoothing coefficients to generate flat power distribution with lower sidelobe levels. Simulation results show that the generated coverage beam pattern has low sidelobe levels that is more than 40 dB below the main coverage level with less than 1 dB variation over the main coverage lobe level. Also, an almost uniform bit-energy to noise power spectral density can be achieved over the coverage area with minor variations due to the changing slant distance over the coverage area of broadcasting HAP. © 2017, Electromagnetics Academy. All rights reserved.
引用
收藏
页码:97 / 110
页数:13
相关论文
共 10 条
[1]  
Fischer W., Digital Video and Audio Broadcasting Technology, a Practical Engineering Guide, (2011)
[2]  
Zhang M., Kim S., Efficient soft demodulation scheme for digital video broadcasting via satellite second generation system, IET Communications, 8, 1, pp. 124-132, (2014)
[3]  
Oria C., Baena V., Granado J., Garcia J., Perez-Calderon D., Lopez P., Ortiz D., Performance evaluation of complementary code combining diversity in DVB-SH, Digital Signal Processing, 21, 6, pp. 718-724, (2011)
[4]  
Karapantazis S., Pavlidou F., Broadband communications via high-altitude platforms: A survey, IEEE Communications Surveys & Tutorials, 7, pp. 2-31, (2005)
[5]  
Mohammed A., Yang Z., Broadband communications and applications from high altitude platforms, International Journal of Recent Trends in Engineering, 1, 3, (2009)
[6]  
Aljahdali S., Nofal M., Albagory Y., Overview on modeling and design of stratospheric mobile cellular system, IEEE International Conference on Multimedia Computing and Systems (ICMCS’12), (2012)
[7]  
Fauzi N.F., Ali M.T., Rahman N.H.A., Yamada Y., Optimized parabolic reflector antenna for Malaysia beam coverage, 2016 IEEE Asia-Pacific Conference on Applied Electromagnetics (APACE), pp. 150-153, (2016)
[8]  
Hosseini A., Kabiri S., De Flaviis F., V-band high-gain printed quasi-parabolic reflector antenna with beam-steering, IEEE Transactions on Antennas and Propagation, 65, 4, pp. 1589-1598, (2017)
[9]  
Rocca P., Morabito A.F., Optimal synthesis of reconfigurable planar arrays with simplified architectures for monopulse radar applications, IEEE Transactions on Antennas and Propagation, 63, 3, pp. 1048-1058, (2015)
[10]  
Wu J.-M., Lei X., Zhou D.-F., Hou L., Chen H.-W., Design of ring-focus elliptical beam reflector antenna, International Journal of Antennas and Propagation, 2016, (2016)