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Year 2018, Volume: 6 , 46 - 50, 01.04.2018
https://doi.org/10.17694/bajece.410247

Abstract

References

  • [1] M. Viswanathan, Simulation of Digital Communication Systems using Matlab, 2013, p.422.
  • [2] M. Viswanathan, On the Achievable Rate of Stationary Fading Channels, Springer, 2011, p.310.
  • [3] İ. Görgeç, Design of Dual-Mode Stacked Circular Microstrip Patch Antennas and Correlation / Spectral Efficiency Analysis for Mimo Configurations, Master Thesis, 2009, p.121.
  • [4] H. Zarrinkoub, Understanding LTE with Matlab, Wiley, 2014, p.508.
  • [5] E. Kurtulmaz, Çoklu Yeniden Ayarlabilir Çok Girisli Çok Çıkıslı Sistemlerde Dizayn ve Performans Analizi, Master Thesis, 2015, p.45.
  • [6] Y. S. Cho, J. Kim, W. Y. Yang, C.G. Kang, MIMO-OFDM Wireless Communications with MATLAB, Wiley, 2010, p.544
  • [7] A. Savaşçıhabeş, Ö. Ertuğ, “IEEE 802.11n MIMO-OFDM WLAN haberleşme sistemlerinde kompakt multimod mikroşerit antenlerin korelasyon ve kapasite analizi”, 3. Ulusal Haberleşme Teknolojileri ve Uygulamaları Sempozyumu, 2009, pp.127-132.
  • [8] Ö. Çetin, B. Karakaya, H. A. Çırpan “3GPP LTE MIMO-OFDMA sistemlerde kanal kestirimi”, Signal Processing and Communications Applications Conference (SIU), April 2010, pp.129-132.

Evaluation of Reconfigurable Multiple and Compact Micro-Strip Antennas for MIMO Systems

Year 2018, Volume: 6 , 46 - 50, 01.04.2018
https://doi.org/10.17694/bajece.410247

Abstract

In wireless
communication systems, the improvement of data rate and quality is a priority
as a result of users' requests. During the improvement of these priority
situations, there will also be a number of losses in the signals. It is known
that the techniques used in large systems to solve such problems are not
efficient in small systems like modem. Therefore, when using a smaller system
such as a modem, the recommended techniques will have to be different.
Multimode antenna designs will be an important alternative for next generation
wireless communication systems especially for MIMO systems due to the physical
advantages of small antenna structures. In this study, MIMO channel structure
is shown and performance analysis and theories of compact micro-strip and
reconfigurable multiple antenna designs used for the development of MIMO
communication systems are mentioned. 

References

  • [1] M. Viswanathan, Simulation of Digital Communication Systems using Matlab, 2013, p.422.
  • [2] M. Viswanathan, On the Achievable Rate of Stationary Fading Channels, Springer, 2011, p.310.
  • [3] İ. Görgeç, Design of Dual-Mode Stacked Circular Microstrip Patch Antennas and Correlation / Spectral Efficiency Analysis for Mimo Configurations, Master Thesis, 2009, p.121.
  • [4] H. Zarrinkoub, Understanding LTE with Matlab, Wiley, 2014, p.508.
  • [5] E. Kurtulmaz, Çoklu Yeniden Ayarlabilir Çok Girisli Çok Çıkıslı Sistemlerde Dizayn ve Performans Analizi, Master Thesis, 2015, p.45.
  • [6] Y. S. Cho, J. Kim, W. Y. Yang, C.G. Kang, MIMO-OFDM Wireless Communications with MATLAB, Wiley, 2010, p.544
  • [7] A. Savaşçıhabeş, Ö. Ertuğ, “IEEE 802.11n MIMO-OFDM WLAN haberleşme sistemlerinde kompakt multimod mikroşerit antenlerin korelasyon ve kapasite analizi”, 3. Ulusal Haberleşme Teknolojileri ve Uygulamaları Sempozyumu, 2009, pp.127-132.
  • [8] Ö. Çetin, B. Karakaya, H. A. Çırpan “3GPP LTE MIMO-OFDMA sistemlerde kanal kestirimi”, Signal Processing and Communications Applications Conference (SIU), April 2010, pp.129-132.
There are 8 citations in total.

Details

Primary Language English
Journal Section Araştırma Articlessi
Authors

Batuhan Aslan This is me

Osman Dıkmen

Selman Kulac

Ahmet M. Elbır This is me

Publication Date April 1, 2018
Published in Issue Year 2018 Volume: 6

Cite

APA Aslan, B., Dıkmen, O., Kulac, S., Elbır, A. M. (2018). Evaluation of Reconfigurable Multiple and Compact Micro-Strip Antennas for MIMO Systems. Balkan Journal of Electrical and Computer Engineering, 6, 46-50. https://doi.org/10.17694/bajece.410247

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