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α-κ-μ Sönümlü Kanalların Efektif Kapasite Başarımı

Yıl 2019, Cilt: 7 Sayı: 2, 472 - 481, 11.06.2019
https://doi.org/10.29109/gujsc.550774

Öz

Bu
çalışmada, α-κ-μ sönümlü kanalların
efektif kapasitesi için kapalı formda bir ifade türetilmiştir. Daha sonra ele
alınan kanal modelinin efektif kapasitesi için asimptotik bir ifade de
önerilmiştir. Buna ek olarak, türetilen ifadede bulunan sonsuz seri için kesme
hatası incelemesi gerçekleştirilmiştir. Son olarak ise efektif kapasite, farklı
parametre değerleri için elde edilerek benzetim sonuçları ile birlikte
sunulmuştur.

Kaynakça

  • [1]. Fraidenraich, G., Yacoub, M. D., “The α-η-μ and α-κ-μ fading distributions”, IEEE Ninth International Symposium on Spread Spectrum Techniques and Applications, 2006, pp. 16-20.
  • [2]. Yoo, S. K., Cotton, S. L., Sofotasios, P. C., Matthaiou, M., Valkama, M., Karagiannidis, G. K., “The Fisher-Snedecor F distribution: a simple and accurate composite fading model”, IEEE Commun. Lett., Cilt 21, No 7, 1661-1664, 2017.
  • [3]. Papazafeiropoulos, A. K., Kotsopoulos, S. A., “The α-λ-μ and α-η-μ small-scale general fading distributions: a unified approach”, Wireless Pers. Commun., Cilt 5, No 4,735-751, 2011.
  • [4]. Yacoub, M. D., “The α-μ distribution: a physical fading model for the Stacy distribution”, IEEE Trans. Veh. Technol., Cilt 56, No 1, 27-34, 2007.
  • [5]. Yacoub, M. D., “The κ-μ distribution and the η-μ distribution”, IEEE Antennas Propag. Mag., Cilt 49, No 1, 68-81, 2007.
  • [6]. Yacoub, M. D., “The α-η-κ-μ fading model”, IEEE Antennas Propag. Mag., Cilt 64, No 8, 3597-3610, 2016.
  • [7]. Kapucu, N., Bilim, M., Develi, I., “Outage performance of cooperative DS-CDMA systems with best path selection over α-η-μ fading channels”, Electron. Lett., Cilt 53, No 11, 752-754, 2017.
  • [8]. Bilim, M., “Karma Weibull/Log-Normal sönümlenmeli kanalın hata olasılığı analizi”, GU J Sci, Part C, Cilt 7, No 1, 203-212, 2019.
  • [9]. Li, X., Chen, X., Zhang, J., Liang, Y., Liu, Y., “Capacity analysis of α-η-κ-μ fading channels”, IEEE Commun. Lett., Cilt 21, No 6, 1449-1452, 2017.
  • [10]. Mathur, A., Ai, Y., Bhatnagar, M. R., Cheffena, M., Ohtsuki, T., “On physical layer security of α-η-κ-µ fading channels,” IEEE Commun. Lett., Cilt 22, No 10, 2168-2171, 2018.
  • [11]. Dixit, D., Sahu, P. R., “Performance of L-branch MRC receiver in η-μ and κ-μ fading channels for QAM signals”, IEEE Wireless Commun. Lett., Cilt 1, No 4, 316-319, 2012.
  • [12]. Almehmadi, F. S., Badarneh, O. S., “On the effective capacity of Fisher-Snedecor F fading channels,” Electron. Lett., Cilt 54, No 18, 1068-1069, 2018.
  • [13]. Chen, S., Zhang, J., Karagiannidis, G. K., Ai, B., “Effective rate of MISO systems over Fisher-Snedecor F fading channels”, IEEE Commun. Lett., Cilt 22, No 12, 2619-2622, 2018.
  • [14]. Badarneh, O. S., Aloqlah, M. S., “Performance analysis of digital communication systems over α-η-μ fading channels,” IEEE Trans. Veh. Technol., Cilt 65, No 10, 7972-7981, 2016.
  • [15]. Issaid, C. B., Alouini, M. –S., Tempone, R., “On the fast and precise evaluation of the outage probability of diversity receivers over α-µ, κ-µ and η-µ fading channels”, IEEE Trans. Wireless Commun., Cilt 17, No 2, 1255-1268, 2018.
  • [16]. Kapucu, N., Bilim, M., “Analysis of analytical capacity for Fisher-Snedecor F fading channels with different transmission schemes”, Electron. Lett., Cilt 55, No 5, 283-285, 2019.
  • [17]. Moualeu, J. M., da Costa, D. B., Hamouda, W., Dias, U. S., de Souza, A. A., “Performance analysis of digital communication systems over α-κ-μ fading channels”, IEEE Commun. Lett., Cilt 23, No 1,192-195, 2019.
  • [18]. Salahat, E., Hakam, A., “Performance analysis of α-η-μ and α-κ-μ generalized mobile fading channels”, 20th European Wireless Conference, 2014, pp. 1-6.
  • [19]. Anastasios, K., P., Stavros A. K., “Second-order statistics for the envelope of 𝛼-𝜅-𝜇 fading channels”, IEEE Commun. Lett., Cilt 14, No 4, 291-293, 2010.
  • [20]. Samudhyatha, B., Gurugopinath, S., Saraswathi, K., “Maximum eigenvalue-based spectrum sensing over α-κ-μ and α-η-μ fading channels”, IEEE 28th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC), 2017, pp. 1-5.
  • [21]. Samudhyatha, B., Gurugopinath, S., Saraswathi, K., “Maximum eigenvalue-based spectrum sensing over α-κ-μ and α-η-μ fading channels”, IEEE 28th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC), 2017, pp. 1-5.
  • [22]. Batista, F. P., de Souza, R. A. A., Ribeiro, A. M. O., “Maximum likelihood estimator for the α-κ-μ fading environment”, IEEE Wireless Communications And Networking Conference, 2016, pp. 1-6.
  • [23]. Prudnikov, A. P., Brychkov, Y. A., Marichev, O. I., “Integrals and series: more special functions (Vol. 3)”, , New York: Gordon Breach Sci. Publ., 1990.
  • [24]. Gradshteyn, I. S., Rzyhik, I. M., “Table of integrals, series and products”, Academic Press, London, UK, 2007.
Yıl 2019, Cilt: 7 Sayı: 2, 472 - 481, 11.06.2019
https://doi.org/10.29109/gujsc.550774

Öz

Kaynakça

  • [1]. Fraidenraich, G., Yacoub, M. D., “The α-η-μ and α-κ-μ fading distributions”, IEEE Ninth International Symposium on Spread Spectrum Techniques and Applications, 2006, pp. 16-20.
  • [2]. Yoo, S. K., Cotton, S. L., Sofotasios, P. C., Matthaiou, M., Valkama, M., Karagiannidis, G. K., “The Fisher-Snedecor F distribution: a simple and accurate composite fading model”, IEEE Commun. Lett., Cilt 21, No 7, 1661-1664, 2017.
  • [3]. Papazafeiropoulos, A. K., Kotsopoulos, S. A., “The α-λ-μ and α-η-μ small-scale general fading distributions: a unified approach”, Wireless Pers. Commun., Cilt 5, No 4,735-751, 2011.
  • [4]. Yacoub, M. D., “The α-μ distribution: a physical fading model for the Stacy distribution”, IEEE Trans. Veh. Technol., Cilt 56, No 1, 27-34, 2007.
  • [5]. Yacoub, M. D., “The κ-μ distribution and the η-μ distribution”, IEEE Antennas Propag. Mag., Cilt 49, No 1, 68-81, 2007.
  • [6]. Yacoub, M. D., “The α-η-κ-μ fading model”, IEEE Antennas Propag. Mag., Cilt 64, No 8, 3597-3610, 2016.
  • [7]. Kapucu, N., Bilim, M., Develi, I., “Outage performance of cooperative DS-CDMA systems with best path selection over α-η-μ fading channels”, Electron. Lett., Cilt 53, No 11, 752-754, 2017.
  • [8]. Bilim, M., “Karma Weibull/Log-Normal sönümlenmeli kanalın hata olasılığı analizi”, GU J Sci, Part C, Cilt 7, No 1, 203-212, 2019.
  • [9]. Li, X., Chen, X., Zhang, J., Liang, Y., Liu, Y., “Capacity analysis of α-η-κ-μ fading channels”, IEEE Commun. Lett., Cilt 21, No 6, 1449-1452, 2017.
  • [10]. Mathur, A., Ai, Y., Bhatnagar, M. R., Cheffena, M., Ohtsuki, T., “On physical layer security of α-η-κ-µ fading channels,” IEEE Commun. Lett., Cilt 22, No 10, 2168-2171, 2018.
  • [11]. Dixit, D., Sahu, P. R., “Performance of L-branch MRC receiver in η-μ and κ-μ fading channels for QAM signals”, IEEE Wireless Commun. Lett., Cilt 1, No 4, 316-319, 2012.
  • [12]. Almehmadi, F. S., Badarneh, O. S., “On the effective capacity of Fisher-Snedecor F fading channels,” Electron. Lett., Cilt 54, No 18, 1068-1069, 2018.
  • [13]. Chen, S., Zhang, J., Karagiannidis, G. K., Ai, B., “Effective rate of MISO systems over Fisher-Snedecor F fading channels”, IEEE Commun. Lett., Cilt 22, No 12, 2619-2622, 2018.
  • [14]. Badarneh, O. S., Aloqlah, M. S., “Performance analysis of digital communication systems over α-η-μ fading channels,” IEEE Trans. Veh. Technol., Cilt 65, No 10, 7972-7981, 2016.
  • [15]. Issaid, C. B., Alouini, M. –S., Tempone, R., “On the fast and precise evaluation of the outage probability of diversity receivers over α-µ, κ-µ and η-µ fading channels”, IEEE Trans. Wireless Commun., Cilt 17, No 2, 1255-1268, 2018.
  • [16]. Kapucu, N., Bilim, M., “Analysis of analytical capacity for Fisher-Snedecor F fading channels with different transmission schemes”, Electron. Lett., Cilt 55, No 5, 283-285, 2019.
  • [17]. Moualeu, J. M., da Costa, D. B., Hamouda, W., Dias, U. S., de Souza, A. A., “Performance analysis of digital communication systems over α-κ-μ fading channels”, IEEE Commun. Lett., Cilt 23, No 1,192-195, 2019.
  • [18]. Salahat, E., Hakam, A., “Performance analysis of α-η-μ and α-κ-μ generalized mobile fading channels”, 20th European Wireless Conference, 2014, pp. 1-6.
  • [19]. Anastasios, K., P., Stavros A. K., “Second-order statistics for the envelope of 𝛼-𝜅-𝜇 fading channels”, IEEE Commun. Lett., Cilt 14, No 4, 291-293, 2010.
  • [20]. Samudhyatha, B., Gurugopinath, S., Saraswathi, K., “Maximum eigenvalue-based spectrum sensing over α-κ-μ and α-η-μ fading channels”, IEEE 28th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC), 2017, pp. 1-5.
  • [21]. Samudhyatha, B., Gurugopinath, S., Saraswathi, K., “Maximum eigenvalue-based spectrum sensing over α-κ-μ and α-η-μ fading channels”, IEEE 28th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC), 2017, pp. 1-5.
  • [22]. Batista, F. P., de Souza, R. A. A., Ribeiro, A. M. O., “Maximum likelihood estimator for the α-κ-μ fading environment”, IEEE Wireless Communications And Networking Conference, 2016, pp. 1-6.
  • [23]. Prudnikov, A. P., Brychkov, Y. A., Marichev, O. I., “Integrals and series: more special functions (Vol. 3)”, , New York: Gordon Breach Sci. Publ., 1990.
  • [24]. Gradshteyn, I. S., Rzyhik, I. M., “Table of integrals, series and products”, Academic Press, London, UK, 2007.
Toplam 24 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Mühendislik
Bölüm Tasarım ve Teknoloji
Yazarlar

Nuri Kapucu 0000-0002-8399-5546

Yayımlanma Tarihi 11 Haziran 2019
Gönderilme Tarihi 8 Nisan 2019
Yayımlandığı Sayı Yıl 2019 Cilt: 7 Sayı: 2

Kaynak Göster

APA Kapucu, N. (2019). α-κ-μ Sönümlü Kanalların Efektif Kapasite Başarımı. Gazi University Journal of Science Part C: Design and Technology, 7(2), 472-481. https://doi.org/10.29109/gujsc.550774

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