BibTex RIS Kaynak Göster

Kablosuz bilişsel radyo ağlarında ikincil kullanıcılar için ortam erişim kontrol protokolleri

Yıl 2017, Cilt: 23 Sayı: 2, 149 - 164, 28.04.2017

Öz

Kablosuz
bilişsel radyo ağ çalışmaları yeni uygulamalar için gün geçtikçe önem
kazanmaktadır. Kablosuz ağlarda, düğümler arası haberleşmeyi MAC (Ortam Erişim
Kontrol) protokolleri sağlamaktadır. MAC protokolleri kablosuz haberleşme
kanallarında oluşan gizli terminal ve sinyal kaybolma etkileri gibi hata ve
problemlerden dolayı daha da önemli bir hale gelmektedir. MAC protokolleri ile
ilgili birçok çalışma yapılmasına rağmen, yapılan çalışmaların büyük çoğunluğu
izole şekilde kullanılmıştır. Bu çalışmada, birbirinden habersiz yapılan literatürdeki
bütün çalışmaların derlemesi yapılmıştır. Ayrıca, MAC protokollerinin tanımı ve
kısa açıklamaları da bu çalışmada yer almaktadır. Sonuç kısmında, gelecek
çalışmalar için önerilerde bulunulmuş ve MAC alanı ile ilgili genel ifadeler
vurgulanmıştır.

Kaynakça

  • Rappaport TS. Wireless Communications, Principles & Practice. 2nd ed. New Jersey, USA, Prentice-Hall Inc., 2002.
  • Stallings W, Wireless Communications and Networks. 2nd ed. New Jersey, USA, Pearson Education, 2005.
  • Li X, Liu H, Roy S, Zhang J, Zhang P, Ghosh C. “Throughput analysis for a multi-user, multi-channel ALOHA cognitive radio system”. IEEE Transactions on Wireless Communications, 11(11), 3900-3909, 2012.
  • Choe S. “Throughput, delay and packet capture effects in rayleigh fading of a cognitive radio packet network”. IEEE Conference on Wireless Days, Dubai, 24-27 November 2008.
  • Lien SY, Tseng CC, Chen KC. “Carrier sensing based multiple access protocols for cognitive radio networks”. IEEE International Conference on Communications, Beijing, China, 19-23 May 2008.
  • Yang Z. Investigations of Multiple Access Protocols in Cognitive Radio Networks. Doctoral Dissertation, Stevens Institute of Technology, Hudson, New Jersey, United States, 2010.
  • Choe S, Park SK. “Throughput of slotted ALOHA based cognitive radio MAC”. IEEE International Conference on Ubiquitous Information Technologies and Applications, Fukuoka, Japan, 20-22 December 2009.
  • Wyglinski AM, Nekovee M, Hou T. Cognitive Radio Communications and Networks, Principles and Practice. 1st ed. California, USA, Academic Press, 2010.
  • Chen KC, Prasad R. Cognitive Radio Networks, 1st ed. Chippenham, UK, John Wiley & Sons Inc., 2009.
  • Kataria A. Cognitive Radios-Spectrum Sensing Issues. Master of Science Thesis, University of Missouri, Faculty of the Graduate School, Columbia, USA, 2007.
  • Eerla VVS. Performance Analysis of Energy Detection Algorithm in Cognitive Radio. Master of Science Thesis, National Institute of Technology Rourkela, Department of Electronics and Communication Engineering, Odisha, India, 2011.
  • De Domenico A, Strinati EC, Di Benedetto M. “A survey on MAC strategies for cognitive radio networks”. IEEE Communications Surveys and Tutorials, 14(1), 21-44, 2012.
  • Buccardo A. A Signal Detector for Cognitive Radio System. Master of Science Thesis, University of Gävle, Gävle, Sweden, 2010.
  • Muta R, Kohno R. “Throughput analysis for cooperative sensing in cognitive radio networks”. IEEE 20th International Symposium on Personal, Indoor and Mobile Radio Communications, Tokyo, Japan, 13-16 September 2009.
  • Akyildiz IF, Lee WY, Vuran MC, Mohanty S. “Next generation/dynamic spectrum access/cognitive radio wireless networks: A survey”. Computer Networks, 50(13), 2127-2159, 2006.
  • Yuan J, Torlak M. “Optimization of throughput and autonomous sensing in random access cognitive radio networks”. 7th IEEE International Conference on Wireless Communications and Mobile Computing, Istanbul, Turkey, 4-8 July 2011.
  • Zhang L, Xiao Z. “Performance analysis of cooperative spectrum sensing algorithm for cognitive radio networks”. IEEE International Conference on Computer Design and Applications, Qinhuangdao, China, 25-27 June 2010.
  • Ghasemi A, Sousa ES. “Spectrum sensing in cognitive radio networks: the cooperation processing tradeoff”. Wireless Communications and Mobile Computing, 7(9), 1049-1060. 2007.
  • Bayılmış C, Ertürk İ, Çeken C. “Kablosuz bilgisayar ağlarının karşılaştırmalı incelemesi”. Gazi Üniversitesi Politeknik Dergisi, 7(3), 201-210, 2004.
  • Çiflikçi C, Tuncer AT, Özşahin AT, Yesbek SM. “Bilişsel radyo ve ortam erişim kontrol katmanı protokolleri”. 5. Uluslararası İleri Teknolojiler Sempozyumu, Karabük, Türkiye, 13-15 Mayıs 2009.
  • Bayılmış C, Ertürk İ, Çeken C, Bandırmalı N. “Kablosuz Erişim Yöntemlerinin Karşılaştırmalı İncelemesi”. TMMOB Elektrik Elektronik Bilgisayar Mühendisliği 11. Ulusal Kongresi, İstanbul, Türkiye, 22-25 Eylül 2005.
  • Karahan A, Ertürk İ, Atmaca S, Çakıcı S. “Melez bir kablosuz algılayıcı ağ OEK protokolü”. 6. Uluslararası İleri Teknolojiler Sempozyumu, Elazığ, Türkiye, 16-18 Mayıs 2011.
  • Abramson N. “THE ALOHA SYSTEM: another alternative for computer communications”. Proceedings of the Fall Joint Computer Conference, Houston, Texas, USA, 14-19 November 1970.
  • Akyildiz IF, McNair J, Martorell LC, Puigjaner R, Yesha Y. “Medium access control protocols for multi-media traffic in wireless networks”. IEEE Network Magazine, 13(4), 39-47, 1999.
  • Kleinrock L, Tobagi FA. “Packet switching in radio channels: part i-carrier sense multiple access modes and their throughput-delay characteristics”. IEEE Transactions on Communations, 23(12), 1400-1416, 1975.
  • Kleinrock L, Tobagi FA. “Packet switching in radio channels: Part II-the hidden terminal problem in carrier sense multiple access and busy tone solution”. IEEE Transactions Communations, 23(12), 1417-1433, 1975.
  • Gallager RG. “A perspective on multi access channels”. IEEE Transactions on Information. Theory, 31(2), 124-142, 1985.
  • Bhargavan V, Demers A, Shenker S, Zhang L. “MACAW: A media access protocol for wireless LANs”. ACM Special Interest Group on Data Communication Conference, London, UK, 31 August-2 September 1994.
  • Fullmer CL, Garcia-Luna-Aceves JJ. “Floor acquisition multiple access (FAMA) for packet - radio networks”. ACM Special Interest Group on Data Communication Conference, Cambridge, Massachusetts, USA, 28 August-1 September 1995.
  • Ye W, Jeidemann J, Estrin D. “An energy-efficient MAC protocol for wireless sensor networks”. Proceedings of The IEEE International Conference on Computer Communications, New York City, USA, 23-27 June 2002.
  • Talucci F, Gerla M. “MACA-BI (MACA By Invitation), A wireless MAC protocol for high speed ad hoc networking”. Proceedings of The IEEE 6th International Conference on Universal Personal Communications, San Diego, USA, 12-16 October 1997.
  • Wu C, Li VOK. “Receiver-initiated busy-tone multiple access in packet radio networks”. Proceedings of the ACM Special Interest Group on Data Communication Conference, Stowe, USA, 11-13 August 1987.
  • Tang Z, Garcia-Luna-Aceves JJ. “Hop-reservation multiple access (HRMA) for ad hoc networks”. Proceedings of the IEEE International Conference on Computer Communications, New York, USA, 21-25 March 1999.
  • Haas ZJ, Deng J. “Dual busy tone multiple access (DBTMA)-A multiple access control scheme for ad hoc networks”. IEEE Transactions on Communications, 50(6), 975-984, 2002.
  • Chen KC. “Medium access protocols of wireless LANs for mobile computing”. IEEE Network, 8(5), 50-63, 1994.
  • Crow BP, Widjaja I, Kim JG, Sakai PT. “IEEE 802.11, wireless local area networks”. IEEE Communications Magazine, 35(9), 116-126, 1997.
  • Muir A, Garcia-Luna-Aceves JJ. “An efficient packet sensing MAC protocol for wireless networks”. Mobile Networks and Applications, 3(3), 221-234, 1998.
  • Singh S, Raghavendra CS. “PAMAS-power aware multi-access protocol with signaling for ad hoc networks”. ACM Computer Communication Review, 28(3), 5-26, 1998.
  • Chockalingam A, Zorzi M. “Energy efficiency of media access protocols for mobile data networks”. IEEE Transactions on Communications, 46(11), 1418-1421, 1998.
  • Sivalingam KM, Srivastava MB, Agrawal P. “Low power link and access protocols for wireless multimedia networks”. Proceedings of the IEEE Vehicular Technology Conference, Arizona, USA, 4-7 May 1997.
  • Smith WM, Ghang PS. “A low power medium access control protocol for portable multi-media systems”. Proceedings of the 3rd International Workshop Mobile Multimedia Communication, New Jersey, USA, 25-27 September 1996.
  • Jung ES, Vaidya NH. “An energy efficient MAC protocol for wireless LANs”. Proceedings of the IEEE International Conference on Computer Communications, New York, USA, 23-27 June 2002.
  • Woesner H, Ebert JP, Schlager M, Wolisz A. “Power saving mechanisms in emerging standards for wireless LANs: The MAC level perspective”. IEEE Personal Communications, 5(3), 40-48, 1998.
  • Monks J, Bharghavan V, Hwu W. “A power controlled multiple access protocol for wireless packet networks”. Proceedings of the IEEE International Conference on Computer Communications, Alaska, USA, 22-26 April 2001.
  • Ramanathan R, Hain RR. “Topology control of multi-hop wireless networks using transmit power adjustment”. Proceedings of the IEEE International Conference on Computer Communications, Tel Aviv, Israel, 26-30 March 2000.
  • Rodoplu V, Meng TH. “Minimum energy mobile wireless networks”. IEEE Journal on Selected Areas in Communications, 17(8), 1338-1344, 1999.
  • Wieselthier JE, Nguyen GD, Ephremides A. “On the construction of energy-efficient broadcast and multicast trees in wireless networks”. Proceedings of the IEEE International Conference on Computer Communications, Tel Aviv, Israel, 26-30 March 2000.
  • Wieselthier JE, Nguyen GD, Ephremides A. “Resource- limited energy efficient wireless multicast of session traffic”. Hawaii International Conference on Systematic Science, Hawaii, USA, 3-6 January 2001.
  • Ebert JP, Stremmel B, Wiederhold E, Wolisz A. “An energy-efficient power control approach for WLANs”. Journal of Communications and Networks, 2(3), 197-206, 2000.
  • Nasipuri A, Zhuang J, Das SR. “A multichannel CSMA MAC protocol for multi-hop wireless networks”. IEEE Wireless Communications and Networking Conference, Louisiana, USA, 21-24 September 1999.
  • Nasipuri A, Das SR. “Multichannel CSMA with signaling power-based channel selection for multi-hop wireless networks”. Proceedings of the IEEE Vehicular Technology Conference, Boston, USA, 15-18 May 2000.
  • Jain N, Das SR, Nasipuri A. “A multichannel CSMA MAC protocol with receiver-based channel selection for multi-hop wireless networks”. Proceedings of the 9th International Conference Computer Communications and Networks, Arizona, USA, 15-17 October 2001.
  • Ephremides A, Wieselthier J, Baker D. “A design concept for reliable mobile radio networks with frequency hopping signaling”. Proceedings of the IEEE, 75(1), 56-73, 1987.
  • Pursley M. “The role of spread spectrum in packet radio networks”. Proceedings of the IEEE, 75(1), 116-134, 1987.
  • Chalmers D, Slomon M. “A survey of quality of service in mobile computing environments”. IEEE Communications Surveys & Tutorials, 2(2), 2-10, 1999.
  • Veres A, Campbell AT, Barry M, Sun LH. “Supporting service differentiation in wireless packet networks using distributed control”. IEEE Journal on Selected Areas in Communications, 19(10), 2081-2093, 2001.
  • Gerla M, Tzu J, Tsai C. “Multi-cluster, mobile, multimedia radio network”. Wireless Networks, 1(3), 255-265, 1995.
  • Lin CR, Gerla M. “Adaptive clustering for mobile wireless networks”. IEEE Journal on Selected Areas in Communications, 15(7), 1265-1275, 1997.
  • Lin CH. A Multi-Hop Adaptive Mobile Multimedia Network: Architecture and Protocols. Doctoral Dissertation, University of California, Los Angeles, United States, 1996.
  • Deng DJ, Chang RS. “A priority scheme for IEEE 802.11 DCF access method”. IEICE Transactions on Communications, E82-B(1), 96-102, 1999.
  • Choi S, Pedro J, Shankar NS, Mangold S. “IEEE 802.11e contention-based channel access (EDCF) performance evaluation”. Proceedings of the International Conference on Communications, Alaska, USA, 11-15 May 2003.
  • Mangold S, Choi S, May P, Klein O, Hiertz G, Stibor L. “IEEE 802.11e wireless LAN for quality of service”. Proceedings of the European Wireless, Florence, Italy, 25-28 February 2002.
  • Lin CR, Gerla M. “MACA/PR: An asynchronous multimedia multi-hop wireless network”. Proceedings of The IEEE Conference on Computer Communications, Kobe, Japan, 7-12 April 1997.
  • Vaidya NH, Bahl S, Gupta S. “Distributed fair scheduling in a wireless LAN”. 6th Annual International Conference on Mobile Computing and Networking, Boston, USA, 6-11 August 2000.
  • Golestani SJ. “A self-clocked fair queuing scheme for broadband applications”. Proceedings of The IEEE Conference on Computer Communications, Toronto, Canada, 12-16 June 1994.
  • Garces R, Garcia-Luna-Aceves JJ. “Near-optimum channel access protocol based on incremental collision resolution and distributed transmission queues”. IEEE Conference on Computer Communications, San Francisco, USA, 29 March-2 April 1998.
  • Nandagopal T, Kim TE, Gao X, Bharghavan V. “Achieving MAC layer fairness in wireless packet networks”. Proceedings of The International Conference on Mobile Computing and Networking, Boston, USA, 6-11 August 2000.
  • Aad I, Castelluccia C. “Differentiation mechanisms for IEEE 802.11”. IEEE Conference on Computer Communications, Alaska, USA, 22-26 April 2001.
  • Weinmiller J, Woesner H, Ebert JP, Wolisz A. “Analyzing and tuning the distributed coordination function in the IEEE 802.11 DFW MAC draft Standard”. 1996.
  • Cali F, Conti M, Gregori E. “Dynamic tuning of the IEEE 802.11 protocol to achieve a theoretical throughput limit”. IEEE/ACM Transactions on Networking, 8(6), 785-799, 2000.

Medium access control protocols for secondary users in wireless cognitive radio networks

Yıl 2017, Cilt: 23 Sayı: 2, 149 - 164, 28.04.2017

Öz

Wireless
cognitive radio network studies are gaining importance day by day for new
applications. In wireless networks, communication between nodes is provided by
MAC (Medium Access Control) protocols. MAC protocols are becoming more
important due to hidden wireless communication terminal problem, signal errors
and problems that occur in channels such as loss effects. Although there are
many studies on the MAC protocols, majority of these studies are isolated from
each other. In this study, the compilation of all work that is unaware of each
other in the literature has been made. In addition, the definition of MAC
protocols and brief descriptions are also included in this study. In the
concluding part, some suggestions for future work are presented and general
terms about MAC are emphasized.

Kaynakça

  • Rappaport TS. Wireless Communications, Principles & Practice. 2nd ed. New Jersey, USA, Prentice-Hall Inc., 2002.
  • Stallings W, Wireless Communications and Networks. 2nd ed. New Jersey, USA, Pearson Education, 2005.
  • Li X, Liu H, Roy S, Zhang J, Zhang P, Ghosh C. “Throughput analysis for a multi-user, multi-channel ALOHA cognitive radio system”. IEEE Transactions on Wireless Communications, 11(11), 3900-3909, 2012.
  • Choe S. “Throughput, delay and packet capture effects in rayleigh fading of a cognitive radio packet network”. IEEE Conference on Wireless Days, Dubai, 24-27 November 2008.
  • Lien SY, Tseng CC, Chen KC. “Carrier sensing based multiple access protocols for cognitive radio networks”. IEEE International Conference on Communications, Beijing, China, 19-23 May 2008.
  • Yang Z. Investigations of Multiple Access Protocols in Cognitive Radio Networks. Doctoral Dissertation, Stevens Institute of Technology, Hudson, New Jersey, United States, 2010.
  • Choe S, Park SK. “Throughput of slotted ALOHA based cognitive radio MAC”. IEEE International Conference on Ubiquitous Information Technologies and Applications, Fukuoka, Japan, 20-22 December 2009.
  • Wyglinski AM, Nekovee M, Hou T. Cognitive Radio Communications and Networks, Principles and Practice. 1st ed. California, USA, Academic Press, 2010.
  • Chen KC, Prasad R. Cognitive Radio Networks, 1st ed. Chippenham, UK, John Wiley & Sons Inc., 2009.
  • Kataria A. Cognitive Radios-Spectrum Sensing Issues. Master of Science Thesis, University of Missouri, Faculty of the Graduate School, Columbia, USA, 2007.
  • Eerla VVS. Performance Analysis of Energy Detection Algorithm in Cognitive Radio. Master of Science Thesis, National Institute of Technology Rourkela, Department of Electronics and Communication Engineering, Odisha, India, 2011.
  • De Domenico A, Strinati EC, Di Benedetto M. “A survey on MAC strategies for cognitive radio networks”. IEEE Communications Surveys and Tutorials, 14(1), 21-44, 2012.
  • Buccardo A. A Signal Detector for Cognitive Radio System. Master of Science Thesis, University of Gävle, Gävle, Sweden, 2010.
  • Muta R, Kohno R. “Throughput analysis for cooperative sensing in cognitive radio networks”. IEEE 20th International Symposium on Personal, Indoor and Mobile Radio Communications, Tokyo, Japan, 13-16 September 2009.
  • Akyildiz IF, Lee WY, Vuran MC, Mohanty S. “Next generation/dynamic spectrum access/cognitive radio wireless networks: A survey”. Computer Networks, 50(13), 2127-2159, 2006.
  • Yuan J, Torlak M. “Optimization of throughput and autonomous sensing in random access cognitive radio networks”. 7th IEEE International Conference on Wireless Communications and Mobile Computing, Istanbul, Turkey, 4-8 July 2011.
  • Zhang L, Xiao Z. “Performance analysis of cooperative spectrum sensing algorithm for cognitive radio networks”. IEEE International Conference on Computer Design and Applications, Qinhuangdao, China, 25-27 June 2010.
  • Ghasemi A, Sousa ES. “Spectrum sensing in cognitive radio networks: the cooperation processing tradeoff”. Wireless Communications and Mobile Computing, 7(9), 1049-1060. 2007.
  • Bayılmış C, Ertürk İ, Çeken C. “Kablosuz bilgisayar ağlarının karşılaştırmalı incelemesi”. Gazi Üniversitesi Politeknik Dergisi, 7(3), 201-210, 2004.
  • Çiflikçi C, Tuncer AT, Özşahin AT, Yesbek SM. “Bilişsel radyo ve ortam erişim kontrol katmanı protokolleri”. 5. Uluslararası İleri Teknolojiler Sempozyumu, Karabük, Türkiye, 13-15 Mayıs 2009.
  • Bayılmış C, Ertürk İ, Çeken C, Bandırmalı N. “Kablosuz Erişim Yöntemlerinin Karşılaştırmalı İncelemesi”. TMMOB Elektrik Elektronik Bilgisayar Mühendisliği 11. Ulusal Kongresi, İstanbul, Türkiye, 22-25 Eylül 2005.
  • Karahan A, Ertürk İ, Atmaca S, Çakıcı S. “Melez bir kablosuz algılayıcı ağ OEK protokolü”. 6. Uluslararası İleri Teknolojiler Sempozyumu, Elazığ, Türkiye, 16-18 Mayıs 2011.
  • Abramson N. “THE ALOHA SYSTEM: another alternative for computer communications”. Proceedings of the Fall Joint Computer Conference, Houston, Texas, USA, 14-19 November 1970.
  • Akyildiz IF, McNair J, Martorell LC, Puigjaner R, Yesha Y. “Medium access control protocols for multi-media traffic in wireless networks”. IEEE Network Magazine, 13(4), 39-47, 1999.
  • Kleinrock L, Tobagi FA. “Packet switching in radio channels: part i-carrier sense multiple access modes and their throughput-delay characteristics”. IEEE Transactions on Communations, 23(12), 1400-1416, 1975.
  • Kleinrock L, Tobagi FA. “Packet switching in radio channels: Part II-the hidden terminal problem in carrier sense multiple access and busy tone solution”. IEEE Transactions Communations, 23(12), 1417-1433, 1975.
  • Gallager RG. “A perspective on multi access channels”. IEEE Transactions on Information. Theory, 31(2), 124-142, 1985.
  • Bhargavan V, Demers A, Shenker S, Zhang L. “MACAW: A media access protocol for wireless LANs”. ACM Special Interest Group on Data Communication Conference, London, UK, 31 August-2 September 1994.
  • Fullmer CL, Garcia-Luna-Aceves JJ. “Floor acquisition multiple access (FAMA) for packet - radio networks”. ACM Special Interest Group on Data Communication Conference, Cambridge, Massachusetts, USA, 28 August-1 September 1995.
  • Ye W, Jeidemann J, Estrin D. “An energy-efficient MAC protocol for wireless sensor networks”. Proceedings of The IEEE International Conference on Computer Communications, New York City, USA, 23-27 June 2002.
  • Talucci F, Gerla M. “MACA-BI (MACA By Invitation), A wireless MAC protocol for high speed ad hoc networking”. Proceedings of The IEEE 6th International Conference on Universal Personal Communications, San Diego, USA, 12-16 October 1997.
  • Wu C, Li VOK. “Receiver-initiated busy-tone multiple access in packet radio networks”. Proceedings of the ACM Special Interest Group on Data Communication Conference, Stowe, USA, 11-13 August 1987.
  • Tang Z, Garcia-Luna-Aceves JJ. “Hop-reservation multiple access (HRMA) for ad hoc networks”. Proceedings of the IEEE International Conference on Computer Communications, New York, USA, 21-25 March 1999.
  • Haas ZJ, Deng J. “Dual busy tone multiple access (DBTMA)-A multiple access control scheme for ad hoc networks”. IEEE Transactions on Communications, 50(6), 975-984, 2002.
  • Chen KC. “Medium access protocols of wireless LANs for mobile computing”. IEEE Network, 8(5), 50-63, 1994.
  • Crow BP, Widjaja I, Kim JG, Sakai PT. “IEEE 802.11, wireless local area networks”. IEEE Communications Magazine, 35(9), 116-126, 1997.
  • Muir A, Garcia-Luna-Aceves JJ. “An efficient packet sensing MAC protocol for wireless networks”. Mobile Networks and Applications, 3(3), 221-234, 1998.
  • Singh S, Raghavendra CS. “PAMAS-power aware multi-access protocol with signaling for ad hoc networks”. ACM Computer Communication Review, 28(3), 5-26, 1998.
  • Chockalingam A, Zorzi M. “Energy efficiency of media access protocols for mobile data networks”. IEEE Transactions on Communications, 46(11), 1418-1421, 1998.
  • Sivalingam KM, Srivastava MB, Agrawal P. “Low power link and access protocols for wireless multimedia networks”. Proceedings of the IEEE Vehicular Technology Conference, Arizona, USA, 4-7 May 1997.
  • Smith WM, Ghang PS. “A low power medium access control protocol for portable multi-media systems”. Proceedings of the 3rd International Workshop Mobile Multimedia Communication, New Jersey, USA, 25-27 September 1996.
  • Jung ES, Vaidya NH. “An energy efficient MAC protocol for wireless LANs”. Proceedings of the IEEE International Conference on Computer Communications, New York, USA, 23-27 June 2002.
  • Woesner H, Ebert JP, Schlager M, Wolisz A. “Power saving mechanisms in emerging standards for wireless LANs: The MAC level perspective”. IEEE Personal Communications, 5(3), 40-48, 1998.
  • Monks J, Bharghavan V, Hwu W. “A power controlled multiple access protocol for wireless packet networks”. Proceedings of the IEEE International Conference on Computer Communications, Alaska, USA, 22-26 April 2001.
  • Ramanathan R, Hain RR. “Topology control of multi-hop wireless networks using transmit power adjustment”. Proceedings of the IEEE International Conference on Computer Communications, Tel Aviv, Israel, 26-30 March 2000.
  • Rodoplu V, Meng TH. “Minimum energy mobile wireless networks”. IEEE Journal on Selected Areas in Communications, 17(8), 1338-1344, 1999.
  • Wieselthier JE, Nguyen GD, Ephremides A. “On the construction of energy-efficient broadcast and multicast trees in wireless networks”. Proceedings of the IEEE International Conference on Computer Communications, Tel Aviv, Israel, 26-30 March 2000.
  • Wieselthier JE, Nguyen GD, Ephremides A. “Resource- limited energy efficient wireless multicast of session traffic”. Hawaii International Conference on Systematic Science, Hawaii, USA, 3-6 January 2001.
  • Ebert JP, Stremmel B, Wiederhold E, Wolisz A. “An energy-efficient power control approach for WLANs”. Journal of Communications and Networks, 2(3), 197-206, 2000.
  • Nasipuri A, Zhuang J, Das SR. “A multichannel CSMA MAC protocol for multi-hop wireless networks”. IEEE Wireless Communications and Networking Conference, Louisiana, USA, 21-24 September 1999.
  • Nasipuri A, Das SR. “Multichannel CSMA with signaling power-based channel selection for multi-hop wireless networks”. Proceedings of the IEEE Vehicular Technology Conference, Boston, USA, 15-18 May 2000.
  • Jain N, Das SR, Nasipuri A. “A multichannel CSMA MAC protocol with receiver-based channel selection for multi-hop wireless networks”. Proceedings of the 9th International Conference Computer Communications and Networks, Arizona, USA, 15-17 October 2001.
  • Ephremides A, Wieselthier J, Baker D. “A design concept for reliable mobile radio networks with frequency hopping signaling”. Proceedings of the IEEE, 75(1), 56-73, 1987.
  • Pursley M. “The role of spread spectrum in packet radio networks”. Proceedings of the IEEE, 75(1), 116-134, 1987.
  • Chalmers D, Slomon M. “A survey of quality of service in mobile computing environments”. IEEE Communications Surveys & Tutorials, 2(2), 2-10, 1999.
  • Veres A, Campbell AT, Barry M, Sun LH. “Supporting service differentiation in wireless packet networks using distributed control”. IEEE Journal on Selected Areas in Communications, 19(10), 2081-2093, 2001.
  • Gerla M, Tzu J, Tsai C. “Multi-cluster, mobile, multimedia radio network”. Wireless Networks, 1(3), 255-265, 1995.
  • Lin CR, Gerla M. “Adaptive clustering for mobile wireless networks”. IEEE Journal on Selected Areas in Communications, 15(7), 1265-1275, 1997.
  • Lin CH. A Multi-Hop Adaptive Mobile Multimedia Network: Architecture and Protocols. Doctoral Dissertation, University of California, Los Angeles, United States, 1996.
  • Deng DJ, Chang RS. “A priority scheme for IEEE 802.11 DCF access method”. IEICE Transactions on Communications, E82-B(1), 96-102, 1999.
  • Choi S, Pedro J, Shankar NS, Mangold S. “IEEE 802.11e contention-based channel access (EDCF) performance evaluation”. Proceedings of the International Conference on Communications, Alaska, USA, 11-15 May 2003.
  • Mangold S, Choi S, May P, Klein O, Hiertz G, Stibor L. “IEEE 802.11e wireless LAN for quality of service”. Proceedings of the European Wireless, Florence, Italy, 25-28 February 2002.
  • Lin CR, Gerla M. “MACA/PR: An asynchronous multimedia multi-hop wireless network”. Proceedings of The IEEE Conference on Computer Communications, Kobe, Japan, 7-12 April 1997.
  • Vaidya NH, Bahl S, Gupta S. “Distributed fair scheduling in a wireless LAN”. 6th Annual International Conference on Mobile Computing and Networking, Boston, USA, 6-11 August 2000.
  • Golestani SJ. “A self-clocked fair queuing scheme for broadband applications”. Proceedings of The IEEE Conference on Computer Communications, Toronto, Canada, 12-16 June 1994.
  • Garces R, Garcia-Luna-Aceves JJ. “Near-optimum channel access protocol based on incremental collision resolution and distributed transmission queues”. IEEE Conference on Computer Communications, San Francisco, USA, 29 March-2 April 1998.
  • Nandagopal T, Kim TE, Gao X, Bharghavan V. “Achieving MAC layer fairness in wireless packet networks”. Proceedings of The International Conference on Mobile Computing and Networking, Boston, USA, 6-11 August 2000.
  • Aad I, Castelluccia C. “Differentiation mechanisms for IEEE 802.11”. IEEE Conference on Computer Communications, Alaska, USA, 22-26 April 2001.
  • Weinmiller J, Woesner H, Ebert JP, Wolisz A. “Analyzing and tuning the distributed coordination function in the IEEE 802.11 DFW MAC draft Standard”. 1996.
  • Cali F, Conti M, Gregori E. “Dynamic tuning of the IEEE 802.11 protocol to achieve a theoretical throughput limit”. IEEE/ACM Transactions on Networking, 8(6), 785-799, 2000.
Toplam 70 adet kaynakça vardır.

Ayrıntılar

Konular Mühendislik
Bölüm Derleme
Yazarlar

Muhammed Enes Bayrakdar

Ali Çalhan

Yayımlanma Tarihi 28 Nisan 2017
Yayımlandığı Sayı Yıl 2017 Cilt: 23 Sayı: 2

Kaynak Göster

APA Bayrakdar, M. E., & Çalhan, A. (2017). Kablosuz bilişsel radyo ağlarında ikincil kullanıcılar için ortam erişim kontrol protokolleri. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi, 23(2), 149-164.
AMA Bayrakdar ME, Çalhan A. Kablosuz bilişsel radyo ağlarında ikincil kullanıcılar için ortam erişim kontrol protokolleri. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi. Nisan 2017;23(2):149-164.
Chicago Bayrakdar, Muhammed Enes, ve Ali Çalhan. “Kablosuz bilişsel Radyo ağlarında Ikincil kullanıcılar için Ortam erişim Kontrol Protokolleri”. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi 23, sy. 2 (Nisan 2017): 149-64.
EndNote Bayrakdar ME, Çalhan A (01 Nisan 2017) Kablosuz bilişsel radyo ağlarında ikincil kullanıcılar için ortam erişim kontrol protokolleri. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi 23 2 149–164.
IEEE M. E. Bayrakdar ve A. Çalhan, “Kablosuz bilişsel radyo ağlarında ikincil kullanıcılar için ortam erişim kontrol protokolleri”, Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi, c. 23, sy. 2, ss. 149–164, 2017.
ISNAD Bayrakdar, Muhammed Enes - Çalhan, Ali. “Kablosuz bilişsel Radyo ağlarında Ikincil kullanıcılar için Ortam erişim Kontrol Protokolleri”. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi 23/2 (Nisan 2017), 149-164.
JAMA Bayrakdar ME, Çalhan A. Kablosuz bilişsel radyo ağlarında ikincil kullanıcılar için ortam erişim kontrol protokolleri. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi. 2017;23:149–164.
MLA Bayrakdar, Muhammed Enes ve Ali Çalhan. “Kablosuz bilişsel Radyo ağlarında Ikincil kullanıcılar için Ortam erişim Kontrol Protokolleri”. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi, c. 23, sy. 2, 2017, ss. 149-64.
Vancouver Bayrakdar ME, Çalhan A. Kablosuz bilişsel radyo ağlarında ikincil kullanıcılar için ortam erişim kontrol protokolleri. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi. 2017;23(2):149-64.





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