ΔΙΕΘΝΗΣ ΑΝΑΓΝΩΡΙΣΗ
A. Ετερο-αναφορές (Cross References) σε Δημοσιευμένες Ερευνητικές Εργασίες
(Σύνολο Ετερο-αναφορών: εκατόν είκοσι μία (121))-(Μέσω της Βιβλιογραφικής Βάσης Δεδομένων Scopus: ενενήντα τέσσερεις (94)
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29) V.K.Dwivedi and G. Singh, A NOVEL MGF BASED ANALYSIS OF CHANNEL CAPACITY OF GENERALIZED-K FADING WITH MAXIMAL-RATIO COMBINING DIVERSITY, Progress In Electromagnetics Research C, Vol. 26, pp. 153-165, 2012.
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45) Khatalin, Sari Mohammad Channel capacity of adaptive transmission in fading environment with diversity combining techniques,.The University of Texas at Dallas, PhD, 2004.
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61) Ram Parikkal Krishnamurthy, “Rate Priorized Power Adaptation: A throughput Maximizing Power Conservation Algorithm For IEEE 802.11 WLANS”, M.Sc. Thesis, Department of Electrical and Computer Engineering, National University of Signapore, 2009.
62) Zhonghui Chen, Yiwen Xu, Weixing Wang and Xinxin Feng, “Applications of momentary Fourier transform in frequency shift keying signal demodulation”, International Journal of Communication Systems, 27 (10), pp. 2022-2029, 2012.
63) E.S.Hassan, “Performance Enhancement of Continuous-Phase Modulation Based OFDM Systems Using Chaotic Interleaving”, WSEAS Transactions on Systems, Issue 1, vol.12, pp.1-10, Jan 2013.
64) G.Senthilkumar and R.Amutha, “Capacity enhancement of MCCDMA using orthogonal complete complementary codes and adaptive constellations”, Scientific Research and Essays, Vol 9(6), pp.153-161, 30 March 2014.
65) Xia, Y., Song, Z., Lu, Z., Fu, Q., “Target detection in compound-gaussian clutter with adaptive OFDM radar”, 2016, Progress In Electromagnetics Research M, 45, 2016, pp. 91-99.
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79) Y.Gan and Y.Wu, “Multiple Rayleigh channels modeling based on sum-of sinusoids model“, International Journal of Communication Systems, 27 (11), pp. 2997-3012, 2014
80) Walid A. Al-Hussaibi, “Signal design for higher capacity correlated fading signature multiple access”, Wireless Networks, 20 (8), pp. 2275-2285, May 2014.
81) Dazhi Piao and Lingyu Yang, “MIMO Capacity Comparisons of Three Types of Colocated Dual-Polarized Loop Antennas”, Progress In Electromagnetics Research C, Vol. 54, 41–48, 2014.
82) El Azhari, M., Nedil, M., Mabrouk, I.B., Ghanem, K., Talbi, L., “Characterization of an off-body channel at 2.45GHz in an underground mine environment”, Progress In Electromagnetics Research M, Volume 43, 2015, pp. 91-100
83) M.Kazemi and H.Aghaeinia, “A lower bound on achievable rate of MRT precoding in multicell multiuser massive MIMO networks with Rician flat fading”, International Journal of Communication Systems, in press April 2016.
84) Xuan Hui Wu, Douglas Smith and Thomas Yang, “MIMO Antennas for a Terrestrial Point-to-Point Wireless Link: From the Optimum Antenna Spacing to a Compact Array”, Progress In Electromagnetics Research B, vol. 67, 59–70, 2016
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87) C.Woo, S.Lim and K.Ko, “Performance Comparison of dual-hop hybrid decode-or-amplify-forward relay schemes for M-ary quadrature amplitude modulation burst transmission over Rayleigh fading channels, International Journal of Communication Systems, in press Jan.2017.
88) X.Luo, J.Yuan and K.Chen, “Compact and Low Profile MIMO Antenna for Dual-WLAN-Band Access Points”, Progress In Electromagnetics Research Letters, vol.67, pp.7-102, 2017.
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90) X.Chen, Y.Le, L.Zhang and J.Qiao, “Channel Modeling and analysis for multipolarized massive MIMO systems, International Journal of Communication Systems, in press June 2018.
91) Marko M. Smilić, Branimir S. Jakšić, Dejan N. Milić, Stefan R. Panić, Petar Ć. Spalević, “CHANNEL CAPACITY OF THE MACRODIVERSITY SC SYSTEM IN THE PRESENCE OF KAPPA-MU FADING AND CORRELATED SLOW GAMMA FADING”, FACTA UNIVERSITATIS Series: Electronics and Energetics Vol. 31, No 3, September 2018, pp. 447-460.
92) R.S.Bhadade, S.P.Mahajan, Jayant Dhole and Sourabh Khujat, “Tri-band Dual Polarized 2 × 2 MIMO Antenna for Wireless Communications, International Conference on Intelligent Data Communication Technologies and Internet of Things (ICICI) 2018, January 2019.
93) Hari Shankar, Ankush Kansal, “MGF‐based analysis of κ‐μ/gamma composite fading model for indoor off body communication”, Transactions on Emerging Telecommunications Technologies, 30 (5) e 3566, January 2019.
94) Subhanrao Bhadade, R., Padmakar Mahajan, S. “Circularly polarized 4×4 MIMO antenna for WLAN applications”, Electromagnetics, 39 (5), pp. 325-342, 2019.
95) Bing-Jian Niu, Jie-Hong Tan, “SIW Cavity MIMO Antenna Using Hybrid Boundaries and Anti-symmetric U-shaped Slots”, Progress In Electromagnetics Research Letters, in press, August 2019.
96) Ahmed M Elshirkasi, Adullah Azremi, Al-Hadi, Rizwan Khan, “A Study of Antenna Elements Configuration and User's Hand Effects on a Four-Element Dual-band Sub-6 GHz MIMO Antenna”, August 2019, Progress In Electromagnetics Research C 95: pp. 29-46.
97) Tanmoy Kundu, Iti Saha Misra and Salil Kumar Sanyal, “Developing a 3D Beam Former Model with Varied MIMO Channels”, February 2019, DOI: 10.1109/ICACCP.2019.888297 2019 Second International Conference on Advanced Computational and Communication Paradigms (ICACCP)
98) Kazuki Maruta, “Frequency Domain Backoff for Continuous Beamforming Space Division Multiple Access on Massive MIMO Wireless Backhaul Systems”, Journal of Communications Software and Systems 16(1), January 2020.
99) Marko Smilic, Dejan Milic, Zorica Nikolic, Petar Spalevic, Nenad Stanojevic, “Normalized Capacity of Free Space Optical Link in Malaga Channel with Pointing Error using Power and Rate Adaptation Technique”, 2019 14th International Conference on Advanced Technologies, Systems and Services in Telecommunications (TELSIKS), October 2019, DOI: 10.1109/TELSIKS46999.2019.9002234.
100) AHMED MOHAMED ELSHIRKASI, AZREMI ABDULLAH AL-HADI,PING JACK SOH, MOHD FAIS MANSOR, RIZWAN KHAN, XIAOMING CHEN and PRAYOOT AKKARAEKTHALIN, “Performance Study of a MIMO Mobile Terminal With Up to 18 Elements Operating in the Sub-6 GHz 5G Band With User Hand”, IEEE Access, 8 pp. 28164-28177, Jan. 2020.\\
Π9. P.Varzakas, “Optimizing Processing Gain of a Cellular DS/FFH-CDMA Rayleigh Fading System”,Proceedings of the10th IEEE International Symposium on Spread Spectrum Techniques and Applications (ISSSTA) 2008, Creating New Dimensions in the Wireless World, Bologna, Italy, 25-28 August 2008, pp.523-527.
101) MA Wan-zhi, WANG Jun, TANG You-xi, Upper processing gain bound of the spreading signal in multipath fading channels”, Journal on Communications, vol.33, no.3, 2012, pp.137-145.
Π8.P.Varzakas, “On the Optimum Processing Gain for a Hybrid DS/FFH-CDMA Cellular System over Rayleigh Fading Channels", International Journal of Communication Systems, vol.24, no.7, July 2011, pp.902-910.
102) O.Bayat, “Intersymbol interference cancellation in CDMA 1xEVDO network”, International Journal of Communication Systems, 27 (10), pp. 1553-1560, 2014.
103) V.Saritha and V.Madhu Viswanatham, "An efficient cross layer based channel reservation method for vehicular networks", International Journal of Communication Systems, vol. 27, issue 12, pp. 4249-4264, Dec. 2014.
Π7. P.Varzakas, "Channel Capacity per user in a Power and Rate Adaptive Hybrid DS/FFH-CDMA Cellular System over Rayleigh Fading Channels", International Journal of Communication Systems, vol. 25, no.7, pp.943-952, July 2012.
104) L.Tan, Z.Zhu, W.Zhang and G.Chen "An optimal solution to resource allocation among soft QoS traffic in wireless network, International Journal of Communication Systems, 27 (11), pp. 2642-2657, 2014.
105) Yuxi Liu, Ju Liu, Weidong Guo, Lina Zheng and Peng Chen, "A single transmission selection scheme for downlink distributed antenna system in multicell environment", International Journal of Communication Systems, 27 (12), pp.3748-3758, 2014.
106) R.Sum and D.W.Matolak, “Path loss and delay spread for the stairwell channel at 5GHz”, International Journal of Communication Systems, (in press Jan. 2015).
107) Y.Liu, S.Lv and P.Chen, “Capacity of SSTS for downlink-distributed antenna systems in multicell environment”, International Journal of Communication Systems, 28 (16), pp. 2099-2111, 2015.
108) Liansheng Tan, Resource Allocation and Performance Optimization in Communication Networks and the Internet, CRC Press, Taylor & Francis Group, 2017.
109) Dong-Hun Lee, Heung-Gyoon Ryu, “Relative Capacity of the Spectrum-Overlapped DS-CDMA System using the Lanczos Chip Waveform”, J Electromagn Eng Sci. 2002;2(1):pp.1-4.
Π6. P.Varzakas, "Optimum processing gain for a hybrid direct sequence/slow frequency hopping code division multiple access cellular system over Rayleigh fading channels: the direct sequence/slow frequency hopping code division multiple access case", International Journal of Communication Systems vol. 25, no.8, pp.1034-1043, Aug.2012
110) V.Saritha and V.Madhu Viswanatham, "An efficient cross layer based channel reservation method for vehicular networks", International Journal of Communication Systems, 27 (12), pp. 4249-4264, 2014.
111) Y.Gan and Y.Wu, “Multiple Rayleigh channels modeling based on sum-of sinusoids model“, International Journal of Communication Systems, 27 (11), pp. 2997-3012, 2014.
Π5. P.Varzakas, "Estimation of Radio Capacity of a Spread Spectrum Cognitive Radio Rayleigh Fading System", ACM Proceedings of the 17th Pan-Hellenic Conference on Informatics with international participation, pp. 63-66, Sept. 19-21, 2013, Thessaloniki, Greece
112) F-M. Schaefer and R.Kays, "Frequency Hopping for Indoor Fading Channels with Varying Level of Environmental Mobility", IEEE Wireless Communications Letters, vol. 4, Issue 1, Issue 99, pp. 42-45, Oct. 2014.
Π4. P.Varzakas, "Spectral Efficiency Comparison of TDMA and DS-CDMA in Cellular Mobile Radio Systems”, WSEAS Transactions on Communications, vol. 13, pp. 195-200, 2014.
113) DRAGANA KRSTIĆ, MIHAJLO STEFANOVIĆ, VLADETA MILENKOVIĆ, DJOKO BANDJUR, “Level Crossing Rate of Ratio of Product of Two α-k-μ Random Variables and α-k-μ Random Variable”, WSEAS Transactions on Communications, Volume 13, pp. 622-630, 2014.
114) Z.Abdellaoui and M.Benzarti, “Real Time Communication On DDS over FlexRay using SAE Benchmark model”, ICCAD’17, Hammamet, Tunisia, Jan.19-21 2017, pp. 104-109.
Π3. P.Varzakas, "On the Statistics of the Channel Capacity for a DS/FFH-CDMA System”, WSEAS Transactions on Communications, Volume 13, pp. 494-499, 2014.
115) DRAGANA KRSTIĆ, MIHAJLO STEFANOVIĆ, VLADETA MILENKOVIĆ, DJOKO BANDJUR, “Level Crossing Rate of Ratio of Product of Two α-k-μ Random Variables and α-k-μ Random Variable”, WSEAS Transactions on Communications, Volume 13, pp. 622-630, 2014.
Π2.P.Varzakas, "Optimum Radio Capacity Estimation of a Single-Cell Spread Spectrum MIMO System under Rayleigh Fading Conditions,” World Academy of Science, Engineering and Technology, Vol.55, pp.212-215, 2009.
116) Fadhil T Alawe, Mahamod Ismail and Rosdiadee Nordin, “Efficient Node Localization Technique in MIMO Networks using AMABC Optimization Algorithm”, International Journal of Applied Engineering Research ISSN 0973-4562 Volume 11, Number 18 (2016) pp 9350-9358.
Π1. Varzakas, P., Paschos, I., Tselekas, P., Elements of electronics, Diofantos.
117) Dimitrios Kotsifakos George Petrakis Manthos Stavrou Christos Douligeris, “An Online Game for the Digital Electronics Course for Vocational Education and Training (VET) Students”, International Conference on Interactive Collaborative Learning ICL 2018: The Challenges of the Digital Transformation in Education, pp 638-649.
Γ. Διακρίσεις:
1. Προέδρος (Chairman of Seccion) της Συνεδρίας Communications: Wireless & Optical Communications, του διεθνούς Επιστημονικού Συνεδρίου: 13th WSEAS International Conference on Communications, Rodos, Greece, 23-25 July 2009.
2. Member of Editorial Board of The Mediterranean Journal of Electronics and Communications (Μέλος Κύριας Συντακτικής Ομάδας Διεθνούς Επιστημονικού Περιοδικού).
3. Προέδρος της Συνεδρίας (Seccion Chair) 2010 International Conference on Communication and Information Technologies (ICCIT 2010), Paris, France, 28-30 July 2010.
4. Πρόσκληση για κρίση Ερευνητικών Προτάσεων, Εθνικών Προγραμμάτων της Κυβέρνησης της Σερβίας (Invitation for Evaluation of New Serbian National Projects Proposals).
5. Member of the Editorial Board: Journal of Electrical and Electronic Engineering (Science Publishing Group).