Evolution of multiple-access networks - cellular and non-cellular - in historical perspective. Part 3
暂无分享,去创建一个
[1] M. J. Gans,et al. On Limits of Wireless Communications in a Fading Environment when Using Multiple Antennas , 1998, Wirel. Pers. Commun..
[2] A. Viterbi. CDMA: Principles of Spread Spectrum Communication , 1995 .
[3] N. Blaunstein,et al. PREDICTION OF PROPAGATION CHARACTERISTICS IN INDOOR RADIO COMMUNICATION ENVIRONMENTS , 2006 .
[4] Lizhong Zheng,et al. Diversity and multiplexing: a fundamental tradeoff in multiple-antenna channels , 2003, IEEE Trans. Inf. Theory.
[5] A. Wittneben. Basestation modulation diversity for digital simulcast , 1991, [1991 Proceedings] 41st IEEE Vehicular Technology Conference.
[6] Akhilesh Pokhariyal,et al. Interference management and performance analysis of UMTS/HSPA+ femtocells , 2009, IEEE Communications Magazine.
[7] Andreas F. Molisch. Wideband Wireless Digital Communications , 2000 .
[8] N. Blaunstein,et al. Channel capacity in mobile broadband heterogenous networks based femto cells , 2012, 2012 6th European Conference on Antennas and Propagation (EUCAP).
[9] B. Varadarajan,et al. The rate-diversity trade-off for linear space-time codes , 2002, Proceedings IEEE 56th Vehicular Technology Conference.
[10] S. Seidel,et al. 914 MHz path loss prediction models for indoor wireless communications in multifloored buildings , 1992 .
[11] Helmut Bölcskei,et al. Impact of the propagation environment on the performance of space-frequency coded MIMO-OFDM , 2003, IEEE J. Sel. Areas Commun..
[12] J. H. Winters. The diversity gain of transmit diversity in wireless systems with Rayleigh fading , 1998 .
[13] Robert C. Dixon,et al. Spread Spectrum Systems with Commercial Applications , 2008 .
[14] Robert W. Heath,et al. Linear dispersion codes for MIMO systems based on frame theory , 2002, IEEE Trans. Signal Process..
[15] John M. Cioffi,et al. Spatio-temporal coding for wireless communication , 1998, IEEE Trans. Commun..
[16] Siavash M. Alamouti,et al. A simple transmit diversity technique for wireless communications , 1998, IEEE J. Sel. Areas Commun..
[17] Helmut Bölcskei,et al. Characterizing the statistical properties of mutual information in MIMO channels: insights into diversity-multiplexing tradeoff , 2002, Conference Record of the Thirty-Sixth Asilomar Conference on Signals, Systems and Computers, 2002..
[18] C. E. SHANNON,et al. A mathematical theory of communication , 1948, MOCO.
[19] Jack H. Winters,et al. Two signaling schemes for improving the error performance of frequency division duplex (FDD) transmission systems using transmitter antenna diversity , 1994, Int. J. Wirel. Inf. Networks.
[20] Jørgen Bach Andersen,et al. Array gain and capacity for known random channels with multiple element arrays at both ends , 2000, IEEE Journal on Selected Areas in Communications.
[21] Reinaldo A. Valenzuela,et al. Detection algorithm and initial laboratory results using V-BLAST space-time communication architecture , 1999 .
[22] Eitan Altman,et al. An efficient polling MAC for wireless LANs , 2001, TNET.
[23] N. Blaunstein,et al. MIMO capacity in space and time domain for various urban environments , 2011, Proceedings of the 5th European Conference on Antennas and Propagation (EUCAP).
[24] Preben E. Mogensen,et al. A stochastic MIMO radio channel model with experimental validation , 2002, IEEE J. Sel. Areas Commun..
[25] Austin Bailey. Mobile Radio communication , 1948 .
[26] N. Beaunstein. Prediction of cellular characteristics for various urban environments , 1999 .
[27] David Gesbert,et al. From theory to practice: an overview of MIMO space-time coded wireless systems , 2003, IEEE J. Sel. Areas Commun..
[28] Christos G. Christodoulou,et al. Radio Propagation and Adaptive Antennas for Wireless Communication Networks: Terrestrial, Atmospheric, and Ionospheric , 2014 .
[29] Helmut Bölcskei,et al. On the capacity of OFDM-based spatial multiplexing systems , 2002, IEEE Trans. Commun..
[30] Young-Joo Suh,et al. Adaptive polling MAC schemes for IEEE 802.11 wireless LANs , 2003, The 57th IEEE Semiannual Vehicular Technology Conference, 2003. VTC 2003-Spring..
[31] Matthias Patzold,et al. Mobile Fading Channels , 2003 .
[32] Christos G. Christodoulou,et al. Radio Propagation and Adaptive Antennas for Wireless Communication Networks , 2014 .
[33] Helmut Bölcskei,et al. An overview of MIMO communications - a key to gigabit wireless , 2004, Proceedings of the IEEE.
[34] Wei Yu,et al. Distributed multiuser power control for digital subscriber lines , 2002, IEEE J. Sel. Areas Commun..
[35] N. Blaunstein,et al. Channel capacity prediction for femtocell-macrocell deployment strategies in dense urban environments with high layout of users , 2012, 2012 XIII International Symposium on Problems of Redundancy in Information and Control Systems.
[36] Alfred O. Hero,et al. Diversity and degrees of freedom in wireless communications , 2002, 2002 IEEE International Conference on Acoustics, Speech, and Signal Processing.
[37] Henry L. Bertoni,et al. Radio Propagation for Modern Wireless Systems , 1999 .
[38] Gordon L. Stuber,et al. Principles of Mobile Communication , 1996 .
[39] Matthew R. McKay,et al. Adaptive MIMO Transmission for Exploiting the Capacity of Spatially Correlated Channels , 2007, IEEE Transactions on Vehicular Technology.
[40] Marvin K. Simon,et al. Spread Spectrum Communications Handbook , 1994 .
[41] Soung Chang Liew,et al. Solutions to performance problems in VoIP over a 802.11 wireless LAN , 2005, IEEE Transactions on Vehicular Technology.
[42] Robert W. Heath,et al. Switching between diversity and multiplexing in MIMO systems , 2005, IEEE Transactions on Communications.
[43] Gerard J. Foschini,et al. Layered space-time architecture for wireless communication in a fading environment when using multi-element antennas , 1996, Bell Labs Technical Journal.
[44] Daniel Camps-Mur,et al. IEEE 802.11E QoS and power saving features overview and analysis of combined performance [Accepted from Open Call] , 2010, IEEE Wireless Communications.
[45] W. C. Jakes,et al. Microwave Mobile Communications , 1974 .
[46] Alister G. Burr. Modulation and Coding for Wireless Communications , 2001 .
[47] Ronny Yongho Kim,et al. WiMAX femtocell: requirements, challenges, and solutions , 2009, IEEE Communications Magazine.
[48] Andreas F. Molisch,et al. Wireless Communications , 2005 .
[49] A. Robert Calderbank,et al. Space-Time Codes for High Data Rate Wireless Communications : Performance criterion and Code Construction , 1998, IEEE Trans. Inf. Theory.
[50] Jeffrey G. Andrews,et al. Power control in two-tier femtocell networks , 2008, IEEE Transactions on Wireless Communications.
[51] Adam Wolisz,et al. Voice transmission in an IEEE 802.11 WLAN based access network , 2001, WOWMOM '01.
[52] Branka Vucetic,et al. Spread spectrum CDMA systems for wireless communications , 1997 .
[53] Petre Stoica,et al. Space-Time block codes: A maximum SNR approach , 2001, IEEE Trans. Inf. Theory.
[54] N. Blaunstein,et al. Capacity and spectral efficiency of MIMO wireless systems in multipath urban environments with fading , 2006, 2006 First European Conference on Antennas and Propagation.
[55] Nathan Blaunstein. Average field attenuation in the nonregular impedance street waveguide , 1998 .
[56] Eldad Perahia,et al. IEEE 802.11n Development: History, Process, and Technology , 2008, IEEE Communications Magazine.
[57] Babak Hassibi,et al. High-rate codes that are linear in space and time , 2002, IEEE Trans. Inf. Theory.
[58] Ofer Hadar,et al. Optimization of Error Concealment based on analysis of fading types. Part 2: modified and new models of Video Signal Error Concealment. Practical simulations and their results , 2017 .
[59] Ekram Hossain,et al. A novel QoS-aware MAC protocol for voice services over IEEE 802.11-based WLANs , 2009 .
[60] Douglas N. Knisely,et al. Standardization of femtocells in 3GPP2 , 2009, IEEE Communications Magazine.
[61] Jeffrey G. Andrews,et al. Femtocell networks: a survey , 2008, IEEE Communications Magazine.
[62] John G. Proakis,et al. Multiple-antenna diversity techniques for transmission over fading channels , 1999, WCNC. 1999 IEEE Wireless Communications and Networking Conference (Cat. No.99TH8466).
[63] Roger L. Peterson,et al. Introduction to Spread Spectrum Communications , 1995 .
[64] Ofer Hadar,et al. OPTIMIZATION OF ERROR CONCEALMENT BASED ON ANALYSIS OF FADING TYPES. Part 1: Statistical Description of the Wireless Video Channel, Models of BER Determination and Error Concealment of Video Signals , 2017 .
[65] Simon R. Saunders,et al. Antennas and Propagation for Wireless Communication Systems , 1999 .
[66] Helmut Bölcskei,et al. Outdoor MIMO wireless channels: models and performance prediction , 2002, IEEE Trans. Commun..
[67] Nathan Blaunstein,et al. Link budget and radio coverage design for various multipath urban communication links , 2007 .
[68] Nelson Costa,et al. Multiple-input-multiple-output measurements and modeling in Manhattan , 2003, IEEE J. Sel. Areas Commun..
[69] Holger Claussen,et al. On femto deployment architectures and macrocell offloading benefits in joint macro-femto deployments , 2010, IEEE Communications Magazine.
[70] Heechang Kim,et al. WiMAX femtocells: a perspective on network architecture, capacity, and coverage , 2008, IEEE Communications Magazine.
[71] Jie Zhang,et al. OFDMA femtocells: A roadmap on interference avoidance , 2009, IEEE Communications Magazine.
[72] Angel E. Lozano,et al. Effect of antenna separation on the capacity of BLAST in correlated channels , 2000, IEEE Communications Letters.
[73] Sergio Barbarossa,et al. Optimal Linear Precoding Strategies for Wideband Non-Cooperative Systems Based on Game Theory—Part II: Algorithms , 2007, IEEE Transactions on Signal Processing.
[74] P.I. Wells. The attenuation of UHF radio signals by houses , 1977, IEEE Transactions on Vehicular Technology.
[75] Nathan Blaunstein,et al. VHF/UHF wave attenuation in a city with regularly spaced buildings , 1996 .
[76] A. M. Sergeev,et al. Orthogonal Matrices with Symmetrical Structures for Image Processing , 2017 .
[77] Helmut Bölcskei,et al. Performance of multiantenna signaling techniques in the presence of polarization diversity , 2002, IEEE Trans. Signal Process..
[78] T. S. Randhawa,et al. Saturation throughput analysis of IEEE 802.11e enhanced distributed coordination function , 2004, IEEE Journal on Selected Areas in Communications.
[79] A. M. Sergeev. Generalized Mersenne matrices and Balonin’s conjecture , 2014, Automatic Control and Computer Sciences.
[80] Thierry Turletti,et al. A survey of QoS enhancements for IEEE 802.11 wireless LAN , 2004, Wirel. Commun. Mob. Comput..
[81] Jeffrey G. Andrews,et al. Uplink capacity and interference avoidance for two-tier femtocell networks , 2007, IEEE Transactions on Wireless Communications.
[82] Weihua Zhuang,et al. IEEE 802.11e enhancement for voice service , 2006, IEEE Wirel. Commun..
[83] Theodore S. Rappaport,et al. Wireless communications - principles and practice , 1996 .
[84] N. Blaunstein,et al. The Design of Radio Maps in Tokyo City Based on Stochastic Multi-Parametric and Deterministic Ray-Tracing Approaches [Wireless Corner] , 2009, IEEE Antennas and Propagation Magazine.