Deployment Issues in Enterprise Wireless LANs
暂无分享,去创建一个
[1] J. Zoeliner,et al. A Breakthrough in Spectrum Conserving Frequency Assignment Technology , 1977, IEEE Transactions on Electromagnetic Compatibility.
[2] Roman Kuchkuda,et al. An introduction to ray tracing , 1993, Comput. Graph..
[3] J. Tajima,et al. A strategy for flexible channel assignment in mobile communication systems , 1988 .
[4] T. Rappaport. Characterization of UHF multipath radio channels in factory buildings , 1989 .
[5] T.S. Rappaport,et al. The wireless revolution , 1991, IEEE Communications Magazine.
[6] Davood Molkdar,et al. Review on radio propagation into and within buildings , 1991 .
[7] Theodore S. Rappaport,et al. 900 MHz path loss measurements and prediction techniques for in-building communication system design , 1991, [1991 Proceedings] 41st IEEE Vehicular Technology Conference.
[8] Theodore S. Rappaport,et al. A ray tracing method for predicting path loss and delay spread in microcellular environments , 1992, [1992 Proceedings] Vehicular Technology Society 42nd VTS Conference - Frontiers of Technology.
[9] S. Seidel,et al. 914 MHz path loss prediction models for indoor wireless communications in multifloored buildings , 1992 .
[10] I Chih-Lin,et al. Local packing-distributed dynamic channel allocation at cellular base station , 1993, Proceedings of GLOBECOM '93. IEEE Global Telecommunications Conference.
[11] Reinaldo A. Valenzuela. A ray tracing approach to predicting indoor wireless transmission , 1993, IEEE 43rd Vehicular Technology Conference.
[12] H. Hashemi,et al. The indoor radio propagation channel , 1993, Proc. IEEE.
[13] Zygmunt J. Haas,et al. Simulation study of the capacity bounds in cellular systems , 1994, 5th IEEE International Symposium on Personal, Indoor and Mobile Radio Communications, Wireless Networks - Catching the Mobile Future..
[14] Rainer Gahleitner,et al. Prediction of indoor radio propagation with the ray splitting model including edge diffraction and rough surfaces , 1994, Proceedings of IEEE Vehicular Technology Conference (VTC).
[15] T. Huschka. Ray tracing models for indoor environments and their computational complexity , 1994, 5th IEEE International Symposium on Personal, Indoor and Mobile Radio Communications, Wireless Networks - Catching the Mobile Future..
[16] Brian W. Kernighan,et al. WISE design of indoor wireless systems: practical computation and optimization , 1995 .
[17] Theodore S. Rappaport,et al. Propagation measurements and models for wireless communications channels , 1995, IEEE Commun. Mag..
[18] James F. Boyce,et al. Tabu Search for the Radio Links Frequency Assignment Problem , 1995 .
[19] Pierre Kuonen,et al. Radio Network Planning with Combinatorial Optimization Algorithms , 1996 .
[20] Anthony Ephremides,et al. Spectral efficiency and optimal base placement for indoor wireless networks , 1996, IEEE J. Sel. Areas Commun..
[21] G. G. Coghill,et al. Channel assignment through evolutionary optimization , 1996 .
[22] Theodore S. Rappaport,et al. Wireless communications - principles and practice , 1996 .
[23] Stephen Hurley,et al. A tabu search algorithm for frequency assignment , 1996, Ann. Oper. Res..
[24] Manuel Garcia Sanchez,et al. Human operator effect on wide-band radio channel characteristics , 1997 .
[25] Theodore S. Rappaport,et al. An advanced 3D ray launching method for wireless propagation prediction , 1997, 1997 IEEE 47th Vehicular Technology Conference. Technology in Motion.
[26] F.M. Landstorfer,et al. Field strength prediction in indoor environments with neural networks , 1997, 1997 IEEE 47th Vehicular Technology Conference. Technology in Motion.
[27] F.M. Landstorfer,et al. Intelligent ray tracing-a new approach for field strength prediction in microcells , 1997, 1997 IEEE 47th Vehicular Technology Conference. Technology in Motion.
[28] S. Fortune,et al. Indoor propagation prediction accuracy and speed versus number of reflections in image-based 3-D ray-tracing , 1998, VTC '98. 48th IEEE Vehicular Technology Conference. Pathway to Global Wireless Revolution (Cat. No.98CH36151).
[29] Margaret H. Wright,et al. Optimization methods for base station placement in wireless applications , 1998, VTC '98. 48th IEEE Vehicular Technology Conference. Pathway to Global Wireless Revolution (Cat. No.98CH36151).
[30] Kurt Tutschku,et al. Demand-based radio network planning of cellular mobile communication systems , 1998, Proceedings. IEEE INFOCOM '98, the Conference on Computer Communications. Seventeenth Annual Joint Conference of the IEEE Computer and Communications Societies. Gateway to the 21st Century (Cat. No.98.
[31] Martin Grötschel,et al. Frequency assignment in cellular phone networks , 1998, Ann. Oper. Res..
[32] Jens Zander,et al. A body-shadowing model for indoor radio communication environments , 1998 .
[33] F.M. Landstorfer,et al. Dominant paths for the field strength prediction , 1998, VTC '98. 48th IEEE Vehicular Technology Conference. Pathway to Global Wireless Revolution (Cat. No.98CH36151).
[34] Kurt Tutschku,et al. Interference minimization in wireless communication systems by optimal cell site selection , 1999 .
[35] Binhong Li,et al. A new indoor ray-tracing propagation prediction model , 1999, 1999 International Conference on Computational Electromagnetics and its Applications. Proceedings (ICCEA'99) (IEEE Cat. No.99EX374).
[36] G. Wolfle,et al. A Fast and Enhanced Ray Optical Propagation Model for Indoor and Urban Scenarios, Based on an Intelligent Preprocessing of the Database , 1999 .
[37] El-Ghazali Talbi,et al. A multiobjective genetic algorithm for radio network optimization , 2000, Proceedings of the 2000 Congress on Evolutionary Computation. CEC00 (Cat. No.00TH8512).
[38] Rudolf Mathar,et al. Optimum positioning of base stations for cellular radio networks , 2000, Wirel. Networks.
[39] Andrew T. Campbell,et al. IP micro-mobility protocols , 2000, MOCO.
[40] Masao Nakagawa,et al. Optimal access point placement in simultaneous broadcast system using OFDM for indoor wireless LAN , 2000, 11th IEEE International Symposium on Personal Indoor and Mobile Radio Communications. PIMRC 2000. Proceedings (Cat. No.00TH8525).
[41] Mahmoud Naghshineh,et al. Channel assignment schemes for cellular mobile telecommunication systems: A comprehensive survey , 2000, IEEE Communications Surveys & Tutorials.
[42] F. M. Landstorfer,et al. Extensions to the field strength prediction technique based on dominant paths between transmitter and receiver in indoor wireless communications , 2000 .
[43] Michael J. Neve,et al. Optimisation strategy for wireless communications system planning using linear programming , 2001 .
[44] Christos Voudouris. Solving the Radio Link Frequency Assignment Problem using Guided Local Search , 2001 .
[45] Eylem Ekici,et al. Multi-Tier Cellular Network Dimensioning , 2001, Wirel. Networks.
[46] David A. Wagner,et al. Intercepting mobile communications: the insecurity of 802.11 , 2001, MobiCom '01.
[47] Alex Hills,et al. Large-scale wireless LAN design , 2001, IEEE Commun. Mag..
[48] Sunghyun Choi,et al. IEEE 802.11e Wireless LAN for Quality of Service , 2001 .
[49] Martin Grötschel,et al. Frequency planning and ramifications of coloring , 2002, Discuss. Math. Graph Theory.
[50] William A. Arbaugh,et al. An Initial Security Analysis of the IEEE 802.1X Standard , 2002 .
[51] Dan Dobkin,et al. Indoor propagation issues for wireless LANs , 2002 .
[52] M. Unbehaun,et al. Coverage planning for outdoor wireless LAN systems , 2002, 2002 International Zurich Seminar on Broadband Communications Access - Transmission - Networking (Cat. No.02TH8599).
[53] Matthew S. Gast,et al. 802.11 Wireless Networks: The Definitive Guide , 2002 .
[54] Clifford A. Shaffer,et al. GLOBAL OPTIMIZATION OF TRANSMITTER PLACEMENT FOR INDOOR WIRELESS COMMUNICATION SYSTEMS , 2002 .
[55] Harilaos G. Sandalidis,et al. Heuristics for solving fixed-channel assignment problems , 2002 .
[56] Sujata Banerjee,et al. Optimization of indoor wireless communication network layouts , 2002 .
[57] Aleksandar Neskovic,et al. Macrocell electric field strength prediction model based upon artificial neural networks , 2002, IEEE J. Sel. Areas Commun..
[58] Lata Narayanan,et al. Channel assignment and graph multicoloring , 2002 .
[59] Jeannette Janssen. Channel assignment and graph labeling , 2002 .
[60] Virtual Bridged,et al. IEEE Standards for Local and Metropolitan Area Networks: Specification for 802.3 Full Duplex Operation , 1997, IEEE Std 802.3x-1997 and IEEE Std 802.3y-1997 (Supplement to ISO/IEC 8802-3: 1996/ANSI/IEEE Std 802.3, 1996 Edition).
[61] Albert Y. Zomaya,et al. The use of the simulated annealing algorithm for channel allocation in mobile computing , 2003, Wirel. Commun. Mob. Comput..
[62] AutoCell—The Self-Organizing WLAN , 2003 .
[63] Clifford A. Shaffer,et al. Globally optimal transmitter placement for indoor wireless communication systems , 2004, IEEE Transactions on Wireless Communications.
[64] G. E. Zein,et al. Influence of the human activity on wide-band characteristics of the 60 GHz indoor radio channel , 2004, IEEE Transactions on Wireless Communications.
[65] Adi Shamir. An Introduction to Radio Waves Propagation : Generic Terms , Indoor Propagation and Practical Approaches to Path Loss Calculations , Including Examples , 2004 .
[66] Heribert Vollmer,et al. The complexity of base station positioning in cellular networks , 2005, Discret. Appl. Math..