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Abstract

The SWAN (Seamless Wireless ATM Network) system provides end-to-end ATM connectivity to mobile end-points equipped with RF transceivers for wireless access. Users carrying laptops and multimedia terminals can seamlessly access multimedia data over a backbone wired network while roaming among room-sized cells that are equipped with basestations. The research focus on how to make ATM mobile and wireless distinguishes SWAN from present day mobile-IP based wireless LANs. This paper describes the design and implementation of the ATM-based wireless last-hop, the primary components of which are the air-interface control, the medium access control, and the low-level ATM transport and signalling.

The design is made interesting by its interplay with ATM; in particular, by the need to meaningfully extend over the wireless last-hop the service quality guarantees made by the higher level ATM layers. The implementation, on the other hand, is an example of hardware-software co-design and partitioning. A key component of the wireless hop implementation is a custom designed reconfigurable wireless adapter card called FAWN (Flexible Adapter for Wireless Networking) which is used at the mobiles as well as at the basestations. The functionality is partitioned three-way amongst dedicated reconfigurable hardware on FAWN, embedded firmware on FAWN, and device driver software on a host processor. Using an off-the-shelf 625 Kbps per channel radio, several of which can be supported by a single FAWN adapter to provide multiple channels, per-channel unidirectional TCP data throughput of 227 Kbps (or, 454 Kbps bidirectional) and per-channel unidirectional native ATM data throughput of 210 Kbps (or, 420 Kbps bidirectional) have been obtained.

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References

  1. P. Agrawal, A. Asthana, M. Cravatts, E. Hyden, P. Krzyzanowski, P. Mishra, B. Narendran, M. Srivastava, and J. Trotter, “A testbed for mobile networked computing,” inProceedings of 1995 IEEE International Conference on Communications (ICC'95), June 1995.

  2. B. Tuch, “Development of WaveLAN, an ISM band wireless LAN,”AT & T Technical Journal, pp. 27–37, July/Aug. 1993.

  3. K. Keeton, B. Mah, S. Seshan, R. Katz, and D. Ferrari, “Providing connection-oriented services to mobile hosts,” inProceedings of the USENIX Symposium on Mobile and Location-Independent Computing, Cambridge, Massachusetts, Aug. 1993, pp. 83–102.

  4. B. Schilit, N. Adams, and R. Want, “Context-aware computing applications,”Workshop on Mobile Computing Systems and Applications, Dec. 1994.

  5. P.P. Mishra and M.B. Srivastava, “Network protocols for wireless multimedia access,”Proceedings of Workshop on Principles of Multimedia Information Systems, Washington, D.C., Sept. 1995, pp. 28–30.

  6. V. Bharghavan, A. Demers, S. Shenker, and L. Zhang, “MACAW: A media access protocol for wireless LANs,” inProceedings of SIGCOMM'94, 1994.

  7. K.-C. Chen, “Medium access control of wireless LANs for mobile computing,”IEEE Network, pp. 50–63, Sept./Oct. 1994.

  8. W. Diepstraten, G. Ennis, and P. Belanger, “Distributed foundation wireless medium access control,”IEEE P802 11-93/190.

  9. P. Karn, “MACA—A, new channel access method for packet radio,” inARRL/CRRL Amateur Radio 9th Computer Networking Conference, Sept. 1990.

  10. D.P. Chandler, A.P. Hulbert, and M.J. McTiffin, “An ATM—CDMA air interface for mobile personal communications,” inProceedings of PIMRC'94, 1994.

  11. D. Raychaudhuri and N.D. Wilson, “ATM-based transport architecture for multiservices wireless personal communication networks,” inIEEE Journal on Selected Areas in Communications, Vol. 12, No. 8, pp. 1401–1414, Oct. 1994.

  12. Condon et al., “Rednet: A wireless ATM local area network using infrared links,” inProceedings of the First International Conference on Mobile Computing and Networking, Nov. 1995.

  13. K.Y. Eng et al, “BAHAMA: A broadband ad-hoc wireless ATM local area network,” inProceedings of 1995 IEEE International Conference on Communications (ICC'95), June 1995, pp. 1216–1223.

  14. L. French and D. Raychaudhuri, “The WATMnet system: Rationale, architecture, and implementation,” inProceedings of IEEE Computer Communication Workshop, pp. 18–20, 1995.

  15. J. Porter and A. Hopper, “An overview of the ORL wireless ATM system,”,IEEE ATM Workshop, Washington D.C., Sept. 1995.

  16. P.P. Mishra and M.B. Srivastava, “Call establishment and rerouting in mobile computing networks,”Private Communication, Sept. 1994.

  17. J. Trotter and M. Cravatts, “A wireless adapter architecture for mobile computing,” inProceedings of 2nd USENIX Symposium on Mobile and Location Independent Computing, April 1995.

  18. A. Asthana, M. Cravatts, and P. Krzyzanowski, “An indoor wireless system for personalized shopping assistance,” inProceedings of the IEEE Workshop on Mobile Computing Systems and Applications, Dec. 1994.

  19. M.B. Srivastava, “Medium access control and air-interface subsystem for an indoor wireless ATM network,” inProceedings of the Ninth International Conference on VLSI Design, Bangalore, India, Jan. 1996.

  20. M.B. Srivastava, B.C. Richards, and R.W. Brodersen, “System level hardware module generation,”IEEE Transactions on VLSI Systems, March 1995.

  21. B. Barringer, T. Burd et al., “Inforpad: A system design for portable multimedia access,” inWireless 1994, Calgary, Canada, July 1994.

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Agrawal, P., Hyden, E., Krzyzanowski, P. et al. Hardware-software architecture of the SWAN Wireless ATM network. J VLSI Sign Process Syst Sign Image Video Technol 13, 87–104 (1996). https://doi.org/10.1007/BF01130400

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