1 / 22

OBSS Simulations

OBSS Simulations. Authors:. Date: 2009-04-16. Abstract. We have performed some OBSS experiments using our 802.11 simulator. This presentation shows some of our results. Simulation Parameters. Home Detached house 8m x 5.5m x 4.8m, 2 floors, 4 rooms per floor

calvin
Download Presentation

OBSS Simulations

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. OBSS Simulations Authors: Date: 2009-04-16 Alex Ashley, NDS Ltd

  2. Abstract We have performed some OBSS experiments using our 802.11 simulator. This presentation shows some of our results. Alex Ashley, NDS Ltd

  3. Simulation Parameters • Home • Detached house 8m x 5.5m x 4.8m, 2 floors, 4 rooms per floor • Outer walls: 2 layers of Brick, Plaster • Inner Walls: 2 sheets drywall* • Floors: Wood, Plaster • Distance between homes varied from 300m to 1m • 802.11 parameters • 1 AP and 5 stations per home, randomly placed • 11bg mode, European regulatory channel & power rules, no TPC • EDCA, no block ACK, no DLS • 11n Channel model B + DARPA building material losses • Video • 2 x 3Mbps video, streamed using unicast UDP *AKA: gypsum board, wallboard, plasterboard, gib, rock lath, Sheetrock, gyproc Alex Ashley, NDS Ltd

  4. Overlapping Networks 100m 100 m Alex Ashley, NDS Ltd

  5. 100 m Alex Ashley, NDS Ltd

  6. 100 m Alex Ashley, NDS Ltd

  7. 80 m Alex Ashley, NDS Ltd

  8. 60 m Alex Ashley, NDS Ltd

  9. 40 m Alex Ashley, NDS Ltd

  10. 20 m Alex Ashley, NDS Ltd

  11. 1 m Alex Ashley, NDS Ltd

  12. Adding More Homes & Channels Alex Ashley, NDS Ltd

  13. 100 m Alex Ashley, NDS Ltd

  14. 100 m Alex Ashley, NDS Ltd

  15. 80 m Alex Ashley, NDS Ltd

  16. 60 m Alex Ashley, NDS Ltd

  17. 40 m Alex Ashley, NDS Ltd

  18. 20 m Alex Ashley, NDS Ltd

  19. 1 m Alex Ashley, NDS Ltd

  20. Video Results 300m No dropped packets 1m Frequent dropped packets Alex Ashley, NDS Ltd

  21. Conclusions • If max transmit power is used, signals are above CCA threshold for a long range • However, BSS need to be reasonably close before reliable information exchange possible • Implies OBSS chains are more complex than “nodes with which communication is possible” • Video streams take up a lot of air time • However good our OBSS solution is, there is still a finite amount of capacity! • Solving the ‘n’ overlap problem is probably only useful in theory, because we run out of capacity after 2 or 3 overlaps! Alex Ashley, NDS Ltd

  22. References • Safaai-Jazi A, et al, Ultra-wideband Propagation Measurements and Channel Modelling, DARPA NETEX Program, Report on “Through-the Wall Propagation and Material Characterization”, Virginia Polytechnique Institute and State University, Blacksburg, Virginia, USA, November 18 2002. • 11n channel models - 11-03-0940r4 Alex Ashley, NDS Ltd

More Related