1 / 14

PHY SIG Frame Structure for IEEE 802.11aj (45GHz)

PHY SIG Frame Structure for IEEE 802.11aj (45GHz). Date: 2015-05 Presenter: Shiwen HE. Authors/contributors:. May 2015. Abstract. The proposal presents physical layer SIG structure for IEEE 802.11 aj (45GHz) in millimeter-wave WLAN communication. Slide 2. Shiwen He, Haiming Wang.

Download Presentation

PHY SIG Frame Structure for IEEE 802.11aj (45GHz)

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. PHY SIG Frame Structure for IEEE 802.11aj (45GHz) Date: 2015-05 Presenter: Shiwen HE Authors/contributors: Shiwen He, Haiming Wang

  2. May 2015 Abstract • The proposal presents physical layer SIG structure for IEEE 802.11 aj (45GHz) in millimeter-wave WLAN communication. Slide 2 Shiwen He, Haiming Wang

  3. May 2015 Background • Challenges of future WLAN • Limited spectrum resources • High-speed data requirements • Features of future WLAN • Large bandwidth • Multiple channel mode • Multi-user • Multi-stream • 45GHz millimeter-wave communication • Digital home appliances • Ultra-high-speed (10Gbps) wireless applications Slide 3 Shiwen He, Haiming Wang

  4. May 2015 Technology Objects • The SIG frame structure try to achieve the following technical goals • Dynamic bandwidth • Multi-stream • Energy efficiency • Scrambler • Single-carrier & Multi-carrier compatible • Dynamic bandwidth Achieving dynamically channel bandwidth selection for 1080MHz BSS to enhance the adaptability in different channel environments and improve spectral efficiency. Slide 4 Shiwen He, Haiming Wang

  5. May 2015 Technology Objects • Multi-stream Achieve a multi-stream control to obtain the multiplexing gain. • Energy efficient communication Achieve energy efficient communication, i.e., allow non-AP STAs in TXOP power save mode to enter Doze state during a TXOP • Scrambler Scrambling effectively reduces the PAPR in OFDM system • Single-carrier & Multi-carrier Support single-carrier and multi-carrier simultaneously Slide 5 Shiwen He, Haiming Wang

  6. May 2015 QMG PHY SIG Structure Slide 6 Shiwen He, Haiming Wang

  7. May 2015 Explanation of each field in SIG • Scrambler Slide 7 Shiwen He, Haiming Wang

  8. May 2015 Explanation of each field in SIG • Dynamic bandwidth Slide 8 Shiwen He, Haiming Wang

  9. May 2015 Explanation of each field in SIG • Continued Slide 9 Shiwen He, Haiming Wang

  10. May 2015 Explanation of each field in SIG • Continued Slide 10 Shiwen He, Haiming Wang

  11. May 2015 Explanation of each field in SIG • Energy Efficiency Slide 11 Shiwen He, Haiming Wang

  12. May 2015 Explanation of each field in SIG • Multi-stream Slide 12 Shiwen He, Haiming Wang

  13. May 2015 Conclusion • A common SIG was proposed to simultaneously support multiple carrier mechanism for IEEE 802.11aj (45G) millimeter-wave communication. Slide 13 Shiwen He, Haiming Wang

  14. May 2015 Thanks for Your Attention. Slide 14 Shiwen He, Haiming Wang

More Related