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2019 | 3(61) | 43-56

Article title

NEW THROUGHPUT OPTIONS IN 802.11AX STANDARD

Content

Title variants

PL
Nowe opcje przepływności w standardzie 802.11ax

Languages of publication

PL EN

Abstracts

PL
Przepustowość oferowana w standardzie 802.11 jest obecnie podobna do przepustowości oferowanej w rozwiązaniach przewodowych. Nowo opracowany standard 802.11ax oferuje także nowe możliwości działania w środowisku o dużej gęstości użytkowników. Autor, wykorzystując teoretyczne zależności i wersję ns-3.27 symulatora NS, porównał przepustowość w standardach 802.11n / ac / ax i określił przepustowość dla wybranych konfiguracji parametrów kanału radiowego. Przepustowość 802.11ax jest zwykle wyższa niż w starszych standardach, jednak są pewne wyjątki.
EN
The throughput offered in the 802.11 standard are now similar to those offered in wired solutions. The newly developed 802.11ax standard also offers new operation opportunities in an environment with high density of users. The author, using the theoretical dependencies and the ns-3.27 version of the NS simulator, compared the throughput in the 802.11n / ac / ax standards and determined the throughput for selected configurations of the radio channel parameters. The throughput of 802.11ax is usually higher then in older standards however there are some exceptions.

Year

Issue

Pages

43-56

Physical description

References

  • Bellata B. (2016), 802.11ax:High efficiency WLAN, “IEEE Wireless Communications”, Vol. 23, Iss. 1.
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  • Khorov E., Kiryanov A., Lyakhov A. (2016), IEEE 802.11ax: How to Build High Efficiency WLANs, Conference Paper.
  • Oran S., Yaron A. (2017), Single User MAC Level Throughput Comparison: IEEE 802.11ax vs. IEEE 802.11ac, “Wireless Sensor Network”, No. 9.
  • Porat R., Fischer M., Venkateswaran S. et al. (2015), Payload Symbol Size for 11ax, doc.: IEEE 802.11-15/0099, 2015
  • Masiukiewicz A. (2019), Throughput comparison between the new HEW 802.11ax standard and 802.11n/ac standards in selected distance windows, “International Journal of Electronics and Telecommunication”, No. 1.
  • Masiukiewicz A. (2017), SINR simulation in 802.11n networks, “International Research Journal of Advanced Engineering and Science”, Vol. 2, Iss. 3.
  • NS-3 Network Simulator (2017), NS-3 Model Library, Release ns-3 dev, NS-3 Project, February 2017, http://www.nsnam.org [access: 15.11.2017].
  • Ward L. (2016), Rohde & Schwarz IEEE 802.11ax Technology Introduction, “White Paper”, No 10, http://www.rhode-schwarz/appnote/1MA22 access 03.2017 [access: 15.03.2017]
  • https://www.qualcomm.com/products/ipq8074 (2016) [access: 15.02.2018].
  • https://www.qualcomm.com/products/qca6290 (2016a) [access: 15.02.2018].
  • https://mentor.ieee.org/802.11/dcn/15/11-15-0132-17-00ax-spec-framework.docx [access: 15.03.2017]

Document Type

Publication order reference

Identifiers

YADDA identifier

bwmeta1.element.desklight-1a453c44-5b3e-448b-b578-5379f394e0ab
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