That's still valuable, but I was hoping for a more technical view on it. Anyone have an article that explains why the systems are as limited as they are?
That's still valuable, but I was hoping for a more technical view on it. Anyone have an article that explains why the systems are as limited as they are?
What I'm looking for is e.g. an explanation of how MIMO works, or why explicit timeslots were considered useful for 802.11n but not 11b.
If you want a very simplistic explanation, it's like giving you multiple Ethernet cables to improve throughput. (To gloss over all the details about RF and boil it down to the practical benefit: more bandwidth)
Per the article, not everything with MIMO is advertised as 1x1, 2x2, etc. You frequently find WiFi routers mentioning 1T1R (1x1), or 2T2R (2x2). Or maybe just the Chinese routers I look at.
This article is mostly on about interference, which is definitely a big issue in populated areas. But there are definitely issues with Linux and the drivers used by AP manufacturers. There's a project: Make Wi-Fi fast [1] which aims to address these issues.
They're making good progress, especially in environments with a lot of clients. Just having one 802.11b or g client can really ruin throughput for newer devices due to the timesharing algorithm used by default.
[0] https://en.m.wikipedia.org/wiki/MIMO
[1] https://www.bufferbloat.net/projects/make-wifi-fast/wiki/
O'Reilly's "802.11n: A Survival Guide" is fairly OK.
If you read German, I highly recommend "Wireless LANs" by author Jörg Rech.
I suggest reading Andrea Goldsmith's or Pramod Vishwanath's book on Wireless Communication. If not, Intro to Communication Systems by Madhow is recommended.
Do you happen to know any useful English literature that covers the MAC layer of modern wifi standards (n, ac, ax)? Apart from the 802.11 standards, of course.
Book: https://www.pearsonhighered.com/program/Beard-Wireless-Commu...