I would prefer if we aimed our research on increasing coverage.
I would prefer if we aimed our research on increasing coverage.
5G is for more countries than just the US. Plenty of countries are very happy with the local carriers.
I do wonder how it would work if we did some sort of high-speed dynamic bidding for bandwidth, rather than a constant fee. It could actually be very helpful; it would incentivize carriers to appropriately allocate bandwidth for an area (maximizing profit would coincide nicely with maximizing customer utility) and it would allow customers to directly "feel the pain" of bloated downloads and websites, leading to more market feedback for wasting bandwidth by making 8MB webpages or whatever.
Here's a really cool idea; no SIM card, no network attachment. Your phone uses some technology like Bitcoin micropayment channels (high-speed off-network secure micro payments, great protocol) to automatically buy bandwidth from whichever regional cell tower is offering you the best deal.
4G cannot viably stream 1080p netflix into the number of homes in America that use it at any given time (unless you use an unrealistic number of cell sites).
Some sort of rationing has to occur otherwise cells would be overrun.
Carriers should bring back free nights and weekends.
I have always been an advocate for more, open, spectrum, and simple laws to outlaw intentional interference. We are not operating dumb radios - we can dynamically change or allocate spectrum channels to load balance congestion and avoid making it worse.
To legally cordon off everyone into separate silos is a hatchet solution to a nuanced problem with much better solutions if you could just incentivize good behavior and punish bad in commons.
I do not believe for a second we cannot technologically transfer h265 video via radio to every individual in even the highest population densities if we had full access to building infrastructure around all of the spectrum of light we use for communications.
I have a sneaking suspicion that it's been done this way so that it can be treated like "property" legally protected and commoditised as such.
The bottleneck here is the law, which as everyone knows "is an ass" (by which I mean in all seriousness it has difficulty dealing with such nuance)
In its strictest (and IMO, most useful) sense, "net neutrality" is the concept that data is data is data. It doesn't matter whether it's carrying video or whether it's carrying text, whether that comes from Google or whether it comes from the server in your basement, or whether it's being transferred at 11am or at 11pm.
IMO that definition is the most useful because it's the clearest - anything else ends up getting into some debate about why this applies and that doesn't. I'd very much like to keep my neutral internet connection - the creeping preferentialism on my cellphone connection is not welcome.
At least, I'm assuming that's what OP meant. Not simply that "free nights and weekends" would be anti-net neutrality on its own, but that it could very easily be made more proprietary than it initially sounds. And we've seen it done in the past when free nights and weekends were were restricted to those within your telco, the x-amount of people within your network that are free to call[I believe AT&T made it 10?], the free mobile to mobile that was eventually restricted to free mobile to mobile only within the same telco again, etc., etc.
Edit to clarify, it's more "anti-competitive" than "anti-net neutrality"
We have the ability to programmatically build radios that can adjust bandwidth channels on demand, in fairly broad ranges. But because spectrum is treated as a commodity to be owned by private entities, nobody can utilize the potential of load balancing across all possible radio spectrum (both immediately and in macroscopic economic trends).
If we are stuck with the ~800mhz combined spectrum openly available today, of course we will continue to see incredible bottlenecks in congested wireless environments. But in practice there is about ~10ghz of practically usable spectrum for wireless data transfer, and you can fit a lot more channels in the low end.