Another good one is the military. A coworker lives a few miles from the navy base in Bremerton, Washington, and a couple times a year they do some radio testing that completely blocks his garage door opener. His garage only has the one door, and it has no manual override from outside, so when this happens his car is stuck there until the navy finishes testing.
This is an area where IOT makes some sense. If you use an unlicensed frequency using the rule that allows use of such frequencies as long as power is very low, you risk some licensed user legally operating with much more power will stomp all over you, as is the case with the navy.
If you use IOT, that is much less likely. The frequencies used by WiFi are primarily allocated to other services, and so there is some risk that someone will legally stomp all over your WiFi, that risk is a lot less.
First, WiFi bands start at 2.4 GHz and go up from there. At those frequencies range is much more limited than it is at lower frequencies such as those typically used in current garage door openers. So even if someone is doing something high powered on those frequencies, it will likely only wipe out WiFi in a small area, rather than for many miles around.
Second, WiFi is widespread enough that those who might interfere probably use WiFi themselves, and so might be inclined to use some other frequencies available to them so as to not wipe out their own WiFi.
Similar arguments apply to cellular internet, but more strongly because in the case of cellular, I believe the cellular companies are the users who have priority for those frequencies.
This, an IOT garage door opener, connected on your home WiFi, that you can access via your cell phone from your car either via the cell phone using your home access point of over your cellular service, seems like it would possibly be the way to go nowadays (assuming you can secure the damn thing reasonably).
In the case specifically of garage door openers, though, I'd also consider doing it optically or ultrasonically, instead of via radio.