Communicating with a drone up in the sky is easier than something like your WiFi or your cell phone because you have a nice, clear line of sight to the drone. Fly behind a hill, building, or some trees at distance and the drone will lose connection and go into safety mode.
The free space path loss at 20kM is 126dB at 2.4GHz in perfect conditions, or 134dB at 5.8GHz. If you start with the 1 Watt nominally allowed by regulations, that's +30dBm. Subtract 126dB and you're left with -96dBm. That's a weak signal, but it's actually close to the receive sensitivity of the WiFi card in your laptop, believe it or not. I would guess the DJI gear uses narrower channels than WiFi to achieve a better noise floor than the 20MHz (or wider) channels you get with WiFi.
The 20km figure is really an extreme upper limit. Realistically you'd probably need a high-gain antenna pointed in the direction of the drone to achieve it.
For instance: where do you get that "the free space path loss at 20kM is 126dB at 2.4GHz in perfect conditions, or 134dB at 5.8GHz"? And why does 1 Watt translate to +30dBm?
30 dBm = 30 decibels wrt to 1 milliwatt. 10 decibels = 1 bel = 10-fold increase of the base quantity, so 30 decibels = 10 x 10 x 10 = 1000x increase, so 30 dBm = 1000x 1 mW = 1 W.
I asked* "When making a wireless transmission what is the signal loss at 20km for 2.4Ghz?" and it gave an excellent explanation of free space path loss, stepped through the calculations, and gave the correct answer.
I've had it explain various kinds of first-order filters, especially for electric guitar circuits too. And asking follow up questions works well with how my brain works.
*Link in case you are curious: https://chat.openai.com/share/d0fcf90e-9d2e-4078-9bb4-60717f...
I get your point, but no way I use ChatGPT. Other than all the ideological issues I have with it, I just can't trust it.
> and gave the correct answer.
Are you saying that because you believe it did, or because you already knew the answer? I don't trust ChatGPT, so I don't want to learn anything it says. And I don't need it for stuff I already know.
That is very different to me.
You should independently fact check either source. Wikipedia is slightly easier, but after you have a base subject matter understanding you should have the terminology to validate anyway.
I suspect you just don't like it, which is perfectly fine.
I cannot go against that. To me, the points I listed make them fundamentally different.
> I suspect you just don't like it, which is perfectly fine.
Because you don't understand why I see it as a problem that people don't make the difference between Wikipedia and ChatGPT does not necessarily mean that I am just making up arguments because I don't like it...
I do like the ideals you have there, but I think for most people a tool is just a tool, and if it ms mostly accurate they're happy.
I suspect military communications uses wattage MUCH stronger than what's allowed by regulation in the battle space, correct?
Each has their own disadvantages and advantages, so it's always a tradeoff.
This is a major advantage DJI and other Chinese drone makers have over US based ones. Technically acquiring an SDR/DSP implemented LTE baseband is not a major difficulty. Getting Qualcomm to let you is quite a challenge.
Looking at FCC listings and product pages you can tell that DJI are also throwing power at the problem. The EIRP on DJI devices is very high. They go up to 33dBm (2W EIRP) on the most modern devices like the Mini 4 Pro.
Is it using LTE bands? Or just LTE technology on non-licensed bands?
The mini 3 pro has a CE regulations claimed range of 8 km, but after 2.5 km I pretty much loose connection. If I turn the drone to face my direction, I might be able to fly it a bit further, but at this point it is so hard to control it, that there is no point.
Btw, according to regulations, you can not fly it without line of sight. So, in practice the "legal" range is a few hundrend meters. I have yet to see an observer with binoculars. :)
I've flown the original DJI Mavic Pro to about 4-5km multiple times and never had any real issue with the video feed.
I'd be surprised if this much newer gen is worse.
In the US, the drone can use way higher transmission power (~ 4-20 times more, depending on the drone) .
Most wireless transmission technology lives somewhere in-between the extremes of the above spectrum. Signals analysis is quite advanced and codecs/encodings are also quite advanced at this point.
Numerology
In reality you will see about a 2km max in relatively clear conditions, and as few as half a km in even normal suburban/urban conditions.
Maybe something where there are two drones, and one flies high with line of sight to both the user and the low-flying drone so that it can act as a relay like a satellite would?
Or something that uses radio frequencies that bounce over the atmosphere, and if bandwidth is not enough uses an automated pilot plus the ability to send photos every few seconds so the user can tell it in which general direction it should fly?
Or something that uses Starlink/Iridium/etc. to relay data?
The key terms in the link budget is directionality. If you use a phased array (like Starlink) or a parabolic dish, you can boost your range tremendously. This is how 4x4 MIMO WiFi can achieve gigabit speeds with the same power limit.
At 50 km/h, it moves 10-20 times faster than a hiker, and at <1000$ it's more than 100x cheaper than a plane or helicopter.
But requiring line of sight is a strong limitation because it means that you need to fly over the tree canopy and might not see under it, and you need to fly really high if target is on the other side of a mountain or hill and again you might not see well.
And of course cell phone coverage is not guaranteed so you can't use the easiest solution of putting a cell modem on it.
Local law also say there are very little places I could really use it in 50km radius from home.