I figured the authorities could pretty quickly triangulate the signal to locate the operator. But Gatwick is a bucket of suck so maybe they're just unprepared?
Also, I understood that drones are geofenced out of restricted airspace such that they disobey commands to fly where they're not allowed.
Geofencing drones: https://www.heliguy.com/blog/2017/02/16/heliguys-guide-to-ge...
But many others are not. Drones without GPS for example cannot be geofenced.
First, what frequency is the control transmitter on? (or frequency-band/freq-hopping in). If it is one of the usual R/C bands, then that is a limited search space. Or if the perp is not so concerned with observing frequency allocation treaties and regulations, well then now you have a big hunt.
Second, what other signals are in that band? Suppose it is in the 2.4GHz ISM band. Given a spectrum analyzer plot of 300 spread-spectrum signals hopping in the ISM band, which 299 are WiFi and Bluetooth and other, and which is the perp? The microwave ovens are easy to distinguish, but still add clutter.
So if you can pick on a single signal, then you can use Doppler techniques to get a rough bearing, and directional antennas to zero in.
I suspect they had some crews working the problem, but it is a challenge.
Anyone interested can look up Amateur Radio “fox hunting” in the US, and in Europe “radio orienteering” is popular. Since signal hunters are not transmitting, no license is required to participate in a hunt.
(Fun fact, UK was very good in EW during WWII
https://en.wikipedia.org/wiki/Battle_of_the_Beams )
Military perspective on this:
http://www.thedrive.com/the-war-zone/25608/rogue-drones-have...
You dont have to do it manually. Nowadays you can grab whole 2.4-2.5 range(most common drone remote frequency), process it in real time, at 3 locations simultaneously, and produce signal position map with every transmitter inside the triangle or interest. Even amateur fox hunts can be automated to the point of trivializing whole thing with couple of those https://www.indiegogo.com/projects/kerberossdr-4x-coherent-r... . More professional hardware does exist, quick search gave me http://spectrafold.com/quadrus/product/dru-244a-1-4-pci/ so Im sure MIL already uses this instead of primitive manual techniques.
[1] https://www.ofcom.org.uk/spectrum/information/gps-jamming-ex...
Never mind that Aircraft will be under ATC in UK airspace, and ATC uses Radar + transponder to localise aircraft.
GPS is a navigational aid, not the primary navigation tool.
Much older. The basic "stack" uses radio beacons, not greatly different from early XX century tech. The more advanced Instrument Landing System is quite a bit more complex, but in very basic terms is a set of radio beacons that define a glide path. It is local, and requires no GPS.
You’re idea is simply flying by other instrumentation.
Dead reckoning would be the accelerometer only, and estimating an assumed possible position based on known facts about the vehicle’s inertia and direction over time.
> accelerometer
What exactly would imagine an accelerometer meters? Something other than speed?
I was a flight instructor for a few years, and have taught many students how to do dead reckoning. That doesn’t mean I’m right, but hopefully gives me enough credibility that you’ll consider my argument. Each of the Wikipedia articles for these topics is robust if you’d like more detail.
There is a buffer zone around the airport anyway. I would aim to mercilessly shoot down detected drones in that buffer zone.
I've flown within a cave without GPS. The drone drifts and can't really hold position reliably, but it works:
What knowledge/experience is your speculation that flying by camera doesn't exist based on?
The ones which fly autonomously are more complicated. And the thread you were responding to was talking about this case. There are no commercially available drones which can fly autonomously by on-board visual navigation. The ones you linked can send a camera image back to the operator, but can't fly themselves based on that image.
I have about a 6 mile range for video/control with my drone.
https://www.theregister.co.uk/2018/12/20/gatwick_drone_non_s...
In the UK, they ram people of scooters. The biggest danger here is 'a drone may fall on someones home'. Clearly there is either a HUGE force imbalance, or a hidden situation. Shotguns, as posted ad nasuem here, are perfectly safe.
Londoners mostly got though the Blitz ok with a million houses destroyed or damaged by bombs. We can handle the risk of a crappy drone crashing in someones garden. https://en.wikipedia.org/wiki/The_Blitz#No_collapse_of_moral...
Granted, they have other means of navigating when the GPS isn't available but in the extremely busy airspace around London this would be just asking for a big problem.
However big you want to make it. All a “GPS jammer” is is a radio transmitting on 1575.42 MHz. Modeling the signal propagation of a transmitting device (Aka radio / antenna combo in this case) is a very very well known field.
London City, and London Heathrow.
Luton, Stansted, and Gatwick are "London" in name only. All about 30mins drive from the M25.
Heathrow and Gatwick are about the same distance from London City Airport.
I don't really want to link it to avoid linking this username to things, but I guess this should be okay: http:// rp dot delaat dot net/2017-2018/p95/report.pdf
Source: https://www.cnet.com/news/truck-driver-has-gps-jammer-accide...
Smartpath: https://aerospace.honeywell.com/en/products/navigation-and-s...
Example RNAV GNSS for Gatwick: https://opennav.com/pdf/EGKK/EG_AD_2_EGKK_8-4_en_2010-07-29....
To me any concern about GPS jamming is plain bullshit added to the soup to justify further restrictions on drone flying. Drones with cameras are powerful weapons these days.
GPS is extremely low power and relatively speaking easy to jam. The received signal strength is far below the noise floor to begin with and it's basically RF black magic that it works to begin with. Those cheap GPS jammers that only radiate white noise at like a watt cause huge problems in the surrounding area.
There was even one case that I know of that would pertain to this subject in particular. A truck driver wanted to prevent his company from snooping on his whereabouts while driving a truck with a tracking system on it so he bought and used one of those cheap chinese jammers. He delivered stuff to an airport and just sitting in the parking lot was enough to keep aircraft from maintaining a GPS fix. There was also the case at Newark airport where just a truck driving by regularly was enough to cause problems.
And really those GPS jammers are the bruteforce and pretty ineffective approach. White noise is essentially what GPS is designed to work in, it just raises the noise floor 20 - 30 dB. GPS uses a gold code to transfer information and it's essentially looking for statistical deviations to be able to get a lock on such a weak signal. If a jammer was designed to be biased and transmit with the intention of preventing a receiver from being able to lock onto a satellite instead of just overpowering the signal entirely it could jam more with less power.
https://en.wikipedia.org/wiki/GPS_signals#Coarse/acquisition...
https://gizmodo.com/jamming-gps-signals-is-illegal-dangerous...
https://www.cnet.com/news/truck-driver-has-gps-jammer-accide...
Example: http://jammergroup.quality.chinacsw.com/pz66df87e-handheld-6...
And by the way, Boeing had jamming resistant GPS back in 1998.
https://boeing.mediaroom.com/1998-04-23-Boeing-Anti-Jam-GPS-...