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Regarding the range of the operations and requirements for the hardware and software, there are 3 major classes of the UAV operations:
We provide summary and characteristics in the following sections.
The VLOS flying is the first drone operators use. And the most common one, requiring the lowest level of certification or no certification at all (depends on the scenario, UAV weight, flight region). The most common question is “How far can I go?”. It depends on the regulations, drone size, weather conditions and many others, but in any case, the best approach within the formal limits is given by the following rule: VLOS flying requires UAVO to be able to see and orient the platform using the naked eye [1].
VLOS flying does not necessarily mean you need to control the drone in RC: you can use even high level of autonomy modes, but you need to see the drone and be ready to “jump into the action” when needed, i.e. to avoid the collision with another object or modify trajectory. For this reason, VLOS operations require constant observation. In many countries, regulations allow using additional human observers, supporting UAVO during operations. Note, in any case, it is UAVO's responsibility in case of any incident or accident.
As mentioned before, flying VLOS may use virtually any mode from fully manual to fully autonomous. For this reason, a variety of drones fits this category and depending on the flight mode, there are different requirements for the UAV aerial section and ground section hardware and software, as discussed in the hardware section.
Flying BVLOS requires more advanced certification than VLOS. It also requires a higher level of communication capabilities between the aerial section (UAV) and ground section (UAVO). The operator needs to be able to control, trace the current location of the drone, and introduce necessary actions remotely. For this reason, the majority of the solutions require good video link (sometimes with multiple cameras/streams). This type of operations has a strong demand on the system reliability, so drones used in BVLOS usually have at least duplicated or even tripled navigation and IMU systems and reliable communication solution. Note, flying BVLOS is flying beyond the horizon of sight, within the line of sight but out of sight range, but also i.e. beyond the construction (like i.e. a building). All of those situations require more advanced communication systems than in the case of VLOS drones.
Majority of modern VLOS commercial constructions are ready for BVLOS or at least can be easily adapted. Note, forthcoming regulations will require drone identification using certified devices to let them broadcast ADS-B communicates (as in case of the passenger planes). More on ADS-B one can find in the Wikipedia [2] and FAA websites [3]. Please note, using ADS-B transmitter requires certification and drone registration while receiving ADS-B from others is considered to be free. and latest FCs contain integrated receivers like i.e. Pixhawk Orange Cube.
In the case of the BVLOS operation, UAVO uses ground station solely and does not observe the drone, so it requires to provide all necessary information to the operator and also to be able to reliably deliver commands to the UAV.