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Project title: Creation of a model of airspace
Type of cooperation: One-time project
Section: Software development
Prepayment: without prepayment
Payment methods: Cash, Bank transfer, Electronic money
Acceptance of requests: closed
Type of cooperation: One-time project
Section: Software development
Prepayment: without prepayment
Payment methods: Cash, Bank transfer, Electronic money
Acceptance of requests: closed
Project description:
Programmer services are required. A specialist is needed to create a model of airspace with a simulation of drone flights according to certain parameters (Matlab / Simulink).
For the basis will be taken airspace of London with a maximum height of 400 feet above the ground, which should be divided into cubes (1 meter).
Each cube is a potential cell where there can only be one drone.
All space will have no-fly zones.
To simulate ********** call a window in which the flight coordinates and the estimated takeoff time are entered (the number of such operations should be limited only by the system's capacity)
Select one of several parameters of those characteristics of the drone (speed, range, speed of climbing)
Run the algorithm to find the ideal trajectory between two points (taking as variables the necessary data such as speed, type of drone, forbidden zones, etc.)
Then activate the corridor and create a safety zone around it (7 meters in each direction).
You can run an unlimited number of corridors that will never cross.
Programmer services are required. A specialist is needed to create a model of airspace with a simulation of drone flights according to certain parameters (Matlab / Simulink).
For the basis will be taken airspace of London with a maximum height of 400 feet above the ground, which should be divided into cubes (1 meter).
Each cube is a potential cell where there can only be one drone.
All space will have no-fly zones.
To simulate ********** call a window in which the flight coordinates and the estimated takeoff time are entered (the number of such operations should be limited only by the system's capacity)
Select one of several parameters of those characteristics of the drone (speed, range, speed of climbing)
Run the algorithm to find the ideal trajectory between two points (taking as variables the necessary data such as speed, type of drone, forbidden zones, etc.)
Then activate the corridor and create a safety zone around it (7 meters in each direction).
You can run an unlimited number of corridors that will never cross.