LabVIEW Development of a Portable Ground Station for Unmanned Aerial Vehicle Motor
摘要
Unmanned aerial vehicles (UAVs) are often utilized in both civil and military fields worldwide. The Control station of ground, which includes hardware and software, has become a crucial piece of equipment to create depends on the unmanned aerial system automated aircraft purpose. The three components that make up the operation of a ground-based control station are highlighted in this paper: equipment for a mobile monitoring station, a virtual instrument console as the display of frame of mind data and gliding paths, and various error alerts. GCS was able to accurately display the remote sensing data and timely issue the control command for the entirety of the test on the ground and in the air. The technology can also be utilized to support a UAV’s autonomous cruise mission. The PTAE is the UAV in this scenario (pilotless target aircraft engine). Any physical system exhibits some degree of unpredictability and nonlinearity. A sophisticated instrument that can continuously monitor these variances and take the appropriate actions to reduce them is required for a system to function efficiently. These engine process parameters need to be occasionally changed in an aviation engine. The fuel rate has the utmost significance among the different inputs needed to test an aero engine and must be controlled and observed to ensure engine performance. In essence, the testing procedure uses a closed loop system, where the engine’s various output characteristics are fed back into the input. Stepper and servomotors control the fuel flow in an aviation engine.