Real-Time Flight Path Optimization for Tracking Stop-And-Go Targets with Micro Air Vehicles
Nate A. Terning
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Real-Time Flight Path Optimization for Tracking Stop-And-Go Targets with Micro Air Vehicles

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This research effort focuses on using a heuristic approach to determine the optimal flight path required to put an Unmanned Aircraft System's (UAS) sensor on a moving target in the presence of a constant wind field. This thesis builds on past work using dynamic optimization techniques to calculate minimum time to target. The computationally intensive dynamic optimization routines in their current form take a prohibitive amount of time to calculate and ultimately result in erroneous flight path predictions due to inherent execution time latencies. Therefore an iterative, suboptimal heuristic ap...