2023
DOI: 10.22266/ijies2023.0430.34
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Planning the Optimal 3D Quadcopter Trajectory Using a Delivery System-Based Hybrid Algorithm

Abstract: Path planning is one of the most crucial aspects of implementing unmanned aerial vehicle (UAV) missions. Therefore, it is essential to figure out the optimal path from the starting point to the target point in different scenarios. In this paper, we propose employing a hybrid algorithm, named FPA-GA, generated by combining the flower pollination algorithm (FPA) and genetic algorithm (GA), to find an optimum path in a real modern building's environment. In addition, a cubic polynomial algorithm via two points wa… Show more

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Cited by 8 publications
(12 citation statements)
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“…Natural pollination processes are divided into biotic and abiotic mechanisms, whereas artificial pollination is the intentional use of suitable pollen with the help of human intervention. The computational framework in this research models a process similar to mechanical artificial pollination, resembling palm pollination techniques [4], [34].…”
Section: Optimization Algorithmmentioning
confidence: 99%
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“…Natural pollination processes are divided into biotic and abiotic mechanisms, whereas artificial pollination is the intentional use of suitable pollen with the help of human intervention. The computational framework in this research models a process similar to mechanical artificial pollination, resembling palm pollination techniques [4], [34].…”
Section: Optimization Algorithmmentioning
confidence: 99%
“…This combination of the FPA and GA tries to balance exploration and exploitation to reduce the possibility of local optima [4], as shown in Figure 3.…”
Section: Optimization Algorithmmentioning
confidence: 99%
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“…The environment is downloaded as a DXF file, which autoCAD can access. It is then modified and transformed into an STL file for MATLAB use [6], [21].…”
Section: Environment Designmentioning
confidence: 99%
“…The fifth category is multi-fusion-based algorithms, which combine two or more algorithms; these algorithms seek to solve and enhance route planning problems by increasing their quality, stability, and convergence performance [19]. Examples include a probabilistic roadmap based on ant colony optimization [20], improved particle swarm optimization (IPSO), grey wolf optimizer (GWO) [19], a hybrid flower pollination and genetic algorithm (FPA-GA) [21], (BAS-GA) is a combination of the genetic algorithm and the beetle antennae search algorithm [22], and others. Depending on the situation, each of these algorithms has advantages and disadvantages.…”
Section: Introductionmentioning
confidence: 99%