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Hybrid Approach Named HUAPO Technique to Guide the Lander Based on the Landing Trajectory Generation for Unmanned Lunar Mission

This manuscript proposes a hybrid method for landing trajectory generation of unmanned lunar mission. The proposed hybrid control scheme is the joint execution of the human urbanization algorithm (HUA) and political optimizer (PO) with radial basis functional neural network (RBFNN); hence it is name...

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Autores principales: Latif, Shaikh Abdul, Mehedi, Ibrahim M., Iskanderani, Ahmed I. M., Vellingiri, Mahendiran T., Jannat, Rahtul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9197655/
https://www.ncbi.nlm.nih.gov/pubmed/35712066
http://dx.doi.org/10.1155/2022/4698936
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author Latif, Shaikh Abdul
Mehedi, Ibrahim M.
Iskanderani, Ahmed I. M.
Vellingiri, Mahendiran T.
Jannat, Rahtul
author_facet Latif, Shaikh Abdul
Mehedi, Ibrahim M.
Iskanderani, Ahmed I. M.
Vellingiri, Mahendiran T.
Jannat, Rahtul
author_sort Latif, Shaikh Abdul
collection PubMed
description This manuscript proposes a hybrid method for landing trajectory generation of unmanned lunar mission. The proposed hybrid control scheme is the joint execution of the human urbanization algorithm (HUA) and political optimizer (PO) with radial basis functional neural network (RBFNN); hence it is named as HUA-PORFNN method. The HUA is a metaheuristic method, and it is used to solve several optimization issues and several nature-inspired methods to enhance the convergence speed with quality. On the other hand, multiple-phased political processes inspire the PO. The work aims to guide the lander with minimal fuel consumption from the initial to the final stage, thus minimizing the lunar soft landing issues based on the given cost of operation. Here, the HUAPO method is implemented to overcome thrust discontinuities, checkpoint constraints are suggested for connecting multi-landing phases, angular attitude rate is modeled to obtain radical change rid, and safeguards are enforced to deflect collision along with obstacles. Moreover, first, the issues have been resolved according to the proposed HUAPO method. Here, energy trajectories with 3 terminal processes are deemed. Additionally, the proposed HUAPO method is executed on MATLAB/Simulink site, and the performance of the proposed method is compared with other methods.
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spelling pubmed-91976552022-06-15 Hybrid Approach Named HUAPO Technique to Guide the Lander Based on the Landing Trajectory Generation for Unmanned Lunar Mission Latif, Shaikh Abdul Mehedi, Ibrahim M. Iskanderani, Ahmed I. M. Vellingiri, Mahendiran T. Jannat, Rahtul Comput Intell Neurosci Research Article This manuscript proposes a hybrid method for landing trajectory generation of unmanned lunar mission. The proposed hybrid control scheme is the joint execution of the human urbanization algorithm (HUA) and political optimizer (PO) with radial basis functional neural network (RBFNN); hence it is named as HUA-PORFNN method. The HUA is a metaheuristic method, and it is used to solve several optimization issues and several nature-inspired methods to enhance the convergence speed with quality. On the other hand, multiple-phased political processes inspire the PO. The work aims to guide the lander with minimal fuel consumption from the initial to the final stage, thus minimizing the lunar soft landing issues based on the given cost of operation. Here, the HUAPO method is implemented to overcome thrust discontinuities, checkpoint constraints are suggested for connecting multi-landing phases, angular attitude rate is modeled to obtain radical change rid, and safeguards are enforced to deflect collision along with obstacles. Moreover, first, the issues have been resolved according to the proposed HUAPO method. Here, energy trajectories with 3 terminal processes are deemed. Additionally, the proposed HUAPO method is executed on MATLAB/Simulink site, and the performance of the proposed method is compared with other methods. Hindawi 2022-06-07 /pmc/articles/PMC9197655/ /pubmed/35712066 http://dx.doi.org/10.1155/2022/4698936 Text en Copyright © 2022 Shaikh Abdul Latif et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Latif, Shaikh Abdul
Mehedi, Ibrahim M.
Iskanderani, Ahmed I. M.
Vellingiri, Mahendiran T.
Jannat, Rahtul
Hybrid Approach Named HUAPO Technique to Guide the Lander Based on the Landing Trajectory Generation for Unmanned Lunar Mission
title Hybrid Approach Named HUAPO Technique to Guide the Lander Based on the Landing Trajectory Generation for Unmanned Lunar Mission
title_full Hybrid Approach Named HUAPO Technique to Guide the Lander Based on the Landing Trajectory Generation for Unmanned Lunar Mission
title_fullStr Hybrid Approach Named HUAPO Technique to Guide the Lander Based on the Landing Trajectory Generation for Unmanned Lunar Mission
title_full_unstemmed Hybrid Approach Named HUAPO Technique to Guide the Lander Based on the Landing Trajectory Generation for Unmanned Lunar Mission
title_short Hybrid Approach Named HUAPO Technique to Guide the Lander Based on the Landing Trajectory Generation for Unmanned Lunar Mission
title_sort hybrid approach named huapo technique to guide the lander based on the landing trajectory generation for unmanned lunar mission
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9197655/
https://www.ncbi.nlm.nih.gov/pubmed/35712066
http://dx.doi.org/10.1155/2022/4698936
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