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Embedded system for indoor guidance parking with Dijkstra’s algorithm and ant colony optimization
Published 2019“…This study proposes a car parking management system which applies Dijkstra’s algorithm, Ant Colony Optimization (ACO) and Binary Search Tree (BST) in structuring a guidance system for indoor parking. …”
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2
Graphical user interface for surface roughness prediction of CNC milling machine / Muhammad Qayyum Nor Asffan
Published 2020“…On top of that, the types of cutting path chosen to be studied were parallel, morph spiral and true spiral. 10 runs of experiments with different machining parameters for each cutting path were analysed throughout this research. …”
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3
Video traffic analysis on Unifi broadband network / Laina Sofia Mahamad
Published 2017“…Thirdly, to identify best traffic model based on fitted model in developing network traffic bandwidth control algorithms. MatLab Dfittool program is used to analyze and identify the best traffic model. …”
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4
Adaptive position control of DC motor for brush-based photovoltaic cleaning system automation
Published 2023“…Two different movements of translational and rotational motion of the motors are managed by an algorithm programmed in Arduino Mega. In investigating the performance of motor parameters and dust removal rate, we conducted an experiment by spreading dry sand over the PV surface. …”
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Adaptive position control of DC motor for brush-based photovoltaic cleaning system automation
Published 2023“…Two different movements of translational and rotational motion of the motors are managed by an algorithm programmed in Arduino Mega. In investigating the performance of motor parameters and dust removal rate, we conducted an experiment by spreading dry sand over the PV surface. …”
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6
Adaptive position control of DC motor for brush-based photovoltaic cleaning system automation
Published 2023“…Two different movements of translational and rotational motion of the motors are managed by an algorithm programmed in Arduino Mega. In investigating the performance of motor parameters and dust removal rate, we conducted an experiment by spreading dry sand over the PV surface. …”
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7
Adaptive position control of DC motor for brush-based photovoltaic cleaning system automation
Published 2023“…Two different movements of translational and rotational motion of the motors are managed by an algorithm programmed in Arduino Mega. In investigating the performance of motor parameters and dust removal rate, we conducted an experiment by spreading dry sand over the PV surface. …”
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8
Adaptive position control of DC motor for brush-based photovoltaic cleaning system automation
Published 2023“…Two different movements of translational and rotational motion of the motors are managed by an algorithm programmed in Arduino Mega. In investigating the performance of motor parameters and dust removal rate, we conducted an experiment by spreading dry sand over the PV surface. …”
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9
Adaptive position control of DC motor for brush-based photovoltaic cleaning system automation
Published 2023“…Two different movements of translational and rotational motion of the motors are managed by an algorithm programmed in Arduino Mega. In investigating the performance of motor parameters and dust removal rate, we conducted an experiment by spreading dry sand over the PV surface. …”
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10
Adaptive position control of DC motor for brush-based photovoltaic cleaning system automation
Published 2023“…Two different movements of translational and rotational motion of the motors are managed by an algorithm programmed in Arduino Mega. In investigating the performance of motor parameters and dust removal rate, we conducted anexperiment by spreading dry sand over the PV surface. …”
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11
Adaptive position control of DC motor for brush-based photovoltaic cleaning system automation
Published 2023“…Two different movements of translational and rotational motion of the motors are managed by an algorithm programmed in Arduino Mega. In investigating the performance of motor parameters and dust removal rate, we conducted an experiment by spreading dry sand over the PV surface. …”
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