This research explores the use of haptic technology in heavy vehicle driving safety, focusing on its potential to enhance driver assistance systems and improve driving experience. The study addresses driver-induced ca...
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Intrusion detection in Internet of Things (loT)-based wireless sensor networks (WSNs) is essential due to their widespread use and inherent vulnerability to security breaches. Traditional centralized intrusion detecti...
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We developed an information system using an object-oriented programming language and a distributed database (DDB) consisting of multiple interconnected databases across a computer network, managed by a distributed dat...
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The rapid growth in social media as the first point of reference for the latest news and information has made the proliferation of fake news on social media platforms a persistent issue that has significant consequenc...
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Virtualization technology enables cloud providers to abstract, hide, and manage the underlying physical resources of cloud data centers in a flexible and scalable manner. It allows placing multiple independent virtual...
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Background In recent years,the demand for interactive photorealistic three-dimensional(3D)environments has increased in various fields,including architecture,engineering,and ***,achieving a balance between the quality...
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Background In recent years,the demand for interactive photorealistic three-dimensional(3D)environments has increased in various fields,including architecture,engineering,and ***,achieving a balance between the quality and efficiency of high-performance 3D applications and virtual reality(VR)remains *** This study addresses this issue by revisiting and extending view interpolation for image-based rendering(IBR),which enables the exploration of spacious open environments in 3D and ***,we introduce multimorphing,a novel rendering method based on the spatial data structure of 2D image patches,called the image *** this approach,novel views can be rendered with up to six degrees of freedom using only a sparse set of *** rendering process does not require 3D reconstruction of the geometry or per-pixel depth information,and all relevant data for the output are extracted from the local morphing cells of the image *** detection of parallax image regions during preprocessing reduces rendering artifacts by extrapolating image patches from adjacent cells in *** addition,a GPU-based solution was presented to resolve exposure inconsistencies within a dataset,enabling seamless transitions of brightness when moving between areas with varying light *** Experiments on multiple real-world and synthetic scenes demonstrate that the presented method achieves high"VR-compatible"frame rates,even on mid-range and legacy hardware,*** achieving adequate visual quality even for sparse datasets,it outperforms other IBR and current neural rendering *** Using the correspondence-based decomposition of input images into morphing cells of 2D image patches,multidimensional image morphing provides high-performance novel view generation,supporting open 3D and VR ***,the handling of morphing artifacts in the parallax image regions remains a topic for future resea
Video forgery is one of the most serious problems affecting the credibility and reliability of video content. Therefore, detecting video forgery presents a major challenge for researchers due to the diversity of forge...
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A new swarm-based, nature-inspired meta-heuristic method, called Rüppell’s Fox Optimizer (RFO), is designed and examined in this study to address global optimization problems. RFO takes inspiration from the natu...
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A new swarm-based, nature-inspired meta-heuristic method, called Rüppell’s Fox Optimizer (RFO), is designed and examined in this study to address global optimization problems. RFO takes inspiration from the natural and intelligent communal foraging practices of Rüppell’s foxes, both during the day and at night. The optimizer mathematically simulates a variety of chief foraging activities of Rüppell’s foxes using their acute eyesight, hearing, and scent to hunt, to accommodate both exploration and exploitation aspects throughout the optimization action. The RFO algorithm simulates the rotating eyes’ feature of Rüppell’s foxes to a field of view of about 260°, as well as the feature of rotating their ears to a field of hearing of about 150°. Further, a cognitive component, ρ, is designed to oversee the evolution from global search to local search as well as the equilibrium between exploration and exploitation within the search domain. Based on Rüppell’s foxes’ foraging qualities, RFO reveals a variety of foraging habits. The dynamic patterns and activities of Rüppell’s foxes were mathematically mimicked in this study to create an efficient global optimizer, which when applied to optimization problems, ultimately yields feasible solutions. The performance level of RFO was thoroughly examined through a comparison with 12 other algorithms using three challenging test sets: Congress on Evolutionary Computation 2017 (CEC 2017) group with 29 test functions of various dimensions, the Congress on Evolutionary Computation 2019 (CEC 2019) with 10 test functions, and CEC 2020 set with 10 test functions. Using mean rank of Friedman’s test, RFO outperformed other comparative algorithms by 31.25%, 34.04%, 32.36%, and 55.13% on the 10-, 30-, 50-, and 100-dimensional CEC 2017 test set, respectively, 57.11% on the CEC 2019 test suite with 10 dimensions, 48.59%,and 51.68% on the 10- and 20-dimensional CEC 2020 set, respectively. The applicability of RFO is thoroughly examined on 6 clas
The utilization of Data-Driven Machine Learning (DDML) models in the healthcare sector poses unique challenges due to the crucial nature of clinical decision-making and its impact on patient outcomes. A primary concer...
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Corrosion poses a significant challenge in industries due to material degradation and high maintenance costs, making effective inhibitors essential. Recent studies suggest expired pharmaceuticals as alternative corros...
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