| Author |
Session |
Start page |
Title |
| A A B C D E F G H I J K L M N O P R S T U W Y Z |
| A. Albeloshi, Khawla |
S4.4 |
229 |
Detecting Wasted Resources in Hydroponic Systems |
| Abbasi, Qammer |
S7.2 |
77 |
TAQWA: Teaching Adolescents Quality Wadhu/Ablution Contactlessly Using Deep Learning |
| Abdallah, Saeed |
S3.3 |
207 |
Emirati Sign Language Recognition Using YOLOv5 |
| Abduljalil, Mohammed |
S2.2 |
234 |
Opportunities and Challenges of Big Data Technology in Retail Industry |
| Abu Talib, Manar |
S3.4 |
240 |
Experimental Benchmarking of Quantum Machine Learning Classifiers |
| Abu Waraga, Omnia |
S3.4 |
240 |
Experimental Benchmarking of Quantum Machine Learning Classifiers |
| Al Mansoori, Saeed |
S7.1 |
122 |
Advancements in Ship Detection: Comparative Analysis of Optical and Hyperspectral Sensors |
| Al Shamsi, Alyazia |
S7.1 |
122 |
Advancements in Ship Detection: Comparative Analysis of Optical and Hyperspectral Sensors |
| Al-Ahmad, Hussain |
S7.1 |
122 |
Advancements in Ship Detection: Comparative Analysis of Optical and Hyperspectral Sensors |
| Al-Ali, Asma |
S3.3 |
207 |
Emirati Sign Language Recognition Using YOLOv5 |
| AL-Asadi, Ahmed |
S6.2 |
57 |
Laser Phase Noise Mitigation Based on Autoencoder for End-To-End Learning of CO-OFDM Systems |
| Al-Saedi, Ibtesam |
S6.2 |
57 |
Laser Phase Noise Mitigation Based on Autoencoder for End-To-End Learning of CO-OFDM Systems |
| Alabdouli, Abdulrhman |
S6.6 |
1 |
Predicting Temperature Change in the UAE Using Linear Regression and the LSTM Method |
| Alalshekmubarak, Abdulrahman |
S3.2 |
17 |
An Ensemble-Based Dates Classification Systems |
| Alam, Tanvir |
S8.6 |
139 |
Multi-Disease Retinal Vessel Segmentation: A Deep Learning Approach |
| AlAnsaari, Mohamed |
S4.4 |
229 |
Detecting Wasted Resources in Hydroponic Systems |
| Alawadhi, Esraa |
S3.3 |
207 |
Emirati Sign Language Recognition Using YOLOv5 |
| Alexan, Wassim |
S5.2 |
93 |
Enhanced Image Encryption Using the Hénon Map, the LCG and the Lorenz System |
| Aljanaahi, Waad |
S3.3 |
207 |
Emirati Sign Language Recognition Using YOLOv5 |
| AlKharji, Saad |
S1.2 |
62 |
IMU-Based Human Activity Recognition Using Machine Learning and Deep Learning Models |
| Alkhayyat, Ahmed |
S7.2 |
77 |
TAQWA: Teaching Adolescents Quality Wadhu/Ablution Contactlessly Using Deep Learning |
| Alkhazaleh, Hamzah |
S4.4 |
229 |
Detecting Wasted Resources in Hydroponic Systems |
| S2.2 |
234 |
Opportunities and Challenges of Big Data Technology in Retail Industry |
| Alnaseri, Omar |
S6.2 |
57 |
Laser Phase Noise Mitigation Based on Autoencoder for End-To-End Learning of CO-OFDM Systems |
| Alraees, Rashed |
S2.2 |
234 |
Opportunities and Challenges of Big Data Technology in Retail Industry |
| Alshoweky, Mohammad |
S8.1 |
196 |
Smart Endotracheal Intubation Real-Time Visual Feedback and Edge Detection for Enhanced Procedure |
| Alteneiji, Aysha |
S1.2 |
62 |
IMU-Based Human Activity Recognition Using Machine Learning and Deep Learning Models |
| Aly, Mohamed |
S3.4 |
240 |
Experimental Benchmarking of Quantum Machine Learning Classifiers |
| Amara, Kahina |
S4.3 |
11 |
Enhancing Brain Tumour Diagnosis with Augmented Reality Rendering-Based 6 DoF Object Pose Estimation |
| Amin, Saad |
S4.4 |
229 |
Detecting Wasted Resources in Hydroponic Systems |
| S2.2 |
234 |
Opportunities and Challenges of Big Data Technology in Retail Industry |
| Amira, Abbes |
S1.6 |
173 |
Exploring 2D Representation and Transfer Learning Techniques to Identify People on Indoor Localizati |
| S8.4 |
184 |
An Intelligent Edge-Deployable Indoor Air Quality Monitoring and Activity Recognition Approach |
| S8.1 |
196 |
Smart Endotracheal Intubation Real-Time Visual Feedback and Edge Detection for Enhanced Procedure |
| S4.2 |
202 |
On the Sensitivity of Deep Load Disaggregation to Adversarial Attacks |
| S3.6 |
218 |
"Harnessing Transformers: A Leap Forward in Cancer Detection Through Image Analysis |
| Amour, Maryam |
S1.1 |
39 |
Investigating the Impact of Sampling Techniques on an Imbalanced Classification Problem |
| Aref, Alaa |
S5.2 |
93 |
Enhanced Image Encryption Using the Hénon Map, the LCG and the Lorenz System |
| Arshad, Kamran |
S7.2 |
77 |
TAQWA: Teaching Adolescents Quality Wadhu/Ablution Contactlessly Using Deep Learning |
| Assaleh, Khaled |
S7.2 |
77 |
TAQWA: Teaching Adolescents Quality Wadhu/Ablution Contactlessly Using Deep Learning |
| Atalla, Shadi |
S4.3 |
11 |
Enhancing Brain Tumour Diagnosis with Augmented Reality Rendering-Based 6 DoF Object Pose Estimation |
| S1.3 |
167 |
Quadrotor Experimental Dynamic Identification with Comprehensive NARX Neural Networks |
| S1.6 |
173 |
Exploring 2D Representation and Transfer Learning Techniques to Identify People on Indoor Localizati |
| S2.1 |
178 |
Enhancing Kinship Verification Through Multiscale Retinex and Combined Deep-Shallow Features |
| S3.1 |
190 |
Current Topological and Machine Learning Applications for Bias Detection in Text |
| S4.4 |
229 |
Detecting Wasted Resources in Hydroponic Systems |
| S2.2 |
234 |
Opportunities and Challenges of Big Data Technology in Retail Industry |
| B A B C D E F G H I J K L M N O P R S T U W Y Z |
| Barhumi, Imad |
S1.4 |
110 |
Plug-And-Play Enhanced Compressive Sensing for Limited Sample PAT Image Reconstruction |
| Bechar, Amine |
S3.6 |
218 |
"Harnessing Transformers: A Leap Forward in Cancer Detection Through Image Analysis |
| Bediya, Ronak |
S2.5 |
33 |
A Hybrid Machine Learning Framework to Improve Parkinson's Disease Prediction Accuracy |
| Belabbaci, El ouanas |
S2.1 |
178 |
Enhancing Kinship Verification Through Multiscale Retinex and Combined Deep-Shallow Features |
| Berkani, Mohamed |
S8.4 |
184 |
An Intelligent Edge-Deployable Indoor Air Quality Monitoring and Activity Recognition Approach |
| Bessaoudi, Mohcene |
S2.1 |
178 |
Enhancing Kinship Verification Through Multiscale Retinex and Combined Deep-Shallow Features |
| Bettayeb, Maamar |
S7.3 |
51 |
Real-Time Obstacle Detection for Visually Impaired People Using Deep Learning |
| Bougheloum, Loubna |
S7.3 |
51 |
Real-Time Obstacle Detection for Visually Impaired People Using Deep Learning |
| Boukabou, Abdelkrim |
S6.3 |
82 |
Node Localization in WSN Using the Slime Mould Algorithm |
| Boumehraz, Mohamed |
S1.3 |
167 |
Quadrotor Experimental Dynamic Identification with Comprehensive NARX Neural Networks |
| Bouridane, Ahmed |
S1.1 |
39 |
Investigating the Impact of Sampling Techniques on an Imbalanced Classification Problem |
| Bousbia-Salah, Mounir |
S7.3 |
51 |
Real-Time Obstacle Detection for Visually Impaired People Using Deep Learning |
| Bousbiat, Hafsa |
S4.2 |
202 |
On the Sensitivity of Deep Load Disaggregation to Adversarial Attacks |
| C A B C D E F G H I J K L M N O P R S T U W Y Z |
| Carlsson, Gunnar |
S3.1 |
190 |
Current Topological and Machine Learning Applications for Bias Detection in Text |
| Chen, Sinan |
S2.3 |
127 |
A Study of Project Description Inference Using Method Name Elements for Software Upcycling |
| S6.4 |
133 |
Using Data Integration Platform for Effective Location-Aware Service Development Platform |
| Cherbal, Sarra |
S5.1 |
45 |
Secure Key Exchange Scheme and Blockchain-Oriented Data Protection in the Internet of Vehicles |
| Chouchane, Ammar |
S2.1 |
178 |
Enhancing Kinship Verification Through Multiscale Retinex and Combined Deep-Shallow Features |
| S8.4 |
184 |
An Intelligent Edge-Deployable Indoor Air Quality Monitoring and Activity Recognition Approach |
| Choudhary, Ashok |
S3.1 |
190 |
Current Topological and Machine Learning Applications for Bias Detection in Text |
| Copiaco, Abigail |
S1.5 |
162 |
Advancing a Cascaded Machine Learning Approach for the Accurate Estimation of Antenna Parameters |
| S1.6 |
173 |
Exploring 2D Representation and Transfer Learning Techniques to Identify People on Indoor Localizati |
| D A B C D E F G H I J K L M N O P R S T U W Y Z |
| Desoki, Lobna |
S5.2 |
93 |
Enhanced Image Encryption Using the Hénon Map, the LCG and the Lorenz System |
| Doretto, Gianfranco |
S3.1 |
190 |
Current Topological and Machine Learning Applications for Bias Detection in Text |
| E A B C D E F G H I J K L M N O P R S T U W Y Z |
| Elmir, Youssef |
S3.6 |
218 |
"Harnessing Transformers: A Leap Forward in Cancer Detection Through Image Analysis |
| Elnoamy, Omar |
S5.2 |
93 |
Enhanced Image Encryption Using the Hénon Map, the LCG and the Lorenz System |
| F A B C D E F G H I J K L M N O P R S T U W Y Z |
| Fadaaq, Salma |
S3.4 |
240 |
Experimental Benchmarking of Quantum Machine Learning Classifiers |
| Fadli, Fodil |
S1.6 |
173 |
Exploring 2D Representation and Transfer Learning Techniques to Identify People on Indoor Localizati |
| Farrelly, Colleen |
S3.1 |
190 |
Current Topological and Machine Learning Applications for Bias Detection in Text |
| G A B C D E F G H I J K L M N O P R S T U W Y Z |
| Gabr, Mohamed |
S5.2 |
93 |
Enhanced Image Encryption Using the Hénon Map, the LCG and the Lorenz System |
| Gadhafi, Rida |
S1.5 |
162 |
Advancing a Cascaded Machine Learning Approach for the Accurate Estimation of Antenna Parameters |
| Gawanmeh, Amjad |
S1.6 |
173 |
Exploring 2D Representation and Transfer Learning Techniques to Identify People on Indoor Localizati |
| Ghadban, Nour |
S7.2 |
77 |
TAQWA: Teaching Adolescents Quality Wadhu/Ablution Contactlessly Using Deep Learning |
| Guerroudji, Mohamed Amine |
S4.3 |
11 |
Enhancing Brain Tumour Diagnosis with Augmented Reality Rendering-Based 6 DoF Object Pose Estimation |
| H A B C D E F G H I J K L M N O P R S T U W Y Z |
| Hameed, Hira |
S7.2 |
77 |
TAQWA: Teaching Adolescents Quality Wadhu/Ablution Contactlessly Using Deep Learning |
| Hamza, Amir |
S2.4 |
87 |
Hybrid Whale-Mud-Ring Optimization for Precise Color Skin Cancer Image Segmentation |
| Hathaway, Quincy A. |
S3.1 |
190 |
Current Topological and Machine Learning Applications for Bias Detection in Text |
| Himeur, Yassine |
S6.3 |
82 |
Node Localization in WSN Using the Slime Mould Algorithm |
| S2.4 |
87 |
Hybrid Whale-Mud-Ring Optimization for Precise Color Skin Cancer Image Segmentation |
| S1.3 |
167 |
Quadrotor Experimental Dynamic Identification with Comprehensive NARX Neural Networks |
| S1.6 |
173 |
Exploring 2D Representation and Transfer Learning Techniques to Identify People on Indoor Localizati |
| S2.1 |
178 |
Enhancing Kinship Verification Through Multiscale Retinex and Combined Deep-Shallow Features |
| S8.4 |
184 |
An Intelligent Edge-Deployable Indoor Air Quality Monitoring and Activity Recognition Approach |
| S3.1 |
190 |
Current Topological and Machine Learning Applications for Bias Detection in Text |
| S4.2 |
202 |
On the Sensitivity of Deep Load Disaggregation to Adversarial Attacks |
| S3.6 |
218 |
"Harnessing Transformers: A Leap Forward in Cancer Detection Through Image Analysis |
| I A B C D E F G H I J K L M N O P R S T U W Y Z |
| Imran, Muhammad Ali |
S7.2 |
77 |
TAQWA: Teaching Adolescents Quality Wadhu/Ablution Contactlessly Using Deep Learning |
| Islam, Mohammad Tariqul |
S8.6 |
139 |
Multi-Disease Retinal Vessel Segmentation: A Deep Learning Approach |
| J A B C D E F G H I J K L M N O P R S T U W Y Z |
| Joshi, Ritesh |
S8.5 |
151 |
An Extensive Evaluation of Plant Disease Detection Using Diverse Machine Learning Approaches |
| Josy John, Mary |
S1.4 |
110 |
Plug-And-Play Enhanced Compressive Sensing for Limited Sample PAT Image Reconstruction |
| K A B C D E F G H I J K L M N O P R S T U W Y Z |
| Kadir, Abdul |
S6.5 |
27 |
Landslide Disaster Assessment with Integration of Social Media and Remote Sensing |
| Kadlaskar, Ketaki |
S5.6 |
71 |
DiffT: A Novel Approach for Privacy-Preserving Data Analytics |
| Kandoi, Khushi |
S2.5 |
33 |
A Hybrid Machine Learning Framework to Improve Parkinson's Disease Prediction Accuracy |
| Karsh, Bhumika |
S4.1 |
67 |
Human Action Recognition Using Attention EfficientNet |
| S4.6 |
116 |
Deep Learning-Based Human Tracking, Face Mask and Social Distance Monitoring, Systems Using YOLOv5 |
| Karsh, Ram |
S4.1 |
67 |
Human Action Recognition Using Attention EfficientNet |
| S4.6 |
116 |
Deep Learning-Based Human Tracking, Face Mask and Social Distance Monitoring, Systems Using YOLOv5 |
| Kerdjidj, Oussama |
S4.3 |
11 |
Enhancing Brain Tumour Diagnosis with Augmented Reality Rendering-Based 6 DoF Object Pose Estimation |
| S1.6 |
173 |
Exploring 2D Representation and Transfer Learning Techniques to Identify People on Indoor Localizati |
| Khammari, Mohammed |
S2.1 |
178 |
Enhancing Kinship Verification Through Multiscale Retinex and Combined Deep-Shallow Features |
| Khelifa, Mohammed Amin |
S6.3 |
82 |
Node Localization in WSN Using the Slime Mould Algorithm |
| Klinovenko, Sergey |
S6.1 |
5 |
Recognition of Pre-Emergency Situations During Oil Wells Exploitation Based on Telemetry Analysis |
| Korayem, Yousef |
S5.2 |
93 |
Enhanced Image Encryption Using the Hénon Map, the LCG and the Lorenz System |
| Kumar, Atul |
S6.5 |
27 |
Landslide Disaster Assessment with Integration of Social Media and Remote Sensing |
| Kumar, Roshan |
S6.5 |
27 |
Landslide Disaster Assessment with Integration of Social Media and Remote Sensing |
| Kurugollu, Fatih |
S8.1 |
196 |
Smart Endotracheal Intubation Real-Time Visual Feedback and Edge Detection for Enhanced Procedure |
| L A B C D E F G H I J K L M N O P R S T U W Y Z |
| Laskar, Rabul |
S4.1 |
67 |
Human Action Recognition Using Attention EfficientNet |
| Lekouaghet, Badis |
S6.3 |
82 |
Node Localization in WSN Using the Slime Mould Algorithm |
| S2.4 |
87 |
Hybrid Whale-Mud-Ring Optimization for Precise Color Skin Cancer Image Segmentation |
| Lozhnikov, Pavel |
S6.1 |
5 |
Recognition of Pre-Emergency Situations During Oil Wells Exploitation Based on Telemetry Analysis |
| Lubna, Lubna |
S7.2 |
77 |
TAQWA: Teaching Adolescents Quality Wadhu/Ablution Contactlessly Using Deep Learning |
| M A B C D E F G H I J K L M N O P R S T U W Y Z |
| M Anzar, S |
S8.2 |
212 |
Transforming Healthcare: Raabin White Blood Cell Classification with Vision Transformers |
| S8.3 |
224 |
Attentive Regularization in Targeted Kernel Networks for Accurate Diabetic Retinopathy Grading |
| Majid, Nawaf |
S2.2 |
234 |
Opportunities and Challenges of Big Data Technology in Retail Industry |
| Mansoor, Wathiq |
S4.3 |
11 |
Enhancing Brain Tumour Diagnosis with Augmented Reality Rendering-Based 6 DoF Object Pose Estimation |
| S8.5 |
151 |
An Extensive Evaluation of Plant Disease Detection Using Diverse Machine Learning Approaches |
| S1.5 |
162 |
Advancing a Cascaded Machine Learning Approach for the Accurate Estimation of Antenna Parameters |
| S1.3 |
167 |
Quadrotor Experimental Dynamic Identification with Comprehensive NARX Neural Networks |
| S1.6 |
173 |
Exploring 2D Representation and Transfer Learning Techniques to Identify People on Indoor Localizati |
| S2.1 |
178 |
Enhancing Kinship Verification Through Multiscale Retinex and Combined Deep-Shallow Features |
| S3.1 |
190 |
Current Topological and Machine Learning Applications for Bias Detection in Text |
| S4.2 |
202 |
On the Sensitivity of Deep Load Disaggregation to Adversarial Attacks |
| S8.2 |
212 |
Transforming Healthcare: Raabin White Blood Cell Classification with Vision Transformers |
| Mathews, Mili Rosline |
S8.3 |
224 |
Attentive Regularization in Targeted Kernel Networks for Accurate Diabetic Retinopathy Grading |
| Medjoudj, Rafik |
S3.6 |
218 |
"Harnessing Transformers: A Leap Forward in Cancer Detection Through Image Analysis |
| Mishra, Krishnanand |
S2.5 |
33 |
A Hybrid Machine Learning Framework to Improve Parkinson's Disease Prediction Accuracy |
| Mithra Raj, Mukta |
S3.5 |
156 |
An Analysis of Blockchain Frameworks for Electronic Health Records Using Hyperledger |
| Mitsunaga, Takuho |
S5.3 |
99 |
LLM-Based Attack Scenarios Generator with IT Asset Management and Vulnerability Information |
| S5.4 |
104 |
Automated Mapping Method for Sysmon Logs to ATT&CK Techniques by Leveraging Atomic Red Team |
| Muammar, Sudad |
S1.1 |
39 |
Investigating the Impact of Sampling Techniques on an Imbalanced Classification Problem |
| Mukhtar, Husameldin |
S6.6 |
1 |
Predicting Temperature Change in the UAE Using Linear Regression and the LSTM Method |
| S1.5 |
162 |
Advancing a Cascaded Machine Learning Approach for the Accurate Estimation of Antenna Parameters |
| Muthalagu, Raja |
S3.5 |
156 |
An Analysis of Blockchain Frameworks for Electronic Health Records Using Hyperledger |
| N A B C D E F G H I J K L M N O P R S T U W Y Z |
| N, Ravikumar |
S2.5 |
33 |
A Hybrid Machine Learning Framework to Improve Parkinson's Disease Prediction Accuracy |
| Naito, Takeru |
S5.3 |
99 |
LLM-Based Attack Scenarios Generator with IT Asset Management and Vulnerability Information |
| Nakahashi, Tomoro |
S6.4 |
133 |
Using Data Integration Platform for Effective Location-Aware Service Development Platform |
| Nakamura, Masahide |
S2.3 |
127 |
A Study of Project Description Inference Using Method Name Elements for Software Upcycling |
| S6.4 |
133 |
Using Data Integration Platform for Effective Location-Aware Service Development Platform |
| Nasir, Qassim |
S3.4 |
240 |
Experimental Benchmarking of Quantum Machine Learning Classifiers |
| O A B C D E F G H I J K L M N O P R S T U W Y Z |
| Okada, Satoshi |
S5.4 |
104 |
Automated Mapping Method for Sysmon Logs to ATT&CK Techniques by Leveraging Atomic Red Team |
| Okba, Kraa |
S1.3 |
167 |
Quadrotor Experimental Dynamic Identification with Comprehensive NARX Neural Networks |
| Okuma, Momoka |
S5.4 |
104 |
Automated Mapping Method for Sysmon Logs to ATT&CK Techniques by Leveraging Atomic Red Team |
| Ouamane, Abdelmalik |
S1.3 |
167 |
Quadrotor Experimental Dynamic Identification with Comprehensive NARX Neural Networks |
| S2.1 |
178 |
Enhancing Kinship Verification Through Multiscale Retinex and Combined Deep-Shallow Features |
| S8.4 |
184 |
An Intelligent Edge-Deployable Indoor Air Quality Monitoring and Activity Recognition Approach |
| P A B C D E F G H I J K L M N O P R S T U W Y Z |
| P. s, Tamizharasan |
S3.5 |
156 |
An Analysis of Blockchain Frameworks for Electronic Health Records Using Hyperledger |
| Padhya, Mukti |
S4.5 |
21 |
Blockchain-Enabled DNS: Enhancing Security and Mitigating Attacks in Domain Name Systems |
| S5.6 |
71 |
DiffT: A Novel Approach for Privacy-Preserving Data Analytics |
| Panthakkan, Alavikunhu |
S7.1 |
122 |
Advancements in Ship Detection: Comparative Analysis of Optical and Hyperspectral Sensors |
| S8.5 |
151 |
An Extensive Evaluation of Plant Disease Detection Using Diverse Machine Learning Approaches |
| S3.5 |
156 |
An Analysis of Blockchain Frameworks for Electronic Health Records Using Hyperledger |
| S8.2 |
212 |
Transforming Healthcare: Raabin White Blood Cell Classification with Vision Transformers |
| S8.3 |
224 |
Attentive Regularization in Targeted Kernel Networks for Accurate Diabetic Retinopathy Grading |
| Parikh, Satyen |
S8.5 |
151 |
An Extensive Evaluation of Plant Disease Detection Using Diverse Machine Learning Approaches |
| Paul, Rahul |
S3.1 |
190 |
Current Topological and Machine Learning Applications for Bias Detection in Text |
| Pawar, Pranav |
S3.5 |
156 |
An Analysis of Blockchain Frameworks for Electronic Health Records Using Hyperledger |
| Pletnev, Leonid |
S6.1 |
5 |
Recognition of Pre-Emergency Situations During Oil Wells Exploitation Based on Telemetry Analysis |
| Poon, Kin |
S1.2 |
62 |
IMU-Based Human Activity Recognition Using Machine Learning and Deep Learning Models |
| R A B C D E F G H I J K L M N O P R S T U W Y Z |
| R, Elakkiya |
S3.5 |
156 |
An Analysis of Blockchain Frameworks for Electronic Health Records Using Hyperledger |
| Rawat, Deepak |
S6.5 |
27 |
Landslide Disaster Assessment with Integration of Social Media and Remote Sensing |
| Roushdy, Menna |
S5.2 |
93 |
Enhanced Image Encryption Using the Hénon Map, the LCG and the Lorenz System |
| S A B C D E F G H I J K L M N O P R S T U W Y Z |
| Saiki, Sachio |
S2.3 |
127 |
A Study of Project Description Inference Using Method Name Elements for Software Upcycling |
| S6.4 |
133 |
Using Data Integration Platform for Effective Location-Aware Service Development Platform |
| Samotuga, Alexander |
S6.1 |
5 |
Recognition of Pre-Emergency Situations During Oil Wells Exploitation Based on Telemetry Analysis |
| Saxena, Nishant |
S6.5 |
27 |
Landslide Disaster Assessment with Integration of Social Media and Remote Sensing |
| Semushin, Sergey |
S5.5 |
145 |
HTTP Header Reordering-Based Covert Channel Protocol |
| Seytnazarov, Shinnazar |
S5.5 |
145 |
HTTP Header Reordering-Based Covert Channel Protocol |
| Shah, Kaushal |
S4.5 |
21 |
Blockchain-Enabled DNS: Enhancing Security and Mitigating Attacks in Domain Name Systems |
| S5.6 |
71 |
DiffT: A Novel Approach for Privacy-Preserving Data Analytics |
| Sharma, Mukat |
S6.5 |
27 |
Landslide Disaster Assessment with Integration of Social Media and Remote Sensing |
| Sharma, Sachin |
S4.5 |
21 |
Blockchain-Enabled DNS: Enhancing Security and Mitigating Attacks in Domain Name Systems |
| Shehada, Dina |
S1.1 |
39 |
Investigating the Impact of Sampling Techniques on an Imbalanced Classification Problem |
| Singh, Siddhant Gautam |
S2.5 |
33 |
A Hybrid Machine Learning Framework to Improve Parkinson's Disease Prediction Accuracy |
| Singh, Sushil |
S2.5 |
33 |
A Hybrid Machine Learning Framework to Improve Parkinson's Disease Prediction Accuracy |
| Singh, Yashbir |
S3.1 |
190 |
Current Topological and Machine Learning Applications for Bias Detection in Text |
| Sohail, Shahab |
S1.6 |
173 |
Exploring 2D Representation and Transfer Learning Techniques to Identify People on Indoor Localizati |
| Sulavko, Alexey |
S6.1 |
5 |
Recognition of Pre-Emergency Situations During Oil Wells Exploitation Based on Telemetry Analysis |
| Suthar, Falguni |
S8.5 |
151 |
An Extensive Evaluation of Plant Disease Detection Using Diverse Machine Learning Approaches |
| Suvyrin, Georgii |
S6.1 |
5 |
Recognition of Pre-Emergency Situations During Oil Wells Exploitation Based on Telemetry Analysis |
| T A B C D E F G H I J K L M N O P R S T U W Y Z |
| Telli, Khaled |
S1.3 |
167 |
Quadrotor Experimental Dynamic Identification with Comprehensive NARX Neural Networks |
| Terakawa, Kohei |
S2.3 |
127 |
A Study of Project Description Inference Using Method Name Elements for Software Upcycling |
| U A B C D E F G H I J K L M N O P R S T U W Y Z |
| Usman, Muhammad |
S7.2 |
77 |
TAQWA: Teaching Adolescents Quality Wadhu/Ablution Contactlessly Using Deep Learning |
| W A B C D E F G H I J K L M N O P R S T U W Y Z |
| Watanabe, Rei |
S5.3 |
99 |
LLM-Based Attack Scenarios Generator with IT Asset Management and Vulnerability Information |
| Watarai, Koki |
S5.4 |
104 |
Automated Mapping Method for Sysmon Logs to ATT&CK Techniques by Leveraging Atomic Red Team |
| Y A B C D E F G H I J K L M N O P R S T U W Y Z |
| Y. Almadhaani, Rayah |
S4.4 |
229 |
Detecting Wasted Resources in Hydroponic Systems |
| Z A B C D E F G H I J K L M N O P R S T U W Y Z |
| Zaky, Hesham |
S8.6 |
139 |
Multi-Disease Retinal Vessel Segmentation: A Deep Learning Approach |
| Zenati, Nadia |
S4.3 |
11 |
Enhancing Brain Tumour Diagnosis with Augmented Reality Rendering-Based 6 DoF Object Pose Estimation |
| Zitouni, Mohammad Sami |
S6.6 |
1 |
Predicting Temperature Change in the UAE Using Linear Regression and the LSTM Method |