VLDB 2026 Research / reviewers in the wild / expert
Hany S. Khalifa
dblp:286/9334
· DBLP profile ↗
4ranked-venue papers
0as first author
4since 2021 · last 2026
0000-0001-9462-3409ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 2 · 2 since 2021Computer networks · 1 · 1 since 2021Graphics, computer vision, multimedia, augmented reality and games · 1 · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Tiny Deep Learning Models With Hybrid Compression Techniques for Gesture-Based Air Handwriting Recognition of English Alphabets on Edge DeviceabstractAs touchless interaction becomes increasingly important in wearable and ambient computing, gesture-based air handwriting offers a promising input modality, particularly for low-power embedded devices. While vision-based and radar-based systems have achieved high accuracy in gesture recognition, they are often unsuitable for deployment on microcontrollers due to their computational and energy demands. In contrast, IMU-based systems provide a lightweight and privacy-preserving alternative, yet existing research rarely addresses full alphabet recognition or deployment-ready pipelines for resource-constrained environments. This paper proposes a complete TinyML pipeline for inertial-based air handwriting recognition of English alphabets, integrating structured preprocessing of raw IMU data into 2D rasterized gesture images, followed by training and deployment of four lightweight deep learning models: SqueezeNet, EfficientNet-Lite0, ShuffleNetV2, and FastKAN. The models are evaluated under a unified training configuration and subjected to compression techniques including quantization, pruning, and knowledge distillation. Among them, FastKAN demonstrates significant superiority, achieving a test accuracy of 97.4% with a minimal model size of 120 KB and energy consumption as low as 0.0011J per inference after hybrid compression. This work explicitly targets isolated characters (A–Z, a–z); continuous handwriting and word-level recognition are out of scope and left for future work. Extensive evaluations, including confusion matrix analysis, compression benchmarking, and successful deployment on an Arduino Nano 33 BLE Sense, demonstrate the practicality, efficiency, and robustness of the proposed system for real-time TinyML-based handwriting recognition applications. Ismail Lamaakal, Chaymae Yahyati, Zakaria Charroud, Khalid El Makkaoui, Ibrahim Ouahbi, Yassine Maleh, Samia Allaoua Chelloug, Ahmed A. Abd El-Latif 0001, Hany S. Khalifa, Dusit Niyato |
IEEE Internet Things J. | 9 |
| 2024 | Detection of myocardial infarction based on novel deep transfer learning methods for urban healthcare in smart cities
Ahmed Alghamdi, Mohamed Hammad, Hassan Ugail, Asmaa Abdel-Raheem, Khan Muhammad 0001, Hany S. Khalifa, Ahmed A. Abd El-Latif 0001 |
Multim. Tools Appl. | 6 |
| 2022 | A new anonymous authentication framework for secure smart grids applications
Muhammad Tanveer 0003, Musheer Ahmad 0002, Hany S. Khalifa, Ahmed Alkhayyat 0001, Ahmed A. Abd El-Latif 0001 |
J. Inf. Secur. Appl. | 3 |
| 2021 | Securing Digital Images through Simple Permutation-Substitution Mechanism in Cloud-Based Smart City EnvironmentabstractData security plays a significant role in data transfer in cloud-based smart cities. Chaotic maps are commonly used in designing modern cryptographic applications, in which one-dimensional (1D) chaotic systems are widely used due to their simple design and low computational complexity. However, 1D chaotic maps suffer from different kinds of attacks because of their chaotic discontinuous ranges and small key-space. To own the benefits of 1D chaotic maps and avoid their drawbacks, the cascading of two integrated 1D chaotic systems has been utilized. In this paper, we report an image cryptosystem for data transfer in cloud-based smart cities using the cascading of Logistic-Chebyshev and Logistic-Sine maps. Logistic-Sine map has been utilized to permute the plain image, and Logistic-Chebyshev map has been used to substitute the permuted image, while the cascading of both integrated maps has been utilized in performing XOR procedure on the substituted image. The security analyses of the suggested approach prove that the encryption mechanism has good efficiency as well as lower encryption time compared with other related algorithms. Ahmad Alanezi, Bassem Abd-El-Atty, Hoshang Kolivand, Ahmed A. Abd El-Latif 0001, Basma Abd El-Rahiem, Syam Sankar, Hany S. Khalifa |
Secur. Commun. Networks | 7 |