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Vijay Bhaskar Semwal


Designation: Assistant Professor

Email Address:

Organization: MANIT Bhopal

Qualification: Ph.D.

Enrollment Type: Life Member

Enrollment Number: 2021-12-01-2321

Office Address: Department of Computer Science and Engineering Maulana Azad National Institute of Technology, Bhopal, Madhya Pradesh, India

Website: http://www.manit.ac.in/hi/content/dr-vijay-bhaskar-semwal

Valid Till:

Publications

Semwal, Vijay Bhaskar, Anjali Gupta, and Praveen Lalwani. "An optimized hybrid deep learning model using ensemble learning approach for human walking activities recognition." The Journal of Supercomputing (2021): 1-24.

Semwal, Vijay Bhaskar, et al. "An optimized feature selection using bio-geography optimization technique for human walking activities recognition." Computing (2021): 1-22.

Jain, Rahul, Vijay Bhaskar Semwal, and Praveen Kaushik. "Deep ensemble learning approach for lower extremity activities recognition using wearable sensors." Expert Systems (2021): e12743.

Semwal, Vijay Bhaskar, et al. "Speed, cloth and pose invariant gait recognition-based person identification." Machine Learning: Theoretical Foundations and Practical Applications. Springer, Singapore, 2021. 39-56.

Gupta, Anjali, and Vijay Bhaskar Semwal. "Multiple task human gait analysis and identification: ensemble learning approach." Emotion and information processing. Springer, Cham, 2020. 185-197.

Semwal, Vijay Bhaskar, et al. "Pattern identification of different human joints for different human walking styles using inertial measurement unit (IMU) sensor." Artificial Intelligence Review (2021): 1-21.

Dua, Nidhi, Shiva Nand Singh, and Vijay Bhaskar Semwal. "Multi-input CNN-GRU based human activity recognition using wearable sensors." Computing (2021): 1-18.

Semwal, Vijay Bhaskar, Neha Gaud, and Gora Chand Nandi. "Human gait state prediction using cellular automata and classification using ELM." Machine intelligence and signal analysis. Springer, Singapore, 2019. 135-145.

Semwal, Vijay Bhaskar, et al. "Design of vector field for different subphases of gait and regeneration of gait pattern." IEEE Transactions on Automation Science and Engineering 15.1 (2016): 104-110.

Bijalwan, Vishwanath, Vijay Bhaskar Semwal, and T. K. Mandal. "Fusion of Multi-sensor based Biomechanical Gait Analysis using Vision and Wearable Sensor." IEEE Sensors Journal (2021).