activity
20242026
collaborators

12 papers

eess.SP2026

Inter-frame Channel Prediction for Zak-OTFS

Muhammad Ubadah, Saif Khan Mohammed

Zak-Orthogonal Time Frequency Space (OTFS) modulation is known to be robust to Doppler spread in high mobility scenarios when compared to Orthogonal Frequency Division Multiplexing…

eess.SP2026

MIMO Zak-OTFS: Channel Estimation, Detection, and Throughput Analysis

Faraz Barati, Rahul Kumar Jaiswal, Saif Khan Mohammed +2

Zak-Orthogonal Time Frequency Space (Zak-OTFS) modulation has demonstrated substantial performance gains over cyclic-prefix orthogonal frequency-division multiplexing (CP-OFDM) in…

eess.SP2026

Improving Doppler Resilience of OFDM through Delay-Doppler Sensing

Danish Nisar, Saif Khan Mohammed, Muhammad Ubadah +2

The performance of traditional CP-OFDM degrades severely in doubly-spread wireless channels due to inter-carrier interference (ICI). In this paper, we propose DD domain sensing bas…

eess.SP2026

Does 6G Need a New Waveform: Comparing Zak-OTFS with CP-OFDM

Imran Ali Khan, Saif Khan Mohammed, Ronny Hadani +6

Across the world, there is growing interest in new waveforms, Zak-OTFS in particular, and over-the-air implementations are starting to appear. The choice between OFDM and Zak-OTFS…

eess.SP2025

Discrete Radar based on Modulo Arithmetic

Nishant Mehrotra, Sandesh Rao Mattu, Saif Khan Mohammed +2

Zak-OTFS is modulation scheme where signals are formed in the delay-Doppler (DD) domain, converted to the time domain (DD) for transmission and reception, then returned to the DD d…

eess.SP2025

Zak-OTFS over CP-OFDM

Saif Khan Mohammed, Saurabh Prakash, Muhammad Ubadah +7

Zak-Orthogonal Time Frequency Space (Zak-OTFS) modulation has been shown to achieve significantly better performance compared to the standardized Cyclic-Prefix Orthogonal Frequency…