collaborators

6 papers

eess.SP2025

Zak-OTFS to Integrate Sensing the I/O Relation and Data Communication

Muhammad Ubadah, Saif Khan Mohammed, Ronny Hadani +3

The Zak-OTFS input/output (I/O) relation is predictable and non-fading when the delay and Doppler periods are greater than the effective channel delay and Doppler spreads, a condit…

quant-ph2025

Spatially-Coupled QLDPC Codes

Siyi Yang, Robert Calderbank

Spatially-coupled (SC) codes is a class of convolutional LDPC codes that has been well investigated in classical coding theory thanks to their high performance and compatibility wi…

eess.SP2024

Zak-OTFS with Interleaved Pilots to Extend the Region of Predictable Operation

Jinu Jayachandran, Imran Ali Khan, Saif Khan Mohammed +3

When the delay period of the Zak-OTFS carrier is greater than the delay spread of the channel, and the Doppler period of the carrier is greater than the Doppler spread of the chann…

eess.SP2024

Delay-Doppler Signal Processing with Zadoff-Chu Sequences

Sandesh Rao Mattu, Imran Ali Khan, Venkatesh Khammammetti +4

Much of the engineering behind current wireless systems has focused on designing an efficient and high-throughput downlink to support human-centric communication such as video stre…

eess.SP2024

Zak-OTFS and Turbo Signal Processing for Joint Sensing and Communication

Jinu Jayachandran, Muhammad Ubadah, Saif Khan Mohammed +3

The Zak-OTFS input/output (I/O) relation is predictable and non-fading when the delay and Doppler periods are greater than the effective channel delay and Doppler spreads, a condit…

eess.SP2024

Zak-OTFS: Pulse Shaping and the Tradeoff between Time/Bandwidth Expansion and Predictability

Jinu Jayachandran, Rahul Kumar Jaiswal, Saif Khan Mohammed +3

The Zak-OTFS input/output (I/O) relation is predictable and non-fading when the delay and Doppler periods are greater than the effective channel delay and Doppler spreads, a condit…