activity
20182021
most citedOn the Use of CSI for the Generation of RF Fingerprints and Secret Keys

8 citations · 8 across the 2 of their papers we have counts for

collaborators

7 papers

cs.IT20218 cited

On the Use of CSI for the Generation of RF Fingerprints and Secret Keys

Muralikrishnan Srinivasan, Sotiris Skaperas, Arsenia Chorti

This paper presents a systematic approach to use channel state information for authentication and secret key distillation for physical layer security (PLS). We use popular machine…

eess.SP2021

Airplane-Aided Integrated Next-Generation Networking

Muralikrishnan Srinivasan, Sarath Gopi, Sheetal Kalyani +2

A high-rate yet low-cost air-to-ground (A2G) communication backbone is conceived for integrating the space and terrestrial network by harnessing the opportunistic assistance of the…

cs.IT2020

Green DetNet: Computation and Memory efficient DetNet using Smart Compression and Training

Nancy Nayak, Thulasi Tholeti, Muralikrishnan Srinivasan +1

This paper introduces an incremental training framework for compressing popular Deep Neural Network (DNN) based unfolded multiple-input-multiple-output (MIMO) detection algorithms…

cs.IT2019

Transmit Power Policy and Ergodic Multicast Rate Analysis of Cognitive Radio Networks in Generalized Fading

Athira Subhash, Muralikrishnan Srinivasan, Sheetal Kalyani +1

This paper determines the optimum secondary user power allocation and ergodic multicast rate of point-to-multipoint communication in a cognitive radio network in the presence of ou…

cs.IT2019

Joint power and resource allocation of D2D communication with low-resolution ADC

Muralikrishnan Srinivasan, Athira Subhash, Sheetal Kalyani

This paper considers the joint power control and resource allocation for a device-to-device (D2D) underlay cellular system with a multi-antenna BS employing ADCs with different res…

cs.IT2018

Asymptotic maximum order statistic for SIR in shadowed fading

Athira Subhash, Muralikrishnan Srinivasan, Sheetal Kalyani

Using tools from extreme value theory (EVT), it is proved that, when the user signal and the interferer signals undergo independent and non-identically distributed (i.n.i.d.)