activity
20142024
most citedBeyond Transmitting Bits: Context, Semantics, and Task-Oriented Communications

26 citations · 30 across the 13 of their papers we have counts for

collaborators

8 papers

cs.IT2022

Modeling of Dense CSMA Networks using Random Sequential Adsorption Process

Priyabrata Parida, Harpreet S. Dhillon

We model a dense wireless local area network where the access points (APs) employ carrier sense multiple access (CSMA)-type medium access control protocol. In our model, the spatia…

cs.IT202226 cited

Beyond Transmitting Bits: Context, Semantics, and Task-Oriented Communications

Deniz Gunduz, Zhijin Qin, Inaki Estella Aguerri +5

Communication systems to date primarily aim at reliably communicating bit sequences. Such an approach provides efficient engineering designs that are agnostic to the meanings of th…

cs.IT2022

Fundamentals of Vehicular Communication Networks with Vehicle Platoons

Kaushlendra Pandey, Kanaka Raju Perumalla, Abhishek K. Gupta +1

Vehicular platooning is a promising way to facilitate efficient movement of vehicles with a shared route. Despite its relevance, the interplay of platooning and the communication p…

cs.IT20171 cited

Downlink Coverage Analysis for a Finite 3D Wireless Network of Unmanned Aerial Vehicles

Vishnu Vardhan Chetlur, Harpreet S. Dhillon

In this paper, we consider a finite network of unmanned aerial vehicles (UAVs) serving a given region. Modeling this network as a uniform binomial point process (BPP), we derive th…

cs.IT2016

Nearest-Neighbor and Contact Distance Distributions for Thomas Cluster Process

Mehrnaz Afshang, Chiranjib Saha, Harpreet S. Dhillon

We characterize the statistics of nearest-neighbor and contact distance distributions for Thomas cluster process (TCP), which is a special case of Poisson cluster process. In parti…

cs.IT2014

Analysis of Joint Transmit-Receive Diversity in Downlink MIMO Heterogeneous Cellular Networks

Ralph Tanbourgi, Harpreet S. Dhillon, Friedrich K. Jondral

We study multiple-input multiple-output (MIMO) based downlink heterogeneous cellular network (HetNets) with joint transmit-receive diversity using orthogonal space-time block codes…