activity
20152026
most citedDiffusive Mobile Molecular Communications Over Time-Variant Channels

85 citations · 199 across the 41 of their papers we have counts for

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Showing 2017Show all

10 papers · 1 filter

cs.IT2017

On the Capacity of SWIPT Systems with a Nonlinear Energy Harvesting Circuit

Rania Morsi, Vahid Jamali, Derrick Wing Kwan Ng +1

In this paper, we study information-theoretic limits for simultaneous wireless information and power transfer (SWIPT) systems employing a practical nonlinear radio frequency (RF) e…

cs.IT2017

Diffusive Molecular Communications with Reactive Signaling

Vahid Jamali, Nariman Farsad, Robert Schober +1

This paper focuses on molecular communication (MC) systems where the signaling molecules may participate in a reversible bimolecular reaction in the channel. The motivation for stu…

cs.IT2017

Statistical Modeling of FSO Fronthaul Channel for Drone-based Networks

Marzieh Najafi, Hedieh Ajam, Vahid Jamali +3

We consider a drone-based communication network, where several drones hover above an area and serve as mobile remote radio heads for a large number of mobile users. We assume that…

eess.SP2017

Non-Orthogonal Multiple Access for FSO Backhauling

Marzieh Najafi, Vahid Jamali, Panagiotis D. Diamantoulakis +2

We consider a free space optical (FSO) backhauling system which consists of two base stations (BSs) and one central unit (CU). We propose to employ non-orthogonal multiple access (…

cs.IT2017

Symbol Synchronization for Diffusion-Based Molecular Communications

Vahid Jamali, Arman Ahmadzadeh, Robert Schober

Symbol synchronization refers to the estimation of the start of a symbol interval and is needed for reliable detection. In this paper, we develop several symbol synchronization sch…

cs.IT20173 cited

Non-Coherent Detection for Diffusive Molecular Communications

Vahid Jamali, Nariman Farsad, Robert Schober +1

We study non-coherent detection schemes for molecular communication (MC) systems that do not require knowledge of the channel state information (CSI). In particular, we first deriv…