Search Results for author: Indrakshi Dey

Found 7 papers, 0 papers with code

RIS-aided Wireless Communication with Movable Elements Geometry Impact on Performance

no code implementations30 Apr 2024 Yan Zhang, Indrakshi Dey, Nicola Marchetti

Reconfigurable Intelligent Surfaces (RIS) are known as a promising technology to improve the performance of wireless communication networks, and have been extensively studied.

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Wavelet Packet Division Multiplexing (WPDM)-Aided Industrial WSNs

no code implementations28 May 2023 Indrakshi Dey, Nicola Marchetti

The central platform incorporates a decision fusion center (DFC) that arrives at global decisions regarding each set of phenomena by combining the received local sensor decisions.

IoT Localization and Optimized Topology Extraction Using Eigenvector Synchronization

no code implementations28 May 2023 Indrakshi Dey, Nicola Marchetti

Internet-of-Things (IoT) devices are low size, weight and power (SWaP), low complexity and include sensors, meters, wearables and trackers.

Transmit Power Optimization of IoT Devices over Incomplete Channel Information

no code implementations27 May 2023 Nirmal D. Wickramasinghe, Indrakshi Dey

In this paper, we focus on the transmit power minimization problem for IoT devices while maintaining a threshold channel throughput.

Modelling Underwater Acoustic Propagation using One-way Wave Equations

no code implementations14 Feb 2022 Indrakshi Dey

The primary contribution of this paper is to characterize the propagation of acoustic signal carrying information through any medium and the interaction of the travelling acoustic signal with the surrounding medium.

A Nano-Architecture for Fertility Monitoring via Intra-body Communication

no code implementations4 Feb 2022 Shama Siddiqui, Anwar Ahmed Khan, Qammer H. Abbasi, Muhammad Ali Imran, Indrakshi Dey

The architecture combines intra-body nano-sensor network for detecting Fallopian tube activity, with body-area network for receiving information from the intra-body network and communicating the same over-the-air to the involved personnel (physician/nurse/patient).

Modelling Quantum Channels Carrying Classical Information

no code implementations5 Dec 2021 Indrakshi Dey, Simon L. Cotton

We use the concept of coupled quantum harmonic oscillators to model the propagation environment in which a quantum link carrying either classical or quantum information operates.

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