F
Farid Touati
Researcher at Qatar University
Publications - 173
Citations - 2521
Farid Touati is an academic researcher from Qatar University. The author has contributed to research in topics: Wireless sensor network & Noise figure. The author has an hindex of 22, co-authored 163 publications receiving 1774 citations. Previous affiliations of Farid Touati include Sultan Qaboos University.
Papers
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Journal ArticleDOI
u-Healthcare system: state-of-the-art review and challenges.
Farid Touati,Rohan Tabish +1 more
TL;DR: A comprehensive review of up-to-date requirements in hardware, communication, and computing for next-generation u-Health systems is presented and new technological trends and design challenges they have to cope with, while designing such systems are presented.
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A Modular IoT Platform for Real-Time Indoor Air Quality Monitoring.
TL;DR: An end-to-end IAQM system enabling measurement of CO2, CO, SO2, NO2, O3, Cl2, ambient temperature, and relative humidity and is adapted to an open-source Internet-of-Things (IoT) web-server platform, called Emoncms, for live monitoring and long-term storage of the collected IAZM data.
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Investigation of solar PV performance under Doha weather using a customized measurement and monitoring system
TL;DR: In this article, the authors proposed a customized cost-effective solution that allows monitoring and predicting the performance of PV systems, fostering thus efficient planning and control strategies for network stability, and designed an in-house system featuring a buckboost converter enhanced with a maximum power point tracker (MPPT) serving as a PV load, sensors' system that collects climatic parameters including dust, wireless Radio, and a LabVIEW based monitoring and recording station.
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On the effects of combined atmospheric fading and misalignment on the hybrid FSO/RF transmission
TL;DR: This paper derives a closed-form expression for the bit error rate (BER) of the FSO link in such conditions when the on-off keying (OOK) modulation is employed and when the fluctuations of the received signal are modeled by Gamma- Gamma distribution.
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Ultrahigh Aspect Ratio Copper-Nanowire-Based Hybrid Transparent Conductive Electrodes with PEDOT:PSS and Reduced Graphene Oxide Exhibiting Reduced Surface Roughness and Improved Stability.
Zhaozhao Zhu,Trent Mankowski,Kaushik Balakrishnan,Ali Sehpar Shikoh,Farid Touati,Mohieddine Benammar,Masud Mansuripur,Charles M. Falco +7 more
TL;DR: The best-performing PEDOT PSS/CuNW films have optical transmittance T550 = 84.2% (at λ = 550 nm) and sheet resistance Rs = 25 Ω/sq, while the best CuNW/rGO films have T 550 = 84% and Rs = 21.7 Ω /sq.