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Sadaqat Jan

Researcher at University of Engineering and Technology, Lahore

Publications -  44
Citations -  356

Sadaqat Jan is an academic researcher from University of Engineering and Technology, Lahore. The author has contributed to research in topics: Ontology (information science) & Mobile computing. The author has an hindex of 8, co-authored 44 publications receiving 197 citations. Previous affiliations of Sadaqat Jan include University of Engineering and Technology, Peshawar & Brunel University London.

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A novel hybrid load forecasting framework with intelligent feature engineering and optimization algorithm in smart grid

TL;DR: Experimental results show that the proposed FE-SVR-mFFO forecasting framework outperforms benchmark frameworks like EMD-Svr-PSO, FS-TSFE-CBSSO, VMD-FFT-IOSVR, and DCP-SVM-WO in terms of accuracy, stability, and convergence rate.
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A multi-objective energy optimization in smart grid with high penetration of renewable energy sources

TL;DR: Simulation results illustrate that the proposed energy optimization model optimizes the performance of smart microgrid in aspects of operation cost, pollution emission, and availability compared to the existing models with/without involvement in hybrid DRPS and IBT.
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Vehicle Price Prediction System using Machine Learning Techniques

TL;DR: A system where price is dependent variable which is predicted, and this price is derived from factors like vehicle’s model, make, city, version, color, mileage, alloy rims and power steering is proposed.
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An Optimization Based Power Usage Scheduling Strategy Using Photovoltaic-Battery System for Demand-Side Management in Smart Grid

TL;DR: A novel optimization-based energy management framework that adapts consumer power usage patterns using real-time pricing signals and generation from utility and photovoltaic-battery systems to minimize electricity cost, to reduce carbon emission, and to mitigate peak power consumption subjected to alleviating rebound peak generation is proposed.
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Performance analysis of cooperative network over Nakagami and Rician fading channels

TL;DR: The results show that the cooperative network performs best when the relay is located in the middle of source to destination link, at lower SNR values, and the performance of the system is worst if the relay was located closer to the source than to the destination.