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Imtiaz Parvez
Researcher at Florida International University
Publications - 44
Citations - 1164
Imtiaz Parvez is an academic researcher from Florida International University. The author has contributed to research in topics: Smart grid & Smart meter. The author has an hindex of 13, co-authored 40 publications receiving 795 citations. Previous affiliations of Imtiaz Parvez include University of Miami & State University of Campinas.
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A Survey on Low Latency Towards 5G: RAN, Core Network and Caching Solutions
TL;DR: This paper presents a detailed survey on the emerging technologies to achieve low latency communications considering three different solution domains: 1) RAN; 2) core network; and 3) caching.
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Securing Metering Infrastructure of Smart Grid: A Machine Learning and Localization Based Key Management Approach
TL;DR: This paper proposes a localization-based key management system for meter data encryption, and proposes the k-nearest neighbors (kNN) algorithm for node/meter authentication, capitalizing further on data transmission security.
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Online power quality disturbance detection by support vector machine in smart meter
TL;DR: This study proposes segregation of the power disturbance from regular values using one-class support vector machine (OCSVM), a semi-supervised machine learning algorithm which is able to automatically detect any types of disturbances in real time, even unknown types which are not available in the training time.
Proceedings ArticleDOI
Multi-armed bandit for LTE-U and WiFi coexistence in unlicensed bands
TL;DR: A Multi-Armed Bandit (MAB) based dynamic duty cycle selection method is proposed for configuration of transmission gaps ensuring a better coexistence for both technologies.
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A Survey on Cybersecurity Challenges, Detection, and Mitigation Techniques for the Smart Grid
TL;DR: This survey explores various threats and vulnerabilities that can affect the key elements of cybersecurity in the smart grid network and then presents the security measures to avert those threats andulnerabilities at three different levels.