K
Kaveh Dehghanpour
Researcher at Iowa State University
Publications - 53
Citations - 1476
Kaveh Dehghanpour is an academic researcher from Iowa State University. The author has contributed to research in topics: Smart meter & Photovoltaic system. The author has an hindex of 14, co-authored 52 publications receiving 836 citations. Previous affiliations of Kaveh Dehghanpour include Montana State University & University of Tehran.
Papers
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A Survey on State Estimation Techniques and Challenges in Smart Distribution Systems
TL;DR: The critical topics of DSSE, including mathematical problem formulation, application of pseudo-measurements, metering instrument placement, network topology issues, impacts of renewable penetration, and cyber-security are discussed.
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A Survey on State Estimation Techniques and Challenges in Smart Distribution Systems
TL;DR: In this article, a review of the literature on state estimation in power systems is presented, including mathematical problem formulation, application of pseudo-measurements, metering instrument placement, network topology issues, impacts of renewable penetration, and cyber-security.
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Electrical demand side contribution to frequency control in power systems: a review on technical aspects
TL;DR: In this article, the authors provide a review on various design and control schemes of electrical load contribution to frequency control algorithms; both centralized and decentralized control structures are discussed in details, and the problem of synchronization of certain types of electrical loads and different proposed methods of avoiding it are also presented and discussed.
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Agent-Based Modeling of Retail Electrical Energy Markets With Demand Response
TL;DR: Simulation results show that the proposed approach leads to a reduction in overall power consumption cost as the system converges to its equilibrium, which coincides with maximization in the retailer’s profit.
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Distributed CVR in Unbalanced Distribution Systems With PV Penetration
TL;DR: A distributed dispatch method is developed to coordinate PV inverters and conventional voltage regulation devices in distribution systems based on a modified alternating direction method of multipliers algorithm to handle non-convex optimization problems without relaxing the original formulation, which could lead to sub-optimality.