Please use this identifier to cite or link to this item: https://hdl.handle.net/10356/88192
Title: Unit commitment with AC power flow constraints for a hybrid transmission grid
Authors: Sampath, Lahanda Purage Mohasha Isuru
Hotz, M.
Gooi, Hoay Beng
Utschick, Wolfgang
Keywords: Capacity Expansion
Convex Relaxation
DRNTU::Engineering::Electrical and electronic engineering
Issue Date: 2018
Source: Sampath, L. P. M. I., Hotz, M., Gooi, H. B., & Utschick, W. (2018). Unit commitment with AC power flow constraints for a hybrid transmission grid. Proceedings of 20th Power Systems Computation Conference.
Conference: 20th Power Systems Computation Conference
Abstract: A unit commitment formulation satisfying AC optimal power flow constraints models the resource optimization problem accurately, but is challenging to solve for traditional transmission systems. Integration of generation based on renewable energy sources is often limited by transmission congestion issues in existing grids. For such grids, AC to HVDC conversion schemes are viable and attractive options for capacity expansion. In this respect, we utilize the structural properties of a hybrid AC/HVDC grid architecture with a specific topology to enable an exact mixed integer conic relaxation of the aforementioned problem. The simulation results for the PJM 5-bus system show that the relaxation is exact for the hybrid architecture. Further, it alleviates the network congestion leading to a substantial reduction in generation cost at normal and increased load conditions compared to the reference AC grid. Moreover, the hybrid architecture improves the utilization of the grid to accommodate more demand and generation.
URI: https://hdl.handle.net/10356/88192
http://hdl.handle.net/10220/47700
URL: http://pscc-central.epfl.ch/papers-repo
Schools: School of Electrical and Electronic Engineering 
Interdisciplinary Graduate School (IGS) 
Rights: © 2018 The Author(s). All rights reserved. This paper was published by 20th Power Systems Computation Conference in Proceedings of 20th Power Systems Computation Conference and is made available with permission of The Author(s).
Fulltext Permission: open
Fulltext Availability: With Fulltext
Appears in Collections:EEE Conference Papers
IGS Conference Papers

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