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Increasing energy efficiency by optimizing the electrical infrastructure of a railway line using fireworks algorithm

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BOOK CHAPTER ROCH-DUPRE GONSALVES.pdf (658.2Kb)
Date
28/02/2020
Author
Roch Dupré, David
Gonsalves, Tad
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info:eu-repo/semantics/publishedVersion
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Abstract
This chapter proposes the application of a discrete version of the Fireworks Algorithm (FWA) and a novel PSO-FWA hybrid algorithm to optimize the energy efficiency of a metro railway line. This optimization consists in determining the optimal configuration of the Energy Storage Systems (ESSs) to install in a railway line, including their number, location, and power (kW). The installation of the ESSs will improve the energy efficiency of the system by incrementing the use of the regenerated energy produced by the trains in the braking phases, as the ESSs will store the excess of regenerated energy and return it to the system when necessary. The results for this complex optimization problem produced by the two algorithms are excellent and authors prove that the novel PSO-FWA algorithm proposed in this chapter outperforms the standard FWA.
 
This chapter proposes the application of a discrete version of the Fireworks Algorithm (FWA) and a novel PSO-FWA hybrid algorithm to optimize the energy efficiency of a metro railway line. This optimization consists in determining the optimal configuration of the Energy Storage Systems (ESSs) to install in a railway line, including their number, location, and power (kW). The installation of the ESSs will improve the energy efficiency of the system by incrementing the use of the regenerated energy produced by the trains in the braking phases, as the ESSs will store the excess of regenerated energy and return it to the system when necessary. The results for this complex optimization problem produced by the two algorithms are excellent and authors prove that the novel PSO-FWA algorithm proposed in this chapter outperforms the standard FWA.
 
URI
10.4018/978-1-7998-1659-1.ch012
http://hdl.handle.net/11531/45939
Increasing energy efficiency by optimizing the electrical infrastructure of a railway line using fireworks algorithm
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Optimization of Energy Storage Systems. Railway power systems. Railway simulation. Energy efficiency. Nature-inspired optimization algorithms
Optimization of Energy Storage Systems. Railway power systems. Railway simulation. Energy efficiency. Nature-inspired optimization algorithms
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