In this paper the optimization of a Tubular Permanent Magnet-Linear Generator (TPM-LiG) for energy generation is presented. The application is related to the sea wave energy generation for small sensorized buoy. The optimization process is developed by means of an hybrid evolutionary algorithm widely presented in the paper. The advantage of this algorithm is in the wide exploration of the variables space and in the effective exploitation of the fitness function. The algorithm has been tested on a benchmark case and then applied to the optimization of the here considered device.

Optimization of a linear generator for sea-wave energy conversion by means of a hybrid evolutionary algorithm

PIRISI, ANDREA;MUSSETTA, MARCO;GRUOSSO, GIAMBATTISTA;ZICH, RICCARDO
2010-01-01

Abstract

In this paper the optimization of a Tubular Permanent Magnet-Linear Generator (TPM-LiG) for energy generation is presented. The application is related to the sea wave energy generation for small sensorized buoy. The optimization process is developed by means of an hybrid evolutionary algorithm widely presented in the paper. The advantage of this algorithm is in the wide exploration of the variables space and in the effective exploitation of the fitness function. The algorithm has been tested on a benchmark case and then applied to the optimization of the here considered device.
2010
2010 IEEE Congress on Evolutionary Computation
9781424469093
TPM-LiG; hybrid evolutionary algorithm; linear generator optimization; optimization process; sea-wave energy conversion; sensorized buoy; tubular permanent magnet-linear generator; evolutionary computation; linear motors; optimisation; permanent magnet generators; wave power generation; sezele
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/574940
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