Robust design of a passive wind turbine system
Purpose - The effectiveness of full passive wind turbine (WT) systems has been recently demonstrated. Such low cost and reliable structures without active control and with a minimum number of sensors can be efficient only if the system design parameters are mutually adapted through an integrated opt...
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Published in | Compel Vol. 31; no. 3; pp. 932 - 944 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Bradford
Emerald Group Publishing Limited
01.01.2012
Emerald |
Subjects | |
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Abstract | Purpose - The effectiveness of full passive wind turbine (WT) systems has been recently demonstrated. Such low cost and reliable structures without active control and with a minimum number of sensors can be efficient only if the system design parameters are mutually adapted through an integrated optimal design approach. The purpose of this paper is to analyze the effectiveness of a passive WT with regard to the variations of PMSG electrical parameters.Design methodology approach - This work is more specifically devoted to the sensitivity analysis of a passive WT system according to the electrical variable variations of a Permanent Magnet Synchronous Generator (PMSG). It also investigates the interest of a robust design approach for reducing the sensitivity of the WT efficiency to the most influencing variables.Findings - It is shown that efficiency of the passive WT system is rather sensitive to the variation of the stator flux and DC voltage at the system output.Originality value - A robust design approach is investigated in order to reduce the passive WT sensitivity to the stator flux and DC voltage variations. |
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AbstractList | Purpose - The effectiveness of full passive wind turbine (WT) systems has been recently demonstrated. Such low cost and reliable structures without active control and with a minimum number of sensors can be efficient only if the system design parameters are mutually adapted through an integrated optimal design approach. The purpose of this paper is to analyze the effectiveness of a passive WT with regard to the variations of PMSG electrical parameters. Design/methodology/approach - This work is more specifically devoted to the sensitivity analysis of a passive WT system according to the electrical variable variations of a Permanent Magnet Synchronous Generator (PMSG). It also investigates the interest of a robust design approach for reducing the sensitivity of the WT efficiency to the most influencing variables. Findings - It is shown that efficiency of the passive WT system is rather sensitive to the variation of the stator flux and DC voltage at the system output. Originality/value - A robust design approach is investigated in order to reduce the passive WT sensitivity to the stator flux and DC voltage variations. The effectiveness of full passive Wind Turbine (WT) systems has been recently demonstrated. Such low cost and reliable structures without active control and with a minimum number of sensors can be efficient only if the system design parameters are mutually adapted through an integrated optimal design approach. Even if there is a good agreement between theoretical design models and an experimental prototype, it is relevant to evaluate the WT efficiency with respect to design variable variations. Thus, this work is devoted more specifically to the sensitivity analysis of a passive WT system according to electrical variable variations of the Permanent Magnet Synchronous Generator (PMSG). It also investigates the interest of a robust design approach for reducing the sensitivity of the WT efficiency to specific variable variations. Purpose The effectiveness of full passive wind turbine (WT) systems has been recently demonstrated. Such low cost and reliable structures without active control and with a minimum number of sensors can be efficient only if the system design parameters are mutually adapted through an integrated optimal design approach. The purpose of this paper is to analyze the effectiveness of a passive WT with regard to the variations of PMSG electrical parameters. Design/methodology/approach This work is more specifically devoted to the sensitivity analysis of a passive WT system according to the electrical variable variations of a Permanent Magnet Synchronous Generator (PMSG). It also investigates the interest of a robust design approach for reducing the sensitivity of the WT efficiency to the most influencing variables. Findings It is shown that efficiency of the passive WT system is rather sensitive to the variation of the stator flux and DC voltage at the system output. Originality/value A robust design approach is investigated in order to reduce the passive WT sensitivity to the stator flux and DC voltage variations. |
Author | Sareni, Bruno Roboam, Xavier Bru, Eric Hoan Tran, Duc De Andrade, André |
Author_xml | – sequence: 1 givenname: Duc surname: Hoan Tran fullname: Hoan Tran, Duc organization: LAPLACE UMR CNRS-INPT-UPS, Université de Toulouse, Toulouse, France – sequence: 2 givenname: Bruno surname: Sareni fullname: Sareni, Bruno organization: LAPLACE UMR CNRS-INPT-UPS, Université de Toulouse, Toulouse, France – sequence: 3 givenname: Xavier surname: Roboam fullname: Roboam, Xavier organization: LAPLACE UMR CNRS-INPT-UPS, Université de Toulouse, Toulouse, France – sequence: 4 givenname: Eric surname: Bru fullname: Bru, Eric organization: LAPLACE UMR CNRS-INPT-UPS, Université de Toulouse, Toulouse, France – sequence: 5 givenname: André surname: De Andrade fullname: De Andrade, André organization: LAPLACE UMR CNRS-INPT-UPS, Université de Toulouse, Toulouse, France |
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Keywords | Optimum design Sensitivity analysis Integrated optimal design Multiobjective optimization Wind power Wind turbine Turbines Robust design |
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Snippet | Purpose - The effectiveness of full passive wind turbine (WT) systems has been recently demonstrated. Such low cost and reliable structures without active... Purpose The effectiveness of full passive wind turbine (WT) systems has been recently demonstrated. Such low cost and reliable structures without active... The effectiveness of full passive Wind Turbine (WT) systems has been recently demonstrated. Such low cost and reliable structures without active control and... |
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StartPage | 932 |
SubjectTerms | Behavior Design engineering Direct current Efficiency Electric potential Electric power Engineering Sciences Flux Genetic algorithms Optimization Sensitivity analysis Stators Studies Turbines Variables Voltage Wind power Wind turbines |
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Title | Robust design of a passive wind turbine system |
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