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1.
Appl Opt ; 57(16): 4396-4401, 2018 Jun 01.
Article in English | MEDLINE | ID: mdl-29877384

ABSTRACT

In order to assess the performance of solar micro-concentrators, specific methods and protocols need to be developed, tested, and applied. In detail, as in conventional concentration modules, one of the fundamental parameters to consider is the efficiency of optical concentrators. In fact, optical concentrators give fundamental information on the current potentially generated from solar microcells that receive the concentrated light radiation. To develop a measurement method for micrometer-size optical components, a suitable optical system was implemented and used. Moreover, the potential application of the printed microstructures in an optical system for solar micro-concentrators was demonstrated.

2.
Appl Opt ; 52(32): 7699-705, 2013 Nov 10.
Article in English | MEDLINE | ID: mdl-24216727

ABSTRACT

In the present work, the pyro-electrohydrodynamic technique was used for the realization of tunable-size microlens arrays. Poly(methyl methacrylate) dissolved in different solvent mixtures was used as the polymeric material for the realization of the microstructures. By controlling the experimental parameters and in particular, the volume of the drop reservoir, graded-size square arrays of tens of microlenses with focal length in the range 1.5-3 mm were produced. Moreover, the optical quality and geometrical features were investigated by profilometric and interferometric analysis.

4.
Appl Opt ; 46(12): 2166-79, 2007 Apr 20.
Article in English | MEDLINE | ID: mdl-17415384

ABSTRACT

A radiometric method has been developed, suitable for both total power and flux density profile measurement of concentrated solar radiation. The high-flux density radiation is collected by a first optical cavity, integrated, and driven to a second optical cavity, where, attenuated, it is measured by a conventional radiometer operating under a stationary irradiation regime. The attenuation factor is regulated by properly selecting the aperture areas in the two cavities. The radiometer has been calibrated by a pulsed solar simulator at concentration levels of hundreds of suns. An optical model and a ray-tracing study have also been developed and validated, by which the potentialities of the radiometer have been largely explored.


Subject(s)
Optics and Photonics/instrumentation , Radiation Monitoring/instrumentation , Signal Processing, Computer-Assisted/instrumentation , Solar Energy , Transducers , Dose-Response Relationship, Radiation , Equipment Design , Equipment Failure Analysis , Radiation Dosage , Radiation Monitoring/methods , Reproducibility of Results , Sensitivity and Specificity
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