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公开(公告)号:US20190137336A1
公开(公告)日:2019-05-09
申请号:US16237942
申请日:2019-01-02
Applicant: SPECTRAFY INC.
Inventor: VIKTAR TATSIANKOU , RICHARD BEAL
CPC classification number: G01J3/36 , G01J1/0403 , G01J1/0411 , G01J1/0433 , G01J1/0474 , G01J1/0492 , G01J1/06 , G01J3/0202 , G01J3/0205 , G01J3/0208 , G01J3/0262 , G01J2001/0481 , G01J2001/061 , G01J2001/4266 , G01J2003/1213 , G01J2003/2806 , G01N21/31 , G01N21/538 , G01N2201/0616 , G01N2201/065
Abstract: Solar spectral irradiance (SSI) measurements are important for solar collector/photovoltaic panel efficiency and solar energy resource assessment as well as being important for scientific meteorological/climate observations and material testing research. To date such measurements have exploited modified diffraction grating based scientific instruments which are bulky, expensive, and with low mechanical integrity for generalized deployment. A compact and cost-effective tool for accurately determining the global solar spectra as well as the global horizontal or tilted irradiances as part of on-site solar resource assessments and module performance characterization studies would be beneficial. An instrument with no moving parts for mechanical and environment stability in open field, non-controlled deployments could exploit software to resolve the global, direct and diffuse solar spectra from its measurements within the 280-4000 nm spectral range, in addition to major atmospheric processes, such as air mass, Rayleigh scattering, aerosol extinction, ozone and water vapour absorptions.
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公开(公告)号:US20180313693A1
公开(公告)日:2018-11-01
申请号:US15769601
申请日:2016-10-20
Applicant: SPECTRAFY INC.
Inventor: VIKTAR TATSIANKOU , RICHARD BEAL
CPC classification number: G01J3/36 , G01J1/0403 , G01J1/0411 , G01J1/0474 , G01J1/0492 , G01J1/06 , G01J3/0202 , G01J3/0205 , G01J3/0208 , G01J3/0262 , G01J2001/061 , G01J2001/4266 , G01J2003/1213 , G01N21/31 , G01N21/538 , G01N2201/0616 , G01N2201/065
Abstract: Solar spectral irradiance (SSI) measurements are important for solar collector/photovoltaic panel efficiency and solar energy resource assessment as well as being important for scientific meteorological/climate observations and material testing research. To date such measurements have exploited modified diffraction grating based scientific instruments which are bulky, expensive, and with low mechanical integrity for generalized deployment. A compact and cost-effective tool for accurately determining the global solar spectra as well as the global horizontal or tilted irradiances as part of on-site solar resource assessments and module performance characterization studies would be beneficial. An instrument with no moving parts for mechanical and environment stability in open field, non-controlled deployments could exploit software to resolve the global, direct and diffuse solar spectra from its measurements within the 280-4000 nm spectral range, in addition to major atmospheric processes, such as air mass, Rayleigh scattering, aerosol extinction, ozone and water vapour absorptions.
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