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公开(公告)号:JP2021120676A
公开(公告)日:2021-08-19
申请号:JP2021072284
申请日:2021-04-22
Applicant: スペクトラフィ インコーポレイテッド , SPECTRAFY INC.
Inventor: タチシアンコウ,ビクター , ビール,リチャード
Abstract: 【課題】全天太陽スペクトル装置及び方法を提供する。 【解決手段】太陽スペクトル放射(SSI)の測定は、太陽熱収集器/光起電パネル効率及び太陽エネルギー資源の評価にとって重要であるだけではなく、科学的な気象/気候観測及び材料検査研究にとっても重要である。全天太陽スペクトルのみならず全天水平または傾斜放射を現地での太陽熱資源評価とモジュール性能特性研究の一環として判定するコンパクトで費用効率の高いツールが有益であろう。戸外の非制御配備下での機械的及び環境的安定性のための、可動部品を備えない機器は、空気量、レイリー散乱、エアロゾル吸光、オゾン及び水蒸気吸収などの主な大気工程に加えて、280〜4000nmスペクトル範囲内の測定から全天、直達及び拡散太陽スペクトルを分解するソフトウェアを利用することができる。 【選択図】図1
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公开(公告)号:JP6875390B2
公开(公告)日:2021-05-26
申请号:JP2018520427
申请日:2016-10-20
Applicant: スペクトラフィ インコーポレイテッド , SPECTRAFY INC.
Inventor: タチシアンコウ,ビクター , ビール,リチャード
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公开(公告)号:JP2018538522A
公开(公告)日:2018-12-27
申请号:JP2018520427
申请日:2016-10-20
Applicant: スペクトラフィ インコーポレイテッド , SPECTRAFY INC.
Inventor: タチシアンコウ,ビクター , ビール,リチャード
Abstract: 太陽スペクトル放射(SSI)の測定は、太陽熱収集器/光起電パネル効率及び太陽エネルギー資源の評価にとって重要であるだけではなく、科学的な気象/気候観測及び材料検査研究にとっても重要である。今日まで、上記の測定は、回析格子に基づき変更された科学計測器を利用しているため、かさばり、高額であり、汎用配備のための機械的完全性が低い。全天太陽スペクトルのみならず全天水平または傾斜放射を現地での太陽熱資源評価とモジュール性能特性研究の一環として判定するコンパクトで費用効率の高いツールが有益であろう。戸外の非制御配備下での機械的及び環境的安定性のための、可動部品を備えない機器は、空気量、レイリー散乱、エアロゾル吸光、オゾン及び水蒸気吸収などの主な大気工程に加えて、280〜4000nmスペクトル範囲内の測定から全天、直達及び拡散太陽スペクトルを分解するソフトウェアを利用することができる。
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公开(公告)号:WO2017066865A1
公开(公告)日:2017-04-27
申请号:PCT/CA2016/000264
申请日:2016-10-20
Applicant: SPECTRAFY INC.
Inventor: BEAL, Richard , TATSIANKOU, Viktar
CPC classification number: G01N21/31 , G01J1/0403 , G01J1/0411 , G01J1/0474 , G01J1/0492 , G01J1/06 , G01J3/0202 , G01J3/0205 , G01J3/0208 , G01J3/0262 , G01J3/36 , G01J2001/061 , G01J2001/4266 , G01J2003/1213 , 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.
Abstract translation: 太阳能光谱辐照度(SSI)测量对于太阳能集热器/光伏电池板效率和太阳能资源评估以及对于科学气象/气候观测和材料测试研究而言非常重要。 迄今为止,这种测量已经利用了基于改进衍射光栅的科学仪器,其体积庞大,价格昂贵,并且对于通用部署而言具有低机械完整性。 作为现场太阳能资源评估和模块性能表征研究的一部分,用于精确确定全球太阳光谱以及全球水平或倾斜辐照度的紧凑且具有成本效益的工具将是有益的。 没有移动部件的仪器可以在开阔场地进行机械和环境稳定,非受控部署可以利用软件在280-4000 nm光谱范围内从其测量结果中解析出全球,直接和漫射的太阳光谱,以及主要的大气过程 如空气质量,瑞利散射,气溶胶消光,臭氧和水蒸汽吸收。 p>
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公开(公告)号:ES2929820T3
公开(公告)日:2022-12-02
申请号:ES21151167
申请日:2016-10-20
Applicant: SPECTRAFY INC
Inventor: BEAL RICHARD , TATSIANKOU VIKTAR
IPC: G01J3/51 , G01J1/04 , G01J1/06 , G01J1/42 , G01J3/02 , G01J3/12 , G01J3/28 , G01J3/36 , G01N21/31 , G01N21/53
Abstract: Las mediciones de la irradiancia espectral solar (SSI) son importantes para la eficiencia del colector solar/panel fotovoltaico y la evaluación de los recursos de energía solar, además de ser importantes para las observaciones meteorológicas/climáticas científicas y la investigación de pruebas de materiales. Hasta la fecha, tales mediciones han explotado instrumentos científicos basados en rejillas de difracción modificadas que son voluminosos, caros y con baja integridad mecánica para un despliegue generalizado. Sería beneficioso contar con una herramienta compacta y rentable para determinar con precisión los espectros solares globales, así como las irradiancias horizontales o inclinadas globales como parte de las evaluaciones de recursos solares in situ y los estudios de caracterización del rendimiento del módulo. Un instrumento sin partes móviles para la estabilidad mecánica y ambiental en campo abierto, las implementaciones no controladas podrían explotar el software para resolver los espectros solares globales, directos y difusos a partir de sus mediciones dentro del rango espectral de 280-4000 nm, además de los principales procesos atmosféricos. , como masa de aire, dispersión de Rayleigh, extinción de aerosoles, ozono y absorciones de vapor de agua. (Traducción automática con Google Translate, sin valor legal)
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公开(公告)号:ES2856573T3
公开(公告)日:2021-09-27
申请号:ES16856512
申请日:2016-10-20
Applicant: SPECTRAFY INC
Inventor: BEAL RICHARD , TATSIANKOU VIKTAR
IPC: G01J3/51 , G01J1/04 , G01J1/06 , G01J1/42 , G01J3/02 , G01J3/12 , G01J3/28 , G01J3/36 , G01N21/31 , G01N21/53
Abstract: Un dispositivo para medir la irradiancia espectral solar, que comprende: un difusor esférico (1220,1225) que comprende una cavidad esférica dentro de un cuerpo exterior, la cavidad esférica recubierta con un primer material casi lambertiano; una primera abertura (1510) de un primer diámetro predeterminado formada en una primera posición predeterminada en el difusor esférico; una segunda abertura (1220) de un segundo diámetro predeterminado formada en una segunda posición predeterminada en el difusor esférico una pluralidad de filtros ópticos (860), teniendo cada filtro óptico una banda de paso de longitudes de onda ópticas predeterminadas; caracterizado por: un deflector (1580) del difusor dispuesto dentro del difusor esférico en una relación predeterminada con respecto a la primera abertura y la segunda abertura para evitar trayectorias reflectantes directas desde la primera abertura a la segunda abertura, de modo que se impide una primera reflexión del difusor esférico (1220, 1225) a la segunda abertura (1520) a iluminación de incidencia casi normal, teniendo el deflector (1580) del difusor un grosor predeterminado, está recubierto con un segundo material casi lambertiano y está dispuesto en la superficie interna del difusor esférico y tiene una geometría que define una parte predeterminada de una esfera; una pluralidad de colimadores formados por tubos de colimador (230) o aberturas de colimador (1540, 1550), cada colimador acoplado en un extremo a la segunda abertura y definiendo un ángulo de aceptación angular máximo para un fotodetector de una pluralidad de fotodetectores dispuestos en el extremo distal del colimador desde el acoplado a la segunda abertura; y estando dispuestos la pluralidad de filtros ópticos (860) en combinación con un colimador de la pluralidad de colimadores para filtrar señales ópticas que salen de la segunda abertura.
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公开(公告)号:CA3002428A1
公开(公告)日:2017-04-27
申请号:CA3002428
申请日:2016-10-20
Applicant: SPECTRAFY INC
Inventor: BEAL RICHARD , TATSIANKOU VIKTAR
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: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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公开(公告)号:US10359314B2
公开(公告)日:2019-07-23
申请号:US16237942
申请日:2019-01-02
Applicant: SPECTRAFY INC.
Inventor: Viktar Tatsiankou , Richard Beal
IPC: G01N21/25 , G01J3/36 , G01N21/31 , G01J3/02 , G01J1/04 , G01J1/06 , G01N21/53 , G01J1/42 , G01J3/12
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 vapor absorptions.
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