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    • 32. 发明授权
    • Apparatus and method for use in fulfilling illumination prescription
    • 用于实现照明处方的装置和方法
    • US07042655B2
    • 2006-05-09
    • US10726130
    • 2003-12-01
    • Yupin SunWaqidi FalicoffWilliam A. Parkyn, Jr.
    • Yupin SunWaqidi FalicoffWilliam A. Parkyn, Jr.
    • G02B13/18
    • F21V5/04F21S41/00F21S41/28F21V5/048F21Y2115/10G02B27/095
    • The present embodiments provide methods, apparatuses, and assemblies for use in producing a desired output beam that meets a desired intensity prescription. An apparatus can include an input surface, and an optically active output surface that receives a collimated beam, such that the output surface refractively maps an illuminance distribution of the collimated beam into a prescribed intensity pattern. The apparatus can include a collimating lens that collimates an input beam. Additionally, the output surface can be defined according to a cumulative illumination integral for the illuminance distribution and a cumulative illumination integral of the intensity pattern. Some embodiments provide methods that can determine an illumination integral for an illuminance pattern of an input, determine an intensity prescription, establish a spatio-angular correspondence of the input beam with the intensity prescription, derive surface normal vectors, and determine the output surface according to the surface normal vectors.
    • 本实施例提供了用于产生满足所需强度处方的期望输出光束的方法,装置和组件。 装置可以包括输入表面和接收准直光束的光学有效输出表面,使得输出表面将准直光束的照度分布折射成规定的强度图案。 该装置可以包括准直输入光束的准直透镜。 此外,可以根据照度分布的累积照明积分和强度图案的累积照明积分来定义输出表面。 一些实施例提供了可以确定输入的照度模式的照明积分的方法,确定强度处方,建立输入光束与强度处方的时空角度对应,导出表面法线向量,并根据 表面法向量。
    • 37. 发明申请
    • PHOTOVOLTAIC DEVICE
    • 光电器件
    • US20100269885A1
    • 2010-10-28
    • US12766298
    • 2010-04-23
    • Pablo BenitezJuan Carlos MiñanoRubén MohedanoWaqidi Falicoff
    • Pablo BenitezJuan Carlos MiñanoRubén MohedanoWaqidi Falicoff
    • H01L31/052
    • H01L31/0543H01L31/0547H01L31/0687Y02E10/52
    • Some photovoltaic cells have a front face accepting incoming incident light and opaque gridlines overlying part of the front face, electrically bonded to the face, with upper reflective facets oblique to the plane of the front face and producing outgoing reflected light. An optical interface parallel to and in front of the front face transmits incoming light to the front face and to the gridlines and reflects back towards the front face by total internal reflection at least some of the outgoing reflected light. Some photovoltaic devices have a triple junction photovoltaic cell, a single junction photovoltaic cell, and a reflective surface arranged to distribute incoming light between the cells. The surface may be a frequency-selective mirror that apportions light so when the cells are in series the power produced, and preferably the photocurrent, is greater than if all the light fell on the triple junction cell alone.
    • 一些光伏电池具有接受入射入射光的正面和覆盖前表面的一部分的不透明网格线,电粘结到面部,具有与前表面的平面倾斜的上反射面并产生出射的反射光。 平行于前面和前面的光学接口将入射光透射到前表面和网格线,并通过至少一些输出反射光的全内反射向前表面反射。 一些光伏器件具有三结光伏电池,单结光伏电池和布置成在电池之间分配入射光的反射表面。 表面可以是分配光的频率选择镜,因此当电池串联产生的功率,并且优选地,光电流大于如果所有光都单独落在三重结电池上时。