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    • 2. 发明申请
    • REFLECTIVE DEVICE FOR A PHOTOVOLTAIC MODULE WITH BIFACIAL CELLS
    • 用于具有双重细胞的光伏模块的反射装置
    • WO2011080442A3
    • 2012-05-10
    • PCT/FR2010052664
    • 2010-12-10
    • COMMISSARIAT ENERGIE ATOMIQUESANZONE VINCENZOGERRITSEN ERICTHONY PHILIPPE
    • SANZONE VINCENZOGERRITSEN ERICTHONY PHILIPPE
    • H01L31/052
    • H01L31/0547H01L31/054H01L31/0684Y02E10/52
    • The invention relates to a reflective device for a photovoltaic module formed by a plurality of bifacial photovoltaic cells (2) or rows of said cells spaced apart from one another, each cell (2) having an active front face (20) and an active rear face (21) that can capture photons from incident light rays falling on the front (20) and rear (21) faces. The device comprises at least one reflective module (4) to be placed under the cells (2) substantially in line with the gap(s) (22) separating two adjacent cells (2) or two rows of adjacent cells. The reflective module (4) comprises: a first portion (41), of which the surfaces that are oriented towards the gap (22) have a first curvature such as to send all or part of the incident photons towards the rear face (21) of the cells (2); and a second portion (42) mounted on the first portion (41), of which the surfaces oriented towards the gap (22) have a second curvature such as to send all or part of the incident photons towards the rear face (21) of the cells (2), the second curvature being different from the first curvature.
    • 本发明涉及一种用于由多个双面光伏电池(2)或彼此间隔开的多个电池组形成的光伏模块的反射装置,每个电池(2)具有有源正面(20)和有源后表面 可以从落在前面(20)和后面(21)面上的入射光线捕获光子的面(21)。 该装置包括至少一个反射模块(4),该反射模块(4)放置在与隔离两个相邻单元(2)或两行相邻单元格的间隙(22)基本上一致的单元(2)下面。 反射模块(4)包括:第一部分(41),其朝向间隙(22)定向的表面具有第一曲率,以将所有或部分入射光子朝向后表面(21)发送, 的细胞(2); 以及安装在所述第一部分(41)上的第二部分(42),其中朝向所述间隙(22)定向的表面具有第二曲率,以使全部或一部分入射的光子朝向所述第一部分(41)的后表面 单元(2),第二曲率不同于第一曲率。
    • 8. 发明申请
    • METHOD OF SIMULATION OF AN OPTOELECTRONIC DEVICE
    • 光电器件的仿真方法
    • WO2014001532A3
    • 2014-07-03
    • PCT/EP2013063692
    • 2013-06-28
    • COMMISSARIAT ENERGIE ATOMIQUE
    • SINGER JULIENBRAND PIERRETHONY PHILIPPE
    • G06F17/50
    • G06F17/5009
    • The invention concerns a method of optical and electrical simulation of an optoelectronic device (D) whereof the surface (SD) intended to be illuminated has a texture formed of regular cones, under the effect of the illumination of said surface (SD) by an incident light beam (I) having an intensity spectrum determined on the basis of the wavelength, said method being implemented by computer and being characterised in that it comprises: - modelling said device (D) in the form of a structure (S) whereof the illuminated surface is modelled by a planar surface (SS), - modelling said incident light beam (I) by: * a first light beam (l1) inclined relative to the normal (N) to said surface with a first non-zero angle (α1), simulating an angle of incidence of the incident beam (I) on the texture of the surface (SD) of the device, and whereof the intensity is equal to that of the incident beam (I), and by * a second light beam (l2) inclined relative to the normal (N) to said surface with a second angle (α2), simulating an angle of incidence of the reflected portion of the incident beam (I) on the texture of the surface (SD) of the device, - simulating the illumination of said surface (SS) by said first and second beams (l1, l2). The invention also concerns a corresponding computer program product.
    • 本发明涉及一种光电子器件(D)的光学和电学模拟方法,其中待照明的表面(SD)具有由规则锥体形成的纹理,在所述表面(SD)通过事件的照射的作用下 光束(I)具有基于波长确定的强度光谱,所述方法由计算机实现,其特征在于,其包括: - 以所述结构(S)的形式对所述装置(D)进行建模,所述结构(S) 表面由平面表面(SS)建模, - 通过以下方式对所述入射光束(I)进行建模:*以第一非零角度(α1)相对于所述表面倾斜的第一光束(11) ),模拟入射光束(I)对器件的表面(SD)的纹理的入射角,其强度等于入射光束(I)的纹理,以及*第二光束 (12)相对于所述表面的法线(N)以秒为单位倾斜 模拟角度(α2),模拟入射光束(I)的反射部分在装置的表面(SD)的纹理上的入射角, - 模拟所述表面(SS)通过所述第一和第二 梁(l,l2)。 本发明还涉及相应的计算机程序产品。