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    • 11. 发明授权
    • Solar energy converter
    • 太阳能转换器
    • US09312419B2
    • 2016-04-12
    • US14115856
    • 2012-02-08
    • Choon Sen Soon
    • Choon Sen Soon
    • H02N6/00H01L31/042H01L31/052H01L31/048F24J2/08F24J2/20H01L31/054
    • H01L31/0521F24S10/502F24S23/30H01L31/048H01L31/052H01L31/0543Y02E10/44Y02E10/52
    • According to one aspect, there is provided a solar energy converter, including: a lens; a base plate having a first surface that faces the lens and a second surface that is opposite to the first surface; and a solar cell sandwiched between the lens and the base plate, wherein both the lens and the base plate are each provided with at least one channel for fluid for cooling the solar cell. Also contemplated is provision of at least one fin on both the lens and the base plate for cooling the solar cell. According to a second aspect, there is provided a method for cooling a solar energy converter having a lens, a base, and at least one solar cell sandwiched between said lens and said base plate, the method comprising the step of: cooling the at least one solar cell on two opposing sides.
    • 根据一方面,提供了一种太阳能转换器,包括:透镜; 基板,其具有面向所述透镜的第一表面和与所述第一表面相对的第二表面; 以及夹在所述透镜和所述基板之间的太阳能电池,其中,所述透镜和所述基板均设置有用于冷却所述太阳能电池的流体的至少一个通道。 还设想在透镜和基板上设置至少一个散热片以冷却太阳能电池。 根据第二方面,提供了一种用于冷却具有透镜,基座和夹在所述透镜和所述基板之间的至少一个太阳能电池的太阳能转换器的方法,所述方法包括以下步骤:至少冷却 一个太阳能电池在两个相对的两侧。
    • 18. 发明授权
    • Monocentric imaging
    • 单中心成像
    • US08928988B1
    • 2015-01-06
    • US13437907
    • 2012-04-02
    • Joseph E. FordEric Tremblay
    • Joseph E. FordEric Tremblay
    • G02B3/00G02B7/02F24J2/08
    • G02B13/005F24S23/30G02B3/0062G02B7/027G02B13/06H04N5/2258
    • Methods and systems are provided to enable the capture of large (e.g., Gigapixel) images with high image quality using optical imaging systems that have a small form factor. The disclosed systems can be manufactured in a cost effective fashion, and can be readily assembled, aligned, tested and utilized. One such system comprises a monocentric primary optics section that includes one or more surfaces adapted to form a symmetrical arrangement around a common point of origin. The system also includes a secondary optics section that includes a plurality of secondary optics subsections, where each secondary optics subsection can intercept at least a portion of the light collected by the monocentric primary optics section. The combination of the primary optics section and the secondary optics section is adapted to form an image.
    • 提供了方法和系统,以便能够使用具有小外形尺寸的光学成像系统捕获具有高图像质量的大(例如,千兆像素)图像。 所公开的系统可以以成本有效的方式制造,并且可以容易地组装,对准,测试和利用。 一种这样的系统包括单中心主光学部分,其包括一个或多个适于围绕公共原点产生对称布置的表面。 该系统还包括次级光学部分,其包括多个次级光学部分,其中每个次级光学部分可以截取由单中心主光学部分收集的光的至少一部分。 主光学部分和次光学部分的组合适于形成图像。
    • 19. 发明授权
    • Shading system using liquid lens and light waveguide
    • 使用液体透镜和光波导的遮光系统
    • US08811781B2
    • 2014-08-19
    • US13143096
    • 2011-03-09
    • Takahisa Kusuura
    • Takahisa Kusuura
    • G02B6/32F24J2/08F24J2/46H02N6/00H01L31/042
    • G02B6/0008G02B6/0006Y02B10/20
    • Techniques described herein generally relate to assemblies with selective optical transmissivity. In some examples, an assembly with selective optical transmissivity is described. The assembly can include a first layer and a second layer. The first layer can include a multiple number of liquid lens units. Each of the liquid lens units can be configured to selectively focus incoming optical rays within a focal range defined between a first focal length and a second focal length. The second layer can be spaced apart from the first layer and can include a multiple number of optical waveguides. Each of the optical waveguides can include one or more waveguide inlets such that the second layer includes a multiple number of waveguide inlets. Each of the waveguide inlets may be associated with a respective one of the liquid lens units and may be spaced apart from the respective one of the liquid lens units by a distance within the focal range.
    • 本文描述的技术通常涉及具有选择性光透射率的组件。 在一些示例中,描述了具有选择性光透射率的组件。 组件可以包括第一层和第二层。 第一层可以包括多个液体透镜单元。 每个液体透镜单元可以被配置为选择性地将进入的光线聚焦在在第一焦距和第二焦距之间限定的焦距范围内。 第二层可以与第一层间隔开并且可以包括多个光波导。 每个光波导可以包括一个或多个波导入口,使得第二层包括多个波导入口。 每个波导入口可以与液体透镜单元中的相应的一个相关联,并且可以在相应的一个液体透镜单元之间与焦点范围内的距离间隔开。
    • 20. 发明授权
    • Solar energy collecting assembly
    • 太阳能集热装置
    • US08800549B2
    • 2014-08-12
    • US13717906
    • 2012-12-18
    • Michael Stuart Barber
    • Michael Stuart Barber
    • F24J2/38F24J2/08F24J2/05
    • F24S23/30F24S10/45F24S23/70F24S30/422F24S30/425F24S50/20Y02E10/44Y02E10/47
    • A solar collection device includes a solar energy collector assembly being received and supported by a base. The solar energy collector assembly includes: a plurality of lenses secured within an elongated holder. Positioned concentric to the axis of the holder is a cylindrical glass shroud through which a tube passes. A first end of the tube, which is preferably formed of a high thermally transmissive metal, receives a supply of water, which is heated within the evacuated glass shroud by sunlight passing through the lenses and being focused onto the tube. The solar collector assembly is rotatably mounted to the base and may be caused to rotate at a slow speed by a drive means, or may be rocked at a slow speed. The elongated holder may be cylindrical, or may have a polygonal cross-sectional shape, with lenses staggered along each side of the holder to increase collection capability.
    • 太阳能收集装置包括由基座接收和支撑的太阳能收集器组件。 太阳能收集器组件包括:固定在细长保持器内的多个透镜。 与保持器的轴线同心定位的是圆柱形玻璃罩,管通过该玻璃罩。 管的第一端优选地由高热传导性金属形成,接收水的供应,该水被抽真空的玻璃罩内的阳光通过透镜并被聚焦在管上。 太阳能收集器组件可旋转地安装到基座并且可以通过驱动装置以低速旋转,或者可以以低速摇摆。 细长保持器可以是圆柱形的,或者可以具有多边形横截面形状,其中透镜沿着保持器的每一侧交错以增加收集能力。