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    • 91. 发明授权
    • Photovoltaic array utilizing phyllotaxic architecture
    • 采用叶片架构的光伏阵列
    • US09103567B2
    • 2015-08-11
    • US13445717
    • 2012-04-12
    • Aidan Rhys DwyerSean Patrick Dwyer
    • Aidan Rhys DwyerSean Patrick Dwyer
    • H01L31/042F24J2/54F24J2/52
    • F24S30/45F24S25/10H02S20/00H02S20/30Y02E10/47Y02E10/50
    • An array of photovoltaic panels comprising a plurality of primary branches extending radially outwardly from a central trunk, and a plurality of photovoltaic panels joined to the primary branches, wherein the primary branches extend outwardly from the trunk in a spiral arrangement having a ratio of x turns around the trunk for every y primary branches. The ratio of x:y may be derived from a phyllotaxic arrangement of branches and leaves on a plant. X may be a Fibonacci number, with y being its Fibonacci second successor. The ratio of x/y may be selected from certain Fibonacci ratios, including 1/3, 2/5, 3/8, and 5/13. A method of converting electromagnetic radiation to electrical energy, and a method of making a device for converting electromagnetic radiation to electrical energy in accordance with the invention are also disclosed.
    • 一组光伏面板包括从中央主干径向向外延伸的多个主分支,以及多个连接到主分支的光伏面板,其中主分支以螺旋布置向外延伸,螺旋布置具有x匝比 在每个主要分支的树干周围。 x:y的比例可以从植物上的分枝和叶的叶片排列中得出。 X可能是斐波那契数,y是其斐波纳契第二个继任者。 x / y的比例可以从某些斐波纳契比率中选出,包括1/3,2/5,3/8和5/13。 还公开了一种将电磁辐射转换为电能的方法,以及根据本发明的制造用于将电磁辐射转换成电能的装置的方法。
    • 92. 发明申请
    • SUN TRACKING SOLAR POWER SYSTEM HARDWARE AND METHOD OF ASSEMBLY
    • 太阳跟踪太阳能发电系统硬件及其组装方法
    • US20150187975A1
    • 2015-07-02
    • US14143893
    • 2013-12-30
    • SUNPOWER CORPORATION
    • Brian S. WaresTyler GrushkowitzNicholas McKibben
    • H01L31/042
    • H02S20/10F24S25/12F24S25/632F24S25/634F24S30/40F24S30/425F24S30/45F24S50/20F24S2025/802F24S2030/136H01L31/042H01L31/052H02S20/32Y02E10/47
    • A solar energy collection system can include improved mounting hardware for reducing hardware costs and labor required for assembly. For example, mounting hardware can include surfaces for supporting part or all of the weight of a solar module as it is brought into contact with mounting hardware and then moved into a final engaged position. In some systems, a torque tube can include saddle mount assemblies that allow a solar module to be partially engaged and a registered with the saddle mount while being pivoted into a final locked engagement. Some systems can include arrangements sufficient to support the full weight of a solar module in a disengaged position, and as it is moved into a final engaged position. Some systems can include a configuration of apertures and interference or snap-fit features for providing tool-less connections, thereby simplifying the assembly process.
    • 太阳能收集系统可以包括改进的安装硬件,用于降低组装所需的硬件成本和人力。 例如,安装硬件可以包括用于支撑太阳能模块的部分或全部重量的表面,因为其与安装硬件接触,然后移动到最终接合位置。 在一些系统中,扭矩管可以包括鞍座安装组件,其允许太阳能模块部分地接合并且在枢转到最终的锁定接合的同时与鞍形安装件配准。 一些系统可以包括足以支撑处于脱离位置的太阳能模块的全部重量并且当它移动到最终接合位置时的布置。 一些系统可以包括用于提供无工具连接的孔和干扰或卡扣配合特征的配置,从而简化组装过程。
    • 94. 发明授权
    • Solar tracker for photovoltaic power generation
    • 太阳能跟踪器用于光伏发电
    • US08993870B2
    • 2015-03-31
    • US13650994
    • 2012-10-12
    • Boon-Do Eom
    • Boon-Do Eom
    • F24J2/46F24J2/54
    • F24S30/48F24S30/45F24S30/455F24S40/85F24S2030/13Y02E10/47
    • A solar tracker is provided to fix an altitude angle until the altitude of the sun secedes from a predetermined range after matching the altitude through once driving of one shaft that tracks the altitude angle and to drive only the other shaft that tracks an east-west azimuth angle in daily repetition in a state where the altitude angle of the sun, which is repeatedly changed according to seasons of the year in the range of the winter solstice having the lowest altitude angle and the summer solstice having the highest altitude angle, has an extremely small diurnal change, whereas the azimuth angle of the sun is repeatedly changed in one direction, that is, from sunup to sundown, in a day. Accordingly, consumption of firm power of a driving unit for tracking the sun can be minimized, and the operating and management costs of the device can be reduced.
    • 提供太阳跟踪器来固定高度角,直到太阳高度通过跟踪高度角的一个轴的一次驱动匹配高度之后从预定范围分离,并且仅驱动跟踪东西方位角的另一轴 在根据具有最低高度角的冬至至最高高度角的冬至的范围内根据年份的季节而重复变化的太阳的高度角的状态下的日常重复的角度具有极高的 小的日变化,而一天中太阳的方位角在一个方向上,即从日光照射到日落重复地改变。 因此,可以将用于跟踪太阳的驱动单元的固定功率的消耗最小化,并且可以减少设备的操作和管理成本。
    • 98. 发明申请
    • Solar energy harvesting
    • 太阳能收割
    • US20140305490A1
    • 2014-10-16
    • US14355881
    • 2012-11-01
    • STN SuperTravelNet Oy
    • Jyri Jaakkola
    • F24J2/38H01L31/0525
    • F24S50/20F24D3/00F24D2200/14F24S23/77F24S30/45F24S50/00F24S70/65Y02B10/20Y02B10/22Y02E10/44Y02E10/47Y10T29/49355
    • An solar energy harvester and method for controlling the solar energy harvester, in which an insolation collector is formed of one or more elements each having two opposite major sides, a first side and a second side, and being configured to collect energy from insolation incident on any of the first and second sides. A cradle enables installation of the insolation collector on a roof with the first side generally towards the sun independently of the form of the roof. One or more heliostats reflect insolation to the second side of the insolation collector. A controller controls the one or more heliostats to maintain reflected insolation incident on the collector and to decrease the reflected insolation incident on the collector when necessary to inhibit the insolation collector receiving insolation exceeding given threshold through its first and second sides.
    • 一种用于控制太阳能收割机的太阳能收割机和方法,其中日射收集器由一个或多个元件形成,每个元件具有两个相对的主侧面,第一侧和第二侧,并且被配置成从入射到 任何第一和第二面。 一个摇篮可以将日光收集器安装在屋顶上,第一面通常朝向太阳,不受屋顶的影响。 一个或多个定日镜反射日照到日照收集器的第二面。 控制器控制一个或多个定日镜以保持入射在收集器上的反射日射,并且当需要时减少入射在收集器上的反射日射,以便通过其第一和第二侧抑制日晒收集器接收超过给定阈值的日照。