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    • 4. 发明申请
    • Solar tracking system for a solar panel
    • 用于太阳能电池板的太阳能跟踪系统
    • US20170063292A1
    • 2017-03-02
    • US15244808
    • 2016-08-23
    • MAHINDRA SUSTEN PVT LTD.
    • Basant Kumar JainApurav Padam JainSandeep Jayawant Bhosale
    • H02S20/32
    • H02S20/32F24S30/425F24S2030/131F24S2030/15
    • The present disclosure envisages a solar tracking system for a solar panel. The solar tracking system comprises a bearing, a torque tube and a linear actuator. The bearing is coupled to the solar panel by means of rails, typically, C-channel, hat section rails. The torque tube is connected to the solar panel, wherein the torque tube is configured to be angularly displaced within the bearing. The linear actuator is coupled to the torque tube, wherein the linear actuator is configured to angularly displace the torque tube, thereby displacing the solar panel. The linear actuator includes a worm and worm gear arrangement of a rack and pinion arrangement. The solar tracking system is powered by either an auxiliary solar panel and/or a battery.
    • 本公开设计了用于太阳能电池板的太阳能跟踪系统。 太阳跟踪系统包括轴承,扭矩管和线性致动器。 轴承通过导轨(通常为C通道,帽部分导轨)连接到太阳能电池板。 扭矩管连接到太阳能面板,其中扭矩管构造成在轴承内成角度位移。 线性致动器联接到扭矩管,其中线性致动器构造成使扭矩管成角度地移位,从而移动太阳能面板。 线性致动器包括齿条和齿轮装置的蜗杆和蜗轮装置。 太阳能跟踪系统由辅助太阳能电池板和/或电池供电。
    • 6. 发明授权
    • Guide system for solar panels
    • 太阳能电池板指导系统
    • US09531320B2
    • 2016-12-27
    • US14441676
    • 2013-11-05
    • Soitec Solar GMBH
    • Abel Gonzalez Moreno
    • H02N6/00H01L31/042F24J2/54H02S40/22F16M11/12F16M11/18
    • H02S20/32F16M11/126F16M11/18F24S30/452F24S2030/134F24S2030/15H02S40/22Y02E10/47Y02E10/52
    • The disclosure relates to a guide system for holding and moving sunlight-absorbing devices, in particular, solar panels or concentrated photovoltaic modules, about an azimuth axis and an elevation axis, comprising a housing, at least one azimuth drive, at least one azimuth gear unit, the azimuth drive being configured for driving the azimuth gear unit for a rotational movement about the azimuth axis, at least one elevation drive, at least one elevation gear unit, the elevation drive being configured for driving the elevation gear unit for a rotational movement about the elevation axis, and wherein the elevation gear unit is connected to a first end of a torsion tube, and the torsion tube is turnably mounted inside the housing along the elevation axis, wherein the torsion tube is supported by at least two bearings, preferably one at each end of the torsion tube, and wherein the second end of the torsion tube is configured to receive and connect to a support arm for carrying/supporting one or more of the sunlight-absorbing devices, and the torsion tube further being configured to transmit torque from the elevation gear unit to the support arm.
    • 本发明涉及一种用于保持和移动太阳光吸收装置(特别是太阳能电池板或集中的光伏模块)的引导系统,其围绕方位角轴和仰角轴,包括壳体,至少一个方位驱动器,至少一个方位角齿轮 单元,所述方位驱动器被配置为用于驱动所述方位齿轮单元以围绕所述方位轴线的旋转运动,至少一个升降驱动器,至少一个升降齿轮单元,所述升降驱动器构造成用于驱动所述升降齿轮单元进行旋转运动 并且其中所述升降齿轮单元连接到扭转管的第一端,并且所述扭转管可沿所述仰角轴线可转动地安装在所述壳体内,其中所述扭转管由至少两个轴承支撑,优选地 一个在扭转管的每个端部,并且其中扭转管的第二端构造成接收和连接到支撑臂以承载/支撑o 一个或多个太阳光吸收装置,并且扭转管进一步被配置为将扭矩从升降装置传递到支撑臂。
    • 7. 发明申请
    • SOLAR TRACKING APPARATUS
    • 太阳跟踪装置
    • US20160329860A1
    • 2016-11-10
    • US15146443
    • 2016-05-04
    • SunPower Corporation
    • Jason KALUSMark SCHIMELPFENIGRichard ERBTamir LANCENathan BECKETT
    • H02S20/32H02S30/10H02S20/10
    • H02S20/32F24S25/12F24S30/425F24S2030/15H02S20/10Y02E10/47
    • A variety of techniques may be employed alone or in various combinations, to track alignment of solar collectors with movement of the sun. One approach utilizes two or more piles offset from a single axis of tracking rotation, to provide foundational support. By allocating support between multiple foundational piles, such embodiments reduce the size of any individual pile needed to withstand accumulated torque from sources such as wind. Another approach utilizes an attachment feature to attach a panel to an underlying support arm. The attachment feature may be glued to a bottom surface of a collector panel, and locked into place on the support arm using sliders. Another approach focuses upon the arm structure itself, and the manner of its attachment to a torque tube of a single-axis tracker. Other approaches relate to techniques for stowing solar trackers, and field layout designs for solar trackers.
    • 各种技术可以单独使用或以各种组合来采用,以跟踪太阳能收集器与太阳移动的对准。 一种方法利用从单个跟踪旋转轴偏移的两个或更多个桩,以提供基础支持。 通过在多个基础桩之间分配支撑,这样的实施例减小了承受来自诸如风的积累转矩所需的任何单个桩的尺寸。 另一种方法利用附接特征将面板附接到下面的支撑臂。 附接特征可以胶合到收集器面板的底表面,并且使用滑块锁定在支撑臂上的适当位置。 另一种方法集中在臂结构本身以及其连接到单轴跟踪器的扭矩管的方式。 其他方法涉及太阳能跟踪器的收集技术和太阳能跟踪器的现场布局设计。
    • 10. 发明授权
    • Spiral concentrating collector with moving receiver
    • 带移动接收器的螺旋集中收集器
    • US09383122B2
    • 2016-07-05
    • US14080720
    • 2013-11-14
    • Eduardo Saucedo
    • Eduardo Saucedo
    • F24J2/10F24J2/38F24J2/04
    • F24S50/20F24S23/70F24S23/74F24S2020/186F24S2020/23F24S2023/836F24S2030/133F24S2030/15Y02E10/45Y02E10/47
    • The present invention relates to an improved solar energy concentrating system and to a preferred way of moving the receiver, along a curvilinear path above the mirror surface to the optimal location where the instantaneous concentration of reflected rays is the largest. The system comprises a fixed, trough concentrating collector formed with a concave curvature, shaped as a section of an spiral, oriented along the East-West axis, with a movable receiver, inclined facing South and capable of adjusting the angle of inclination periodically, preferably twice a year. The invention overcomes some of the limitations and is capable of capturing more solar energy, on a more constant basis throughout the year and at a lower cost than the preferred, state-of-the-art, trough parabolic concentrating collectors oriented along the North South axis.
    • 本发明涉及一种改进的太阳能集中系统以及将接收器沿镜面上方的曲线路径移动到反射光线的瞬时浓度最大的最佳位置的优选方式。 该系统包括固定的槽集中收集器,其形成为具有凹形曲率,形状为沿着东西轴定向的螺旋形截面,具有向南倾斜的可移动接收器,并且能够周期性地调整倾斜角度 一年两次 本发明克服了一些限制,并且能够在一年中以更恒定的基础捕获更多的太阳能,并且以比沿着北南方向的优选的最先进的槽抛物线集中收集器更低的成本 轴。