APPARATUS FOR CLEANING SURFACES
    71.
    发明申请
    APPARATUS FOR CLEANING SURFACES 审中-公开
    清洁表面的装置

    公开(公告)号:US20150349707A1

    公开(公告)日:2015-12-03

    申请号:US14725201

    申请日:2015-05-29

    申请人: Anton Jaeger

    发明人: Anton Jaeger

    摘要: The invention relates to an apparatus for cleaning surfaces, in particular of solar collectors and/or of photovoltaic installations, having at least one cleaning member, in particular a brush roller or plate brush, moving, in particular rotating, during the cleaning operation, having a holding device for the cleaning member, having a fluid drive for the cleaning member operable in different states and having a switching device with which a change can be made between the different operating states of the fluid drive.

    摘要翻译: 本发明涉及一种用于清洁表面的装置,特别是用于太阳能收集器和/或光伏装置的装置,其具有在清洁操作期间具有至少一个清洁构件,特别是刷辊或板刷,移动,特别是旋转,具有 用于清洁部件的保持装置,具有可在不同状态下操作的清洁部件的流体驱动器,并且具有能够在流体驱动器的不同操作状态之间进行变化的开关装置。

    CLEANING DEVICE
    73.
    发明申请
    CLEANING DEVICE 审中-公开
    清洁装置

    公开(公告)号:US20150326174A1

    公开(公告)日:2015-11-12

    申请号:US14651762

    申请日:2013-12-05

    IPC分类号: H02S40/10 B08B3/02 B08B1/00

    摘要: Provided is a cleaning device that does not cause degradation of cleaning performance even if there is an obstacle on a surface to be cleaned. A cleaning device includes a housing, blades used for cleaning, a cleaning liquid supply section for supplying cleaning liquid to a surface of a solar cell module, and a wheel for travelling on a solar photovoltaic power generation device. Moreover, the blades are arranged in such a manner that regions which pass through a fixation member are shifted and overlap each other in a front-rear direction with respect to an advancing direction.

    摘要翻译: 提供了即使在要清洁的表面上存在障碍物也不会导致清洁性能下降的清洁装置。 清洁装置包括壳体,用于清洁的叶片,用于向太阳能电池模块的表面供应清洁液体的清洁液体供应部分和用于在太阳能光伏发电装置上行进的轮子。 此外,叶片被布置成使得穿过固定构件的区域相对于前进方向在前后方向上移位和重叠。

    AUTONOMOUS-TRAVEL CLEANING ROBOT
    74.
    发明申请
    AUTONOMOUS-TRAVEL CLEANING ROBOT 有权
    自动旅行清洁机器人

    公开(公告)号:US20150272413A1

    公开(公告)日:2015-10-01

    申请号:US14431253

    申请日:2013-12-25

    申请人: MIRAIKIKAI, INC.

    IPC分类号: A47L11/38 A47L9/28 H02S40/10

    摘要: Provided is an self-propelled cleaning robot that can efficiently clean a flat surface even if a step is formed. The self-propelled cleaning robot that self-travels on a structure to clean a flat surface of the structure, the structure being installed in an outdoor location, the robot includes: a robot main body (2) in which a self-propelled moving means(4) is provided; a cleaning unit (10) that is provided in a front portion and/or a rear portion of the robot main body (2); and a controller (30) that controls activation of the moving means (4). At this point, the controller (30) includes an attitude controller (35) that detects an attitude of the robot main body (2), the attitude controller (35) includes a floating detection sensor (36) that detects floating in one of the front portion and the rear portion of the robot main body (2), and, when the floating detection sensor (36) detects the floating in one of the front portion and the rear portion of the robot main body (2), the controller (30) controls the activation of the moving means (4) such that the cleaning unit (10) passes through a place where the floating is detected after the floating is eliminated.

    摘要翻译: 提供了即使形成台阶也能够有效地清洁平坦表面的自行式清洁机器人。 该自行式清洁机器人在结构上行进以清洁结构的平坦表面,该结构安装在室外位置,该机器人包括:机器人主体(2),其中自推进移动装置 (4); 设置在机器人主体(2)的前部和/或后部的清洁单元(10); 以及控制所述移动装置(4)的启动的控制器(30)。 此时,控制器30包括检测机器人主体(2)的姿态的姿势控制器(35),姿态控制器(35)具有检测浮动检测传感器(36) 机器人主体(2)的前部和后部,并且当浮动检测传感器(36)检测到在机器人主体(2)的前部和后部中的一个中浮动时,控制器 30)控制移动装置(4)的激活,使得清洁单元(10)在浮动被消除之后通过检测到浮动的位置。

    SOLAR CELL MODULE
    75.
    发明申请
    SOLAR CELL MODULE 有权
    太阳能电池模块

    公开(公告)号:US20150256125A1

    公开(公告)日:2015-09-10

    申请号:US14717347

    申请日:2015-05-20

    IPC分类号: H02S30/10 H02S40/34 H02S40/10

    摘要: A solar cell module comprises a solar cell panel and a frame. A holding portion of a frame piece constituting the frame includes: a base extending upper than the panel upper surface of the solar cell panel from a main body portion 30B and covering a panel side surface; a nail portion extending from the base to the side of the solar cell panel and covering the panel upper surface; a drainage hole formed by notching a part of the base, said part being positioned lower than the panel upper surface; and a water guide portion formed by notching the nail portion from a connection portion.

    摘要翻译: 太阳能电池模块包括太阳能电池板和框架。 构成框架的框架件的保持部分包括:从主体部分30B延伸到太阳能电池板的面板上表面上方并覆盖板侧表面的基座; 从太阳能电池板的基部延伸到侧面并覆盖面板上表面的指甲部分; 通过将基部的一部分切开而形成的排水孔,所述部分位于面板上表面的下方; 以及通过从连接部切口指甲部而形成的导水部。

    Dust removal from solar cells
    76.
    发明授权
    Dust removal from solar cells 有权
    从太阳能电池除尘

    公开(公告)号:US09123845B2

    公开(公告)日:2015-09-01

    申请号:US13198896

    申请日:2011-08-05

    申请人: David E Ashpis

    发明人: David E Ashpis

    摘要: A solar panel cleaning device includes a solar panel having a plurality of photovoltaic cells arranged in rows and embedded in the solar panel with space between the rows. A transparent dielectric overlay is affixed to the solar panel. A plurality of electrode pairs each of which includes an upper and a lower electrode are arranged on opposite sides of the transparent dielectric and are affixed thereto. The electrodes may be transparent electrodes which may be arranged without concern for blocking sunlight to the solar panel. The solar panel may be a dielectric and its dielectric properties may be continuously and spatially variable. Alternatively the dielectric used may have dielectric segments which produce different electrical field and which affects the wind “generated.”

    摘要翻译: 一种太阳能电池板清洁装置,其特征在于,具备:太阳能电池板,其具有排列成行的多个光伏电池,并且嵌入在所述太阳能电池板之间,在 透明电介质覆盖层固定在太阳能电池板上。 在透明电介质的相对侧上配置有多个电极对,每个电极对包括上电极和下电极,并且被固定在其上。 电极可以是透明电极,其可以被布置而不用担心太阳光遮挡到太阳能电池板。 太阳能电池板可以是电介质,并且其介电性质可以是连续的和空间上可变的。 或者,所使用的电介质可以具有产生不同电场并且影响“产生”风的电介质段。

    SELF-PROPELLED CLEANING ROBOT
    77.
    发明申请
    SELF-PROPELLED CLEANING ROBOT 有权
    自我清洁机器人

    公开(公告)号:US20150229265A1

    公开(公告)日:2015-08-13

    申请号:US14430717

    申请日:2013-12-25

    申请人: Miraikikai, Inc.

    摘要: Provided is a self-propelled cleaning robot that can efficiently perform cleaning even on a flat surface having a gap or a step. A self-propelled cleaning robot (1) that self-travels on and cleans a flat surface (SF) of a structure, a groove (G) being formed in the flat surface (SF), the self-propelled cleaning robot (1) includes a robot main body (2) in which a self-propelled moving means (4) is provided and a guidance unit (40) that guides movement of the robot main body (2). At this point, the guidance unit (40) includes: a shaft member (43) that is provided so as to be detachably inserted in the groove (G) and a shaft member moving mechanism (45) that controls insertion and removal of the shaft member (43) with respect to the groove (G). The robot main body (2) is provided so as to be turnable about the shaft member (43) in a state in which the shaft member (43) of the guidance unit (40) is inserted in the groove.

    摘要翻译: 提供了即使在具有间隙或台阶的平坦表面上也能够有效地执行清洁的自行式清洁机器人。 自行式清洁机器人(1),其自行行进并清洁结构的平坦表面(SF),在平坦表面(SF)中形成的槽(G),自行式清洁机器人(1) 包括设置有自行式移动装置(4)的机器人主体(2)和引导机器人主体(2)的移动的引导单元(40)。 在这一点上,引导单元(40)包括:轴构件(43),其设置成可拆卸地插入槽(G);轴构件移动机构(45),其控制轴的插入和移除 构件(43)相对于凹槽(G)。 在引导单元(40)的轴构件(43)插入槽中的状态下,机器人主体(2)设置成围绕轴构件(43)可转动。

    WATER DIVERSION AND GROUNDING SYSTEM
    79.
    发明公开

    公开(公告)号:US20240333209A1

    公开(公告)日:2024-10-03

    申请号:US18621303

    申请日:2024-03-29

    申请人: Zachary Bailey

    发明人: Zachary Bailey

    IPC分类号: H02S30/10 H02S40/10 H02S40/30

    CPC分类号: H02S30/10 H02S40/10 H02S40/30

    摘要: The present invention pertains to a water diversion and grounding system for supporting multiple solar panels. The system can have an assembly with a top member, a bottom member, and a compression member, all of the same length. The top and bottom members can be made of aluminum or carbon steel, can be secured to the compression member, made of rubber, using fasteners. The top member has vertical and horizontal extensions, and the bottom member includes a support with vertical and horizontal extensions and a peripheral vertical member. The assembly is designed such that the base, support, and compression member have aligned holes for the insertion of fasteners. When tightened, these fasteners compress the compression member, clamping the solar panel between the base and the support.