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    • 2. 发明公开
    • 태양광 모듈 냉각 장치 및 그 제작 방법
    • 光伏模块冷却装置及制造方法
    • KR1020130071830A
    • 2013-07-01
    • KR1020110139276
    • 2011-12-21
    • 동성제넥스 주식회사주식회사 글로우
    • 윤재승노병대
    • H02S40/42
    • H02S40/425H01L31/042H01L31/0521H01L35/28H02S30/00H02S40/38Y02E10/50
    • PURPOSE: A photovoltaic module cooling device and a manufacturing method thereof are provided to effectively reduce the temperature of a photovoltaic module by comprising the cooling device including an antifreeze cooling unit and a pump unit for the circulation of antifreeze and heat exchange. CONSTITUTION: A ready-made polycarbonate panel (20) with partition walls is cut corresponding to the size of a photovoltaic module (10). A path of antifreeze for cooling is formed by cutting a part of the upper and the lower partition wall of the polycarbonate panel. A top cover (30) and an under cover (31) including an entry part (41) and an exit part (42) of the antifreeze are combined with the upper and the lower part of the polycarbonate panel. Each entry part and exit part of the top cover and the under cover are combined with an entry pipe (51) and an exit pipe (52) of the antifreeze. A cooling part and a pump part for the circulation of the antifreeze and heat exchange are formed.
    • 目的:提供一种光伏模块冷却装置及其制造方法,其特征在于包括:包括防冻冷却装置的冷却装置和用于防冻和热交换循环的泵装置,以有效降低光伏组件的温度。 构成:根据光电模块(10)的尺寸,切割具有隔壁的现成聚碳酸酯面板(20)。 通过切割聚碳酸酯板的上部和下部分隔壁的一部分来形成用于冷却的防冻路径。 包括防冻剂的入口部分(41)和出口部分(42)的顶盖(30)和下盖(31)与聚碳酸酯面板的上部和下部组合。 顶盖和下盖的每个进入部分和出口部分与防冻剂的入口管(51)和出口管(52)组合。 形成用于防冻和热交换的循环的冷却部件和泵部件。
    • 3. 发明公开
    • 신재생 에너지 모듈의 출력에 따른 계통연계 인버터 스위칭 시스템
    • 根据可再生能源模块输出的网络连接逆变器开关系统
    • KR1020130072543A
    • 2013-07-02
    • KR1020110140021
    • 2011-12-22
    • 동성제넥스 주식회사주식회사 글로우
    • 윤재승노병대
    • H02J3/46H02M7/48
    • PURPOSE: A switching system for grid connected inverters according to renewable energy module output is provided to use a test port, thereby improving system efficiency. CONSTITUTION: A plurality of inverters convert DC power into AC power. A switch unit selects inverters to be used among the inverters in a system. An integrating wattmeter (300) includes a test port. A counter unit (400) counts the pulse of a currently measured electric energy. A control unit (500) adjusts the number of driving inverters using the switch unit. [Reference numerals] (10) Renewable energy module; (200) Inverter; (300) Integrating wattmeter; (400) Counter unit; (500) Control unit; (600) Switch unit; (700) MPPT management unit
    • 目的:提供根据可再生能源模块输出的并网逆变器的开关系统,使用测试端口,从而提高系统效率。 构成:多台逆变器将直流电转换成交流电源。 开关单元选择系统中的逆变器中要使用的逆变器。 集成瓦特计(300)包括测试端口。 计数器单元(400)对当前测量的电能的脉冲进行计数。 控制单元(500)使用开关单元调节驱动逆变器的数量。 (附图标记)(10)可再生能源模块; (200)变频器; (300)集成瓦特表; (400)计数器单元; (500)控制单元; (600)开关单元; (700)MPPT管理单位
    • 4. 发明公开
    • 태양광 발전을 위한 수면 부상 플랫폼
    • 太阳能发电水浮标平面表面
    • KR1020130071831A
    • 2013-07-01
    • KR1020110139278
    • 2011-12-21
    • 동성제넥스 주식회사주식회사 글로우
    • 윤재승노병대
    • H02S20/30F24J2/04F24J2/52B63B35/607B63B35/613B63B35/44
    • H02S20/32B63B35/44
    • PURPOSE: A floating platform for solar energy generation is provided to reduce installation and management costs by simplifying the installation and movement of the platform regardless of the depth of water. CONSTITUTION: A platform floating on the water for solar energy generation comprises a floating plate (110), a center post part (120) having a first length, multiple outer support parts (130) having a second length, and a propulsion part. The floating plate floats using buoyancy, and a sunlight concentration module thereon. The center post part is vertically formed on the bottom center of the floating plate to locate the center of gravity underwater. The outer support parts are formed on the bottom of the floating plate toward underwater and disperse a part of the weight of the floating plate outward. The propulsion part has one or more underwater propulsion units (140) for the rotation and movement of the floating plate.
    • 目的:提供用于太阳能发电的浮动平台,通过简化平台的安装和移动来减少安装和管理成本,无论水深如何。 构成:漂浮在用于太阳能发电的水上的平台包括浮板(110),具有第一长度的中心柱部分(120),具有第二长度的多个外部支撑部分(130)和推进部分。 浮板使用浮力漂浮,并在其上设置太阳光浓度模块。 中心柱部分垂直形成在浮板的底部中心,以将重心置于水下。 外部支撑部分在浮动板的底部朝向水下形成,并将浮板的一部分重量向外分散。 推进部分具有用于浮动板的旋转和移动的一个或多个水下推进单元(140)。