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SUBMERSIBLE SOLAR SYSTEM, CONTROL METHOD OF SUBMERSIBLE SOLAR SYSTEM

机译:潜水太阳系,潜水太阳系控制方法

摘要

In an embodiment, a submersible solar system comprising a solar module floating at sea level, The sensor unit installed in the photovoltaic module to detect an event occurring in the photovoltaic module, installed on the upper part of the photovoltaic module, and when an event is detected, wind a plurality of cables connected to the photovoltaic module and place the photovoltaic module below sea level Electric energy generated by the winch unit submersed into the furnace, the storage unit that stores the amount of seawater corresponding to the buoyancy force, and the photovoltaic module installed at the bottom of the photovoltaic module to reduce the buoyancy generated in the submerged photovoltaic module. It includes a battery that supplies power to the sensor unit, winch unit, and storage unit by using it, and the event includes a change in wave height due to typhoons and tsunamis and a change in the incident direction of sunlight incident from the sun.
机译:在一个实施例中,潜水太阳能系统包括漂浮在海平面的太阳能模块,该传感器单元安装在光伏模块中以检测在光伏模块的上部的光伏模块中发生的事件,以及当事件是时 检测到,将多个电缆连接到光伏模块,并将光伏模块放在海拔电能下方由浸入炉中的绞盘单元产生的绞盘,存储单元存储与浮力力相对应的海水的量,以及光伏 模块安装在光伏模块底部,以减少浸没式光伏模块中产生的浮力。 它包括通过使用它向传感器单元,绞车单元和存储单元提供电量的电池,并且该事件包括由于台风和海啸引起的波高的变化以及从太阳发生的阳光发生的入射方向的变化。

著录项

  • 公开/公告号KR20220001906A

    专利类型

  • 公开/公告日2022-01-06

    原文格式PDF

  • 申请/专利权人 한국전력공사;

    申请/专利号KR1020200080401

  • 申请日2020-06-30

  • 分类号H02S20/20;B63B13;B63B21/16;B63B21/50;B63B35/44;B63B43/06;B63J4;H02S20/32;H02S40/38;

  • 国家 KR

  • 入库时间 2022-08-24 23:26:08

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