WO2022169119A1 - Multipurpose smart solar power generation system - Google Patents

Multipurpose smart solar power generation system Download PDF

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Publication number
WO2022169119A1
WO2022169119A1 PCT/KR2022/000261 KR2022000261W WO2022169119A1 WO 2022169119 A1 WO2022169119 A1 WO 2022169119A1 KR 2022000261 W KR2022000261 W KR 2022000261W WO 2022169119 A1 WO2022169119 A1 WO 2022169119A1
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WIPO (PCT)
Prior art keywords
post
guide
power generation
rotation
solar
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PCT/KR2022/000261
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French (fr)
Korean (ko)
Inventor
김선호
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(주)연호
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Publication of WO2022169119A1 publication Critical patent/WO2022169119A1/en

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S20/00Supporting structures for PV modules
    • H02S20/30Supporting structures being movable or adjustable, e.g. for angle adjustment
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S30/00Structural details of PV modules other than those related to light conversion
    • H02S30/10Frame structures
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S40/00Components or accessories in combination with PV modules, not provided for in groups H02S10/00 - H02S30/00
    • H02S40/20Optical components
    • H02S40/22Light-reflecting or light-concentrating means
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy
    • Y02E10/52PV systems with concentrators

Definitions

  • the present invention relates to a multi-purpose smart photovoltaic device, and more particularly, independent and a plurality of photovoltaic power generation devices regardless of terrain and terrain direction, without a separate link device, a solar panel with an optimal azimuth and optimum It relates to a multi-purpose smart solar power generation device that is adjusted to the elevation angle and linked to the left and right according to the movement of the sun.
  • a photovoltaic device refers to a power generation system that uses solar energy by expanding a panel to which a solar cell is attached on a large scale to produce electricity on a large scale.
  • the solar power generation device can be used semi-permanently, and it can be said that it is a device with new and renewable alternative energy production and eco-friendly characteristics due to the point that it uses a non-polluting solar energy source.
  • Solar power generation has a limit in the amount of solar energy received per unit area. Therefore, a tracking type is installed to rotate along the sunlight in order to increase the light collecting efficiency.
  • FIG. 1 shows that the solar panel of the photovoltaic device can rotate along the sunlight in order to increase the light collecting efficiency.
  • a solar panel tracking system is provided so that the solar panel can be rotated for tracking the sunlight, which is disclosed through Korean Patent Registration No. 10-2195705.
  • the rotational driving and turning operation of the solar panel can simultaneously track the movement path of the sun, thereby maximizing the light collection efficiency.
  • the link driving device for driving the photovoltaic panel is complicated or large, so the efficiency of the installation and maintenance of the photovoltaic device is low, and it is difficult to select a location for the power generation site.
  • an object of the present invention for solving the problems of the prior art as described above is, regardless of the terrain and the direction of the topography according to the construction of the photovoltaic device, the manufacture and installation is convenient, the power generation efficiency is high, and the maintenance
  • This is to provide a multi-purpose smart photovoltaic device that is convenient for maintenance, can be installed independently and in multiple ways, and enables smart operation of the power generation system.
  • Another object of the present invention is to construct a solar power generation device in a structure in which a solar panel is adjusted to an optimal azimuth and an optimal elevation angle and traced left and right according to an effective angle of incidence. It is intended to provide a solar power generation device.
  • the multi-purpose smart photovoltaic device does not require parts such as a solar tracking sensor that has no significant effect on the light collection efficiency and the driving link is deleted, making it convenient to manufacture and install according to the minimization of parts, , each component can provide a multi-purpose smart photovoltaic device that is small and light and easy to maintain.
  • Another object of the present invention is to increase the power generation efficiency because the left and right tracking condensing according to the effective incident angle of sunlight.
  • a multi-purpose smart photovoltaic device can be installed independently and in plurality in a photovoltaic system, and rotational driving for tracking sunlight of a photovoltaic panel is directly connected to the driving deceleration motor to the fixed panel array
  • rotational driving for tracking sunlight of a photovoltaic panel is directly connected to the driving deceleration motor to the fixed panel array
  • the present invention includes: a frame made of a structure of a top frame and a support frame at the upper end of the post;
  • a photovoltaic device including a photovoltaic device having a plurality of photovoltaic panels installed at intervals from the frame, wherein the photovoltaic device comprises: a vertical fixed post; a rotating post installed at the top of the fixed post to enable adjustment of the sunlight direction angle; an angle adjustment bracket that is installed on the upper end of the rotary post to enable solar elevation angle adjustment; a guide post coupled to the upper end of the angle adjustment bracket and installed to guide the left and right rotation of the sunlight tracking; a panel fixing array connected to the upper/lower ends of the guide post and installed so as to be able to rotate left and right while fixing to support the solar panel; a driving deceleration motor that is fixed to one end of the guide post and installed to operate the left and right rotation of the sunlight tracking; a guide rotation bracket that is shaft-coupled while connecting and fixing the guide post and the panel fixing array, and
  • the fixing post includes a body in a vertical longitudinal direction;
  • a connection flange is formed on one side of the body to protrude from the upper end of the body and has a guide long groove to guide a fastening bolt for connecting and fixing the rotary post. It may be characterized in that it is configured to include a flange.
  • the rotating post includes a body in a vertical longitudinal direction; a first rotation flange protruded from the lower end of the body and rotatable along a guide long groove formed in the connection flange of the fixing post on one surface and fixed with a fastening bolt; It includes a second rotation flange that is formed protruding from the upper end of the body and is pin-coupled to the angle adjustment bracket so that the angle adjustment bracket is rotatable, and the solar altitude angle adjustment is performed by rotation of the angle adjustment bracket pin-coupled to the second rotation flange. It may be characterized in that it is made possible.
  • the angle adjustment bracket includes an extension flange, one side of which is separated and extended to both sides, is pin-coupled to the rotary post, and is installed so as to be able to adjust the angle; It may be configured to include a support flange formed to be connected and bent to the other side of the extension flange to connect and fix the guide post.
  • the guide post is a cylindrical body, the guide post is connected to the upper / lower end of the body, it may be characterized in that a guide bushing installed to enable the rotation guide of the panel fixing array is further formed. .
  • the panel fixing array includes a pair of left and right length bars having a predetermined length; It is formed to connect and fix the length bars, and it comprises a pair of left and right spacer bars to which both ends of the guide post are accommodated and fixed, and the guide rotation bracket is bolted to the central part of the spacer bar with a fastening bolt. Characterized in that can do.
  • the guide rotation bracket includes a flange having a bolt hole fixed to the panel fixing array and a fastening bolt; a first connection part protruding from one side of the flange and pin-coupled to the driving reduction motor; a second connection part protruding to the other side of the flange and axially connected to one end of the guide post; It may further include a coupling coupling connecting the first connection part and the driving reduction motor with a pin, and the guide rotation bracket may be configured as a left and right pair symmetrically installed at both ends of the guide post.
  • the multi-purpose smart photovoltaic device according to the present invention has the following effects.
  • the multi-purpose smart photovoltaic device has a structure in which the photovoltaic panel is adjusted to the optimal azimuth and the optimal elevation angle, and the left and right tracking and condensing light is collected along the effective angle of incidence. does not
  • the multi-purpose smart photovoltaic device does not require parts such as a solar tracking sensor that does not significantly affect the light collection efficiency, and the driving link is deleted, making it convenient to manufacture and install according to the minimization of parts, and each component is small and light. Maintenance is convenient.
  • the multi-purpose smart photovoltaic device can increase the power generation efficiency by tracking and condensing left and right according to the effective incident angle of sunlight.
  • multi-purpose smart photovoltaic power generation device can be installed independently or in plurality in photovoltaic power generation system, and rotation driving for solar tracking of photovoltaic panel is directly connected to the panel fixed array by driving deceleration motor to equal time control through timer It is an automatic adjustment method by adopting the method, so there is no defect that exceeds the angle of incidence of the sun due to accumulated tolerance and light detection error.
  • FIG. 1 is a perspective view showing a state in which a link driving device is installed so that a photovoltaic panel rotates along the sunlight in order to increase light collection efficiency in a photovoltaic device according to the prior art;
  • FIG. 2 is an overall exemplary view showing that a multi-purpose smart solar power generation device according to the present invention is installed in a facility of a power generation site;
  • FIG. 3 is an overall exploded view showing a multi-purpose smart photovoltaic device according to the present invention.
  • FIG. 4 is an exemplary side view showing a multi-purpose smart photovoltaic device according to the present invention.
  • FIG. 5 is an exemplary diagram expressing the range angle in which the solar panel of the multi-purpose smart photovoltaic device according to the present invention is adjusted to the optimal azimuth.
  • FIG. 6 is an exemplary view expressing the range angle in which the solar panel of the multi-purpose smart photovoltaic device according to the present invention is adjusted to the optimal elevation angle;
  • FIG. 7 is an exemplary view expressing the rotation range angle in which the solar panel of the multi-purpose smart photovoltaic device according to the present invention operates according to the PLC program;
  • FIG. 8 is an electrical configuration diagram in which a multi-purpose smart photovoltaic device according to a preferred embodiment of the present invention is applied to a photovoltaic power generation system.
  • 1 to 7 are embodiments showing a multi-purpose smart photovoltaic device according to the present invention.
  • the multi-purpose smart photovoltaic power generation device includes a post 100 erected as a filing in the power generation site; a frame 200 made of a structure of a top frame 210 and a support frame 220 on an upper end of the post 100; It is configured to include a photovoltaic device 300 installed in plurality at intervals in the frame 200 .
  • the posts 100 are piled in the power generation site to support the photovoltaic device 300 , and are vertically installed on both sides toward the upper side from the power generation site. It is preferable that the post 100 is provided in two in order to increase the space efficiency and bearing capacity of the power generation site.
  • the post 100 is preferably divided into a top post 110 , a main post 120 , and a base post 130 as shown in FIG. 2 rather than being integrally configured.
  • the main post 120 provides an installation height of the photovoltaic device 300 from the ground. At this time, the height of the main post 120 is preferably provided with a width and a height that the purpose of using the paper can be smoothly achieved.
  • the basic post 130 is a configuration that is fixed in the ground.
  • the screw pile 131 is installed on the foundation post 130 , and the screw pile 131 makes the supporting force of the post 100 more solid.
  • the holding force 100 can be maximized through the screw pile 131 .
  • the frame 200 serves as a frame in which the photovoltaic device is installed, and is preferably composed of a top frame 210 and a support frame 220 .
  • the top frame 210 is provided for installation of the support frame 220 , and is installed at the upper end of the post 100 .
  • the top frame 210 is installed in a vertical state with respect to the post (100).
  • the support frame 220 is provided for installing the photovoltaic device 300 , and is installed on the top frame 210 .
  • the support frame 220 is provided for installing the top frame 210 .
  • the support frame 220 is installed in a horizontal direction with respect to the top frame 210 in the longitudinal direction of the top frame 210 .
  • a plurality of support frames 220 may be installed along the top frame 210 .
  • the photovoltaic device 300 having the photovoltaic panel includes a fixed post 310 erected vertically; a rotating post 320 installed on the fixed post 310 to enable adjustment of the sunlight direction angle; an angle adjustment bracket 330 installed on the upper end of the rotation post 320 to enable solar altitude angle adjustment; a guide post 340 coupled to the upper end of the angle adjustment bracket 330 and installed to guide the left and right rotation of the sunlight tracking; a panel fixing array 350 that is connected to the upper/lower ends of the guide post 340 and installed so as to be rotatable left and right while fixing to support the solar panel; a driving deceleration motor 360 which is fixedly installed at one end of the guide post 340 to operate the solar tracking left and right rotation; a guide rotation bracket 370 coupled to the shaft while connecting and fixing the guide post 340 and the panel fixing array 350 and installed to receive the rotational force of the driving reduction motor 360; a motor fixing bracket 380 having one end coupled to the guide post 340 and the other end of which the driving deceleration motor 360
  • the electricity production principle of the photovoltaic device 300 is the same as a known technology, and a known technology may be applied to the solar panel 360 of the photovoltaic device 300 .
  • the photovoltaic device 300 is provided in plurality, and the plurality of photovoltaic devices 300 are installed on the top frame 210 while being spaced apart from each other. As described above, as the plurality of photovoltaic devices 300 are spaced apart from each other, a gap occurs between the photovoltaic devices 300 , and through the gap, sufficient amount of sunlight can be secured to the cultivated land and the lower site.
  • the fixing post 310 includes a body 311 in the vertical longitudinal direction; A connection flange 312 having a guide long groove 312a through which a fastening bolt (B) protruding from the upper end of the body 311 to connect and fix the rotary post 320 is guided is formed on one surface, the body It is formed to protrude from the lower end of the 311 and is configured to include a fixing flange 313 that is fixedly installed on the support frame 220 .
  • the rotating post 320 includes a body 321 in the vertical longitudinal direction;
  • the first rotation is formed protruding from the lower end of the body 321 and is rotatable along the guide long groove 312a formed in the connection flange 312 of the fixing post 310 on one surface while being fixed with the fastening bolt (B).
  • the rotation of the angle adjustment bracket 330 can be made so that the solar altitude angle can be adjusted.
  • the angle adjustment bracket 330 has one side extended separately to both sides, is pin-coupled to the rotation post 320, and an extension flange 331 installed so as to be able to adjust the angle; It is configured to include a support flange 332 formed to be connected and bent to the other side of the extension flange 331 to connect and fix the guide post 340 .
  • the guide post 340 is a cylindrical body, and the guide post 340 is connected at upper/lower ends of the body, and a guide bushing 341 installed to serve as a rotation guide of the panel fixing array 370 . ) 342 is preferably further formed.
  • the panel fixing array 350 includes a pair of left and right length bars 351 having a predetermined length; It is formed to be fixed by interconnecting the length bars 351, and includes a pair of left and right spacer bars 352 to which both ends of the guide post 340 are accommodated and fixed.
  • the guide rotation bracket 370 is bolted to the central portion of the spacing bar 352 with a fastening bolt.
  • the driving deceleration motor 360 includes a driving motor 361 , a motor base 362 on which the driving motor is installed, and the other side of the motor base 362 protruding from the other side of the motor base 362 to be pin-coupled with the guide rotation bracket 370 to provide a rotational force. It is configured to include a transmission shaft 363 for transmitting the. In addition, a pin for connecting and fixing the motor fixing bracket 380 is fixed to the other side of the motor base 362 .
  • the driving reduction motor 360 has a structure in which the motor base 362 is assembled, and the rotation range angle can be adjusted without deviate by the rotation of the shaft to the motor base 362 by more than the left and right rotation range angle. do.
  • the guide rotation bracket 370 includes a flange 371 having a bolt hole fixed to the panel fixing array 350 and a fastening bolt; a first connection part 372 protruding from one side of the flange 371 and pin-coupled to the driving reduction motor 360; a second connection part 373 protruding to the other side of the flange 371 and axially installed with one end of the guide post 340; It is configured to further include a connection coupling 374 for connecting the pin connecting the first connection part 372 and the drive reduction motor 360 .
  • the guide rotation bracket 370 may be configured as a left and right pair symmetrically installed on both ends of the guide post 340 , having a bolt hole fixed to the panel fixing array 350 and a fastening bolt. It is processed into a flange shape and protrudes to one side and the other side of the flange, one side is axially installed with one end of the guide post 340, and the other side is connected to the driving reduction motor 360 and fixed to the panel fixing array 350. It is desirable to be able to rotate and to be fixedly supported.
  • the worker piles the post 100 on the power generation site and erects it.
  • top frame 210 and the support frame 220 are installed at the upper end of the post 100 .
  • the operator installs a plurality of photovoltaic devices 300 in a line on the top frame 210 , and fixes the electric part 500 on the scaffold installed on the support frame 220 to complete the installation.
  • the rotation of the first rotation flange 322 in the rotation post 320 may determine the position of the photovoltaic device according to the position in the sun direction, that is, to face the south direction.
  • the angle adjustment bracket 330 and the fixed solar panel 390 of the rotation post 320 may be possible to adjust the solar elevation angle.
  • the range angle according to the optimal elevation angle and azimuth angle of the solar panel is preferably within 60 degrees.
  • the photovoltaic panel 390 interlocked by the guide rotation bracket 370 with the guide post 340 as an axis by the electrical operation of the driving deceleration motor 360 is condensing efficiency. You can rotate the sunlight tracking left and right to follow the sunlight to increase the . At this time, it is preferable that the driving reduction cap 360 is controlled to rotate the solar panel 390 by a predetermined angle every predetermined time through a timer and PLC.
  • the guide rotation bracket 370 connected to the coupling coupling 374 by the driving of the driving deceleration motor 360 rotates the guide post 340 as the shaft starting point.
  • the guide rotation bracket 370 and the fixed panel fixing array 350 rotate together, so that the solar panel 390 can be rotated at the same time.
  • the electric unit 500 receives the electric energy collected in the photovoltaic battery control unit (P1) wirelessly and is supplied to the photovoltaic inverter 510, and after phase conversion, it is sent to the electric pole or sent to the photovoltaic ESS (530) to be stored and then stored. It is convenient for construction and maintenance since the transmission/distribution line construction between the photovoltaic device and the main electric part 500 is deleted by sending it to the
  • the electric unit 500 installed on the control panel support 560 receives the electric energy collected from the solar battery control unit P1 wirelessly as shown in FIGS. 2 and 8 and transmits it to the electric pole after phase conversion or
  • the multi-purpose smart photovoltaic device does not depend on the use and location direction of the power generation site, increases the power generation efficiency compared to the site area, puts the electric device on the ground, and adopts the transmission/reception method as a wireless method By making installation and operation smart, it is possible to increase the efficiency of construction and maintenance work that is convenient and safe for smooth maintenance and application from an independent power generation system to a power generation system that is gradually scaled up.

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Abstract

The present invention relates to a multipurpose smart solar power generation system wherein multiple independent solar power generation devices are not affected by terrain and the direction of the terrain, and a solar panel is adjusted to an optimal azimuth angle and an optimal elevation angle without a separate link device and performs leftward/rightward tracking linked with the movement of the sun. The present invention provides a multipurpose smart solar power generation system comprising: a pillar erected by piling on a power generation site; a frame formed on the top of the pillar and formed as a structure comprising a top frame and a support frame; and multiple solar power generation devices spaced apart from each other in the frame and having solar panels, wherein each of the solar power generation devices comprises: a fixed post which is vertically erected; a rotation post installed on the top of the fixed post and installed such that a solar direction angle can be adjusted; an angle adjustment bracket installed on the top of the rotation post and installed such that a solar elevation angle can be adjusted; a guide post coupled to an upper end of the angle adjustment bracket and installed to guide leftward/rightward rotation for solar tracking; a panel fixing array connected to upper/lower ends of the guide post and installed to be able to rotate left and right while fixing and supporting a solar panel; a driving reduction motor pin-fixed to one end of the guide post and installed to operate the leftward/rightward rotation for solar tracking; a guide rotation bracket shaft-coupled while connecting/fixing the guide post to the panel fixing array, and installed to receive a rotation force from the driving reduction motor; a motor fixing bracket having one end coupled to the guide post and the other end to which the driving reduction motor is pin-fixed; and the solar panel finished/fixed to the panel fixing array and installed to collect sunlight.

Description

다목적 스마트 태양광발전장치Multi-purpose smart solar power generation device
본 발명은 다목적 스마트 태양광발전장치에 관한 것으로서, 더욱 상세하게는 지형 및 지형의 방향에 구애받지 않고 독립 및 복수의 태양광 발전장치가 별도의 링크장치 없이 태양광 패널이 최적의 방위각과 최적의 고도 각으로 조정되며 태양의 움직임을 따라 좌우 추적 연동케 한 다목적 스마트 태양광발전장치에 관한 것이다.The present invention relates to a multi-purpose smart photovoltaic device, and more particularly, independent and a plurality of photovoltaic power generation devices regardless of terrain and terrain direction, without a separate link device, a solar panel with an optimal azimuth and optimum It relates to a multi-purpose smart solar power generation device that is adjusted to the elevation angle and linked to the left and right according to the movement of the sun.
일반적으로 태양광 발전장치는 태양전지를 부착한 패널을 대규모로 펼쳐 태양광 에너지를 이용, 전기를 대규모로 생산하는 발전시스템을 말한다. In general, a photovoltaic device refers to a power generation system that uses solar energy by expanding a panel to which a solar cell is attached on a large scale to produce electricity on a large scale.
태양광 발전장치는 반영구적으로 활용할 수 있고, 무공해 태양 에너지원을 사용하는 점 등으로 인해 신재생 대체에너지 생산 및 친환경적인 특징이 있는 장치라 할 수 있다. 태양광발전은 단위면적당 받는 태양 에너지의 양에 한계가 있다. 따라서 집광 효율을 높이기 위해 태양광을 따라 회동하도록 추적식이 설치된다. The solar power generation device can be used semi-permanently, and it can be said that it is a device with new and renewable alternative energy production and eco-friendly characteristics due to the point that it uses a non-polluting solar energy source. Solar power generation has a limit in the amount of solar energy received per unit area. Therefore, a tracking type is installed to rotate along the sunlight in order to increase the light collecting efficiency.
종래의 도 1은 태양광 발전장치의 태양광 패널은 집광 효율성을 높이기 위해 태양광을 따라 회동할 수 있도록 한다. 이때, 태양광 추적을 위해 태양광 패널을 회동시킬 수 있도록 한 태양광 패널 추적시스템이 제공되며, 대한민국 등록특허 제10-2195705호를 통해 개시되어 있다. 이러한 태양광 패널 추적시스템은 태양광 패널의 회전 구동과 선회 동작이 태양의 이동 경로를 동시에 추적할 수 있으므로, 집광 효율을 극대화할 수 있다.1 shows that the solar panel of the photovoltaic device can rotate along the sunlight in order to increase the light collecting efficiency. In this case, a solar panel tracking system is provided so that the solar panel can be rotated for tracking the sunlight, which is disclosed through Korean Patent Registration No. 10-2195705. In this solar panel tracking system, the rotational driving and turning operation of the solar panel can simultaneously track the movement path of the sun, thereby maximizing the light collection efficiency.
하지만, 상기한 종래의 태양광 발전장치는 태양광 패널을 구동시키기 위한 링크 구동장치가 복잡 또는 대형화되어, 태양광 발전장치 설치 및 유지보수작업에 대한 효율성이 떨어지며, 발전부지의 입지 선택에 어려운 문제가 있었다.However, in the conventional photovoltaic device described above, the link driving device for driving the photovoltaic panel is complicated or large, so the efficiency of the installation and maintenance of the photovoltaic device is low, and it is difficult to select a location for the power generation site. there was
따라서, 상기한 바와 같은 종래의 문제점을 해결하기 위한 본 발명의 목적은, 태양광발전장치를 구축함에 따른 지형 및 지형의 방향에 구애받지 않고, 제작 및 설치가 편리하며, 발전효율이 높고, 유지 보수가 편리하며, 독립 및 복수로 설치가 가능하고, 발전시스템의 운용 스마트화가 가능토록 한 다목적 스마트 태양광발전장치를 제공하기 위함이다.Therefore, an object of the present invention for solving the problems of the prior art as described above is, regardless of the terrain and the direction of the topography according to the construction of the photovoltaic device, the manufacture and installation is convenient, the power generation efficiency is high, and the maintenance This is to provide a multi-purpose smart photovoltaic device that is convenient for maintenance, can be installed independently and in multiple ways, and enables smart operation of the power generation system.
본 발명의 다른 목적은, 태양광 패널이 최적의 방위각과 최적의 고도 각으로 조정되고 유효 입사각을 따라 좌우 추적 집광하는 구조로 태양광발전장치을 구축함에 따른 지형 및 지형의 방향에 구애받지 않는 다목적 스마트 태양광발전장치를 제공하고자 한 것이다.Another object of the present invention is to construct a solar power generation device in a structure in which a solar panel is adjusted to an optimal azimuth and an optimal elevation angle and traced left and right according to an effective angle of incidence. It is intended to provide a solar power generation device.
또한 본 발명의 또 다른 목적은, 다목적 스마트 태양광발전장치는 집광 효율에 큰 영향이 없는 태양광 추적 센서와 같은 부품이 소요되지 않고 구동 링크가 삭제되어, 부품 최소화에 따른 제작 및 설치가 편리하며, 각 구성품이 소형 경량으로 유지 보수가 편리한 다목적 스마트 태양광발전장치를 제공할 수 있다.In addition, another object of the present invention is that the multi-purpose smart photovoltaic device does not require parts such as a solar tracking sensor that has no significant effect on the light collection efficiency and the driving link is deleted, making it convenient to manufacture and install according to the minimization of parts, , each component can provide a multi-purpose smart photovoltaic device that is small and light and easy to maintain.
또한 본 발명의 또 다른 목적은, 태양광의 유효 입사각을 따라 좌우 추적 집광하므로 발전효율을 높일 수 있도록 함에 있다. In addition, another object of the present invention is to increase the power generation efficiency because the left and right tracking condensing according to the effective incident angle of sunlight.
또한 본 발명의 또 다른 목적은, 다목적 스마트 태양광발전장치는 태양광발전시스템에 독립 및 복수로 설치 가능하며 태양광 패널의 태양광 추적을 위한 회전 구동은, 구동감속모터를 패널고정어레이에 직결하여 타이머를 통한 시간 균등제어방식을 채택하여 자동조절하는 방식으로 누적 공차 및 빛 감지 오류로 인한 태양의 입사각을 벗어나는 불량 발생이 없는 다목적 스마트 태양광발전장치를 제공할 수 있다.In addition, another object of the present invention is, a multi-purpose smart photovoltaic device can be installed independently and in plurality in a photovoltaic system, and rotational driving for tracking sunlight of a photovoltaic panel is directly connected to the driving deceleration motor to the fixed panel array Thus, it is possible to provide a multi-purpose smart photovoltaic device that does not have defects that deviate from the incident angle of the sun due to accumulated tolerance and light detection error by adopting a time equalization control method through a timer and automatically adjusting it.
본 발명은 상술한 목적을 달성하기 위하여, 발전부지에 파일링으로 세워지는 지주와; 상기 지주의 상단에서 탑프레임과 지지프레임의 구조물로 이루어지는 프레임과; 상기 프레임에서 간격을 두고 복수로 설치되는 태양광패널을 갖는 태양광발전장치를 포함하되, 상기 태양광 발전장치는 수직으로 세워지는 고정포스트와; 상기 고정포스트 상단에 설치되어 태양광 방향각 조정이 가능하도록 설치되는 회전포스트와; 상기 회전포스트의 상단에 설치되어 태양광 고도각 조정이 가능하도록 설치되는 각도조정브라켓과; 상기 각도조정브라켓의 상측단에 결합되어 태양광 추적 좌우 회전을 안내하도록 설치되는 가이드포스트와; 상기 가이드포스트의 상/하측단에 연결 설치되며, 태양광 패널을 받치도록 고정하면서 좌우 회전이 가능하도록 설치되는 패널고정어레이와; 상기 가이드포스트 일단에 핀 고정 설치되어 태양광 추적 좌우 회전을 작동하도록 설치되는 구동감속모터와; 상기 가이드포스트와 패널고정어레이를 연결 고정하면서 축결합되며, 상기 구동감속모터의 회전력을 전달받도록 설치되는 가이드회전브라켓과; 상기 가이드포스트에 일단이 결합되며, 타단으로 상기 구동감속모터가 핀 고정으로 설치되는 모터고정브라켓과; 상기 패널고정어레이에 마감 고정되어 태양광을 집광하도록 설치되는 태양광 패널을 포함하여 이루어지는 것을 특징으로 하는 다목적 스마트 태양광발전장치를 개시한다.In order to achieve the above object, the present invention includes: a frame made of a structure of a top frame and a support frame at the upper end of the post; A photovoltaic device including a photovoltaic device having a plurality of photovoltaic panels installed at intervals from the frame, wherein the photovoltaic device comprises: a vertical fixed post; a rotating post installed at the top of the fixed post to enable adjustment of the sunlight direction angle; an angle adjustment bracket that is installed on the upper end of the rotary post to enable solar elevation angle adjustment; a guide post coupled to the upper end of the angle adjustment bracket and installed to guide the left and right rotation of the sunlight tracking; a panel fixing array connected to the upper/lower ends of the guide post and installed so as to be able to rotate left and right while fixing to support the solar panel; a driving deceleration motor that is fixed to one end of the guide post and installed to operate the left and right rotation of the sunlight tracking; a guide rotation bracket that is shaft-coupled while connecting and fixing the guide post and the panel fixing array, and is installed to receive the rotational force of the driving deceleration motor; a motor fixing bracket having one end coupled to the guide post and the other end of which the driving reduction motor is fixedly installed with a pin; Disclosed is a multi-purpose smart photovoltaic device, characterized in that it comprises a photovoltaic panel that is finished and fixed to the panel fixing array is installed to collect sunlight.
또한, 상기 고정포스트는 수직 길이방향의 몸체와; 상기 몸체의 상측단에 돌출 형성되어 일면에 상기 회전포스트를 연결 고정하는 체결볼트가 가이드되는 가이드 장홈을 갖는 연결플랜지가 형성되며, 상기 몸체의 하측단에 돌출 형성되어 상기 지지프레임에 고정 설치되는 고정플랜지를 포함하여 구성됨을 특징으로 할 수 있다.In addition, the fixing post includes a body in a vertical longitudinal direction; A connection flange is formed on one side of the body to protrude from the upper end of the body and has a guide long groove to guide a fastening bolt for connecting and fixing the rotary post. It may be characterized in that it is configured to include a flange.
또한, 상기 회전포스트는 수직 길이방향의 몸체와; 상기 몸체의 하측단에 돌출 형성되어 일면에 상기 고정포스트의 연결플랜지에 형성된 가이드 장홈을 따라 회전이 가능하면서 체결볼트로 고정되는 제1 회전플랜지와; 상기 몸체의 상측단에 돌출 형성되어 상기 각도조정브라켓이 회전 가능하도록 핀 결합되는 제2 회전플랜지를 포함하고, 상기 제2 회전플랜지에 핀 결합된 상기 각도조정브라켓의 회전으로 태양광 고도각 조정이 가능하도록 이루어짐을 특징으로 할 수 있다.In addition, the rotating post includes a body in a vertical longitudinal direction; a first rotation flange protruded from the lower end of the body and rotatable along a guide long groove formed in the connection flange of the fixing post on one surface and fixed with a fastening bolt; It includes a second rotation flange that is formed protruding from the upper end of the body and is pin-coupled to the angle adjustment bracket so that the angle adjustment bracket is rotatable, and the solar altitude angle adjustment is performed by rotation of the angle adjustment bracket pin-coupled to the second rotation flange. It may be characterized in that it is made possible.
또한, 상기 각도조정브라켓은 일측이 양측으로 분리 연장되어 상기 회전포스트에 핀 결합되며 각도 조절 가능하도록 설치되는 연장플랜지와; 상기 연장플랜지의 타측으로 구부러져 연결 형성되어 상기 가이드포스트를 연결 고정하도록 형성되는 지지플랜지를 포함하여 구성되는 것을 특징으로 할 수 있다.In addition, the angle adjustment bracket includes an extension flange, one side of which is separated and extended to both sides, is pin-coupled to the rotary post, and is installed so as to be able to adjust the angle; It may be configured to include a support flange formed to be connected and bent to the other side of the extension flange to connect and fix the guide post.
또한, 상기 가이드포스트는 원통형의 몸체로서, 상기 가이드포스트는 그 몸체의 상/하측단에서 연결 설치되어 상기 패널고정어레이의 회전 가이드 역할을 가능하도록 설치되는 가이드부싱이 더 형성됨을 특징으로 할 수 있다.In addition, the guide post is a cylindrical body, the guide post is connected to the upper / lower end of the body, it may be characterized in that a guide bushing installed to enable the rotation guide of the panel fixing array is further formed. .
또한, 상기 패널고정어레이는 일정 길이를 갖는 좌우 한쌍의 길이바와; 상기 길이바를 상호 연결하여 고정하도록 형성되며, 상기 가이드포스트의 양측단이 수용 고정되는 좌우 한쌍의 간격바를 포함하여 구성되고, 상기 간격바의 중앙부에는 상기 가이드회전브라켓이 체결볼트로 볼팅 고정됨을 특징으로 할 수 있다.In addition, the panel fixing array includes a pair of left and right length bars having a predetermined length; It is formed to connect and fix the length bars, and it comprises a pair of left and right spacer bars to which both ends of the guide post are accommodated and fixed, and the guide rotation bracket is bolted to the central part of the spacer bar with a fastening bolt. Characterized in that can do.
또한, 상기 가이드회전브라켓은 상기 패널고정어레이와 체결볼트로 고정되는 볼트공을 갖는 플랜지와; 상기 플랜지의 일측으로 돌출되어 상기 구동감속모터와 핀 결합되는 제1 연결부와; 상기 플랜지의 타측으로 돌출되어 상기 가이드포스트의 일측단부와 축설되는 제2 연결부와; 상기 제1 연결부와 상기 구동감속모터를 핀 연결하는 연결커플링을 더 포함하여 구성되며, 상기 가이드회전브라켓은 상기 가이드포스트의 양측단부에 대칭으로 축설되는 좌우 한쌍으로 이루어짐을 특징으로 할 수 있다.In addition, the guide rotation bracket includes a flange having a bolt hole fixed to the panel fixing array and a fastening bolt; a first connection part protruding from one side of the flange and pin-coupled to the driving reduction motor; a second connection part protruding to the other side of the flange and axially connected to one end of the guide post; It may further include a coupling coupling connecting the first connection part and the driving reduction motor with a pin, and the guide rotation bracket may be configured as a left and right pair symmetrically installed at both ends of the guide post.
본 발명에 따른 다목적 스마트 태양광발전장치는 다음과 같은 효과가 있다.The multi-purpose smart photovoltaic device according to the present invention has the following effects.
첫째, 다목적 스마트 태양광발전장치는 태양광 패널이 최적의 방위각과 최적의 고도 각으로 조정되고 유효 입사각을 따라 좌우 추적 집광하는 구조로 태양광발전시스템을 구축함에 따른 지형 및 지형의 방향에 구애받지 않는다. First, the multi-purpose smart photovoltaic device has a structure in which the photovoltaic panel is adjusted to the optimal azimuth and the optimal elevation angle, and the left and right tracking and condensing light is collected along the effective angle of incidence. does not
둘째, 다목적 스마트 태양광발전장치는 집광 효율에 큰 영향이 없는 태양광 추적 센서와 같은 부품이 소요되지 않고 구동 링크가 삭제되어, 부품 최소화에 따른 제작 및 설치가 편리하며, 각 구성품이 소형 경량으로 유지 보수가 편리하다. 셋째, 다목적 스마트 태양광발전장치는 태양광의 유효 입사각을 따라 좌우 추적 집광하므로 발전효율을 높일 수 있다.Second, the multi-purpose smart photovoltaic device does not require parts such as a solar tracking sensor that does not significantly affect the light collection efficiency, and the driving link is deleted, making it convenient to manufacture and install according to the minimization of parts, and each component is small and light. Maintenance is convenient. Third, the multi-purpose smart photovoltaic device can increase the power generation efficiency by tracking and condensing left and right according to the effective incident angle of sunlight.
넷째, 다목적 스마트 태양광발전장치는 태양광발전시스템에 독립 및 복수로 설치 가능하며 태양광 패널의 태양광 추적을 위한 회전 구동은, 구동감속모터를 패널고정어레이에 직결하여 타이머를 통한 시간 균등제어방식을 채택하여 자동조절하는 방식으로 누적 공차 및 빛 감지 오류로 인한 태양의 입사각을 벗어나는 불량 발생이 없다.Fourth, multi-purpose smart photovoltaic power generation device can be installed independently or in plurality in photovoltaic power generation system, and rotation driving for solar tracking of photovoltaic panel is directly connected to the panel fixed array by driving deceleration motor to equal time control through timer It is an automatic adjustment method by adopting the method, so there is no defect that exceeds the angle of incidence of the sun due to accumulated tolerance and light detection error.
도 2 내지 도 8은 본 발명에 의한 다목적 스마트 태양광발전장치에 따른 일 실시 예를 보인 것으로서, 2 to 8 show an embodiment according to a multi-purpose smart photovoltaic device according to the present invention,
도 1은 종래의 기술에 따른 태양광 발전장치에 태양광 패널이 집광 효율성을 높이기 위해 태양광을 따라 회동하도록 링크 구동장치가 설치된 상태를 나타낸 사시도이다,1 is a perspective view showing a state in which a link driving device is installed so that a photovoltaic panel rotates along the sunlight in order to increase light collection efficiency in a photovoltaic device according to the prior art;
도 2는 발전부지의 시설물에 본 발명에 의한 다목적 스마트 태양광발전장치가 설치된 것을 보인 전체 예시도,2 is an overall exemplary view showing that a multi-purpose smart solar power generation device according to the present invention is installed in a facility of a power generation site;
도 3은 본 발명에 의한 다목적 스마트 태양광발전장치를 보인 전체 분해 예시도,3 is an overall exploded view showing a multi-purpose smart photovoltaic device according to the present invention;
도 4는 본 발명에 의한 다목적 스마트 태양광발전장치를 보인 측면 예시도,4 is an exemplary side view showing a multi-purpose smart photovoltaic device according to the present invention;
도 5는 본 발명에 의한 다목적 스마트 태양광발전장치의 태양광 패널이 최적의 방위각으로 조정되는 범위 각을 표현한 예시도.5 is an exemplary diagram expressing the range angle in which the solar panel of the multi-purpose smart photovoltaic device according to the present invention is adjusted to the optimal azimuth.
도 6은 본 발명에 의한 다목적 스마트 태양광발전장치의 태양광 패널이 최적의 고도각으로 조정되는 범위 각을 표현한 예시도,6 is an exemplary view expressing the range angle in which the solar panel of the multi-purpose smart photovoltaic device according to the present invention is adjusted to the optimal elevation angle;
도 7은 본 발명에 의한 다목적 스마트 태양광발전장치의 태양광 패널이 PLC 프로그램에 따라 동작하는 회전 범위 각을 표현한 예시도, 7 is an exemplary view expressing the rotation range angle in which the solar panel of the multi-purpose smart photovoltaic device according to the present invention operates according to the PLC program;
도 8은 본 발명의 바람직한 실시예에 따른 다목적 스마트 태양광발전장치가 태양광 발전시스템에 적용된 전기구성도이다. 8 is an electrical configuration diagram in which a multi-purpose smart photovoltaic device according to a preferred embodiment of the present invention is applied to a photovoltaic power generation system.
본 발명은 다양한 변경을 가할 수 있고 여러 가지 실시 예를 가질 수 있는 바, 특정 실시 예들을 도면에 예시하고 상세한 설명에 상세하게 설명하고자 한다.그러나 이는 본 발명을 특정한 실시 형태에 대해 한정하려는 것이 아니며, 본 발명의 사상 및 기술 범위에 포함되는 모든 변경, 균등물 내지 대체물을 포함하는 것으로 이해되어야 한다.Since the present invention can make various changes and can have various embodiments, specific embodiments are illustrated in the drawings and described in detail in the detailed description. However, this is not intended to limit the present invention to specific embodiments. , it should be understood to include all modifications, equivalents and substitutes included in the spirit and scope of the present invention.
본 발명은 이하에서 개시되는 실시 예에 한정되는 것이 아니라 서로 다른 다양한 형태로 구현될 수 있으며, 단지 본 실시 예는 본 발명의 개시가 완전하도록 하며 통상의 지식을 가진 자에게 발명의 범주를 완전하게 알려주기 위하여 제공되는 것이다.The present invention is not limited to the embodiments disclosed below, but may be implemented in a variety of different forms, and only these embodiments allow the disclosure of the present invention to be complete and to completely convey the scope of the invention to those of ordinary skill in the art. It is provided to inform you.
이하, 본 발명의 바람직한 실시 예를 첨부된 도면들을 참조하여 상세히 설명한다. 우선 각 도면의 구성 요소들에 참조부호를 부가함에 있어서, 동일한 구성 요소들에 대해서는 비록 다른 도면상에 표시되더라도 가능한 한 동일한 부호를 가지도록 하고 있음에 유의해야 한다. 또한, 본 발명을 설명함에 있어, 관련된 공지 구성 또는 기능에 대한 구체적인 설명이 본 발명의 요지를 흐릴 수 있다고 판단되는 경우에는 그 상세한 설명은 생략한다.Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings. First of all, it should be noted that in adding reference numerals to the components of each drawing, the same components are given the same reference numerals as much as possible even though they are indicated in different drawings. In addition, in describing the present invention, if it is determined that a detailed description of a related known configuration or function may obscure the gist of the present invention, the detailed description thereof will be omitted.
도 1 내지 도 7은 본 발명에 의한 다목적 스마트 태양광발전장치를 보인 실시 예이다.1 to 7 are embodiments showing a multi-purpose smart photovoltaic device according to the present invention.
도 1 내지 도 7을 참조하면, 본 발명에 의한 다목적 스마트 태양광발전장치는 발전부지에 파일링으로 세워지는 지주(100)와; 상기 지주(100)의 상단에 탑프레임(210)과 지지프레임(220)의 구조물로 이루어지는 프레임(200)과; 상기 프레임(200)에서 간격을 두고 복수로 설치되는 태양광발전장치(300)를 포함하여 구성된다.1 to 7, the multi-purpose smart photovoltaic power generation device according to the present invention includes a post 100 erected as a filing in the power generation site; a frame 200 made of a structure of a top frame 210 and a support frame 220 on an upper end of the post 100; It is configured to include a photovoltaic device 300 installed in plurality at intervals in the frame 200 .
도 2를 참조하면, 상기 지주(100)는 발전부지에 파일링되어 태양광발전장치(300)를 지지하는 구성으로써, 발전부지로부터 상방을 향해 양쪽으로 수직 설치된다. 지주(100)는 발전부지의 공간 효율성과 지지력을 높이기 위해 두 개로 제공됨이 바람직하다. 상기 지주(100)는 일체로 구성되기보다는 도 2에 도시된 바와 같이 탑포스트(110)와, 주포스트(120)와, 기초포스트(130)로 분할 구성됨이 바람직하다. 상기 주포스트(120)는 지면으로부터 태양광발전장치(300)의 설치 높이를 제공한다. 이때, 주포스트(120)의 높이는 용지의 활용 목적이 원활하게 이루어질 수 있는 폭과 높이가 제공됨이 바람직하다. 기초포스트(130)는 지면에 박혀 고정되는 구성이다. 이때, 영농형으로 설치할 경우는 기초포스트(130)에 스크류파일(131)이 설치되며, 스크류파일(131)은 지주(100)의 지지력을 더욱 견고하게 한다. 특히 경작지의 물성은 비교적 연질이므로, 지주(100)는 스크류파일(131)을 통해 지지력을 극대화시킬 수 있다. Referring to FIG. 2 , the posts 100 are piled in the power generation site to support the photovoltaic device 300 , and are vertically installed on both sides toward the upper side from the power generation site. It is preferable that the post 100 is provided in two in order to increase the space efficiency and bearing capacity of the power generation site. The post 100 is preferably divided into a top post 110 , a main post 120 , and a base post 130 as shown in FIG. 2 rather than being integrally configured. The main post 120 provides an installation height of the photovoltaic device 300 from the ground. At this time, the height of the main post 120 is preferably provided with a width and a height that the purpose of using the paper can be smoothly achieved. The basic post 130 is a configuration that is fixed in the ground. At this time, when installing the farming type, the screw pile 131 is installed on the foundation post 130 , and the screw pile 131 makes the supporting force of the post 100 more solid. In particular, since the physical properties of the cultivated land are relatively soft, the holding force 100 can be maximized through the screw pile 131 .
상기 프레임(200)은 태양광발전장치가 설치되는 골조 역할을 하며, 탑프레임(210)과 지지프레임(220)으로 구성됨이 바람직하다. 탑프레임(210)은 지지프레임(220) 설치를 위해 제공되며, 지주(100)의 상단부에 설치된다. 상기 탑프레임(210)은 지주(100)에 대하여 수직한 상태로 설치된다. 상기 지지프레임(220)은 태양광발전장치(300) 설치를 위해 제공되며, 탑프레임(210)에 설치된다. 또한 지지프레임(220)은 탑프레임(210) 설치를 위해 제공된다. 지지프레임(220)은 탑프레임(210)의 길이 방향으로 탑프레임(210)에 대하여 수평한 방향으로 설치된다. 지지프레임(220)은 탑프레임(210)을 따라 복수로 설치할 수 있다.The frame 200 serves as a frame in which the photovoltaic device is installed, and is preferably composed of a top frame 210 and a support frame 220 . The top frame 210 is provided for installation of the support frame 220 , and is installed at the upper end of the post 100 . The top frame 210 is installed in a vertical state with respect to the post (100). The support frame 220 is provided for installing the photovoltaic device 300 , and is installed on the top frame 210 . In addition, the support frame 220 is provided for installing the top frame 210 . The support frame 220 is installed in a horizontal direction with respect to the top frame 210 in the longitudinal direction of the top frame 210 . A plurality of support frames 220 may be installed along the top frame 210 .
상기 태양광패널을 갖는 태양광발전장치(300)는 수직으로 세워지는 고정포스트(310)와; 상기 고정포스트(310) 상단에 설치되어 태양광 방향각 조정이 가능하도록 설치되는 회전포스트(320)와; 상기 회전포스트(320)의 상단에 설치되어 태양광 고도각 조정이 가능하도록 설치되는 각도조정브라켓(330)과; 상기 각도조정브라켓(330)의 상측단에 결합되어 태양광 추적 좌우 회전을 안내하도록 설치되는 가이드포스트(340)와; 상기 가이드포스트(340)의 상/하측단에 연결 설치되며, 태양광 패널을 받치도록 고정하면서 좌우 회전이 가능하도록 설치되는 패널고정어레이(350)와; 상기 가이드포스트(340) 일단에 핀 고정 설치되어 태양광 추적 좌우 회전을 작동하도록 설치되는 구동감속모터(360)와; 상기 가이드포스트(340)와 패널고정어레이(350)를 연결 고정하면서 축결합되며, 상기 구동감속모터(360)의 회전력을 전달받도록 설치되는 가이드회전브라켓(370)과; 상기 가이드포스트(340)에 일단이 결합되며, 타단으로 상기 구동감속모터(360)가 핀 고정으로 설치되는 모터고정브라켓(380)과; 상기 패널고정어레이(350)에 마감 고정되어 태양광을 집광하도록 설치되는 태양광 패널(390)을 포함하여 구성된다.The photovoltaic device 300 having the photovoltaic panel includes a fixed post 310 erected vertically; a rotating post 320 installed on the fixed post 310 to enable adjustment of the sunlight direction angle; an angle adjustment bracket 330 installed on the upper end of the rotation post 320 to enable solar altitude angle adjustment; a guide post 340 coupled to the upper end of the angle adjustment bracket 330 and installed to guide the left and right rotation of the sunlight tracking; a panel fixing array 350 that is connected to the upper/lower ends of the guide post 340 and installed so as to be rotatable left and right while fixing to support the solar panel; a driving deceleration motor 360 which is fixedly installed at one end of the guide post 340 to operate the solar tracking left and right rotation; a guide rotation bracket 370 coupled to the shaft while connecting and fixing the guide post 340 and the panel fixing array 350 and installed to receive the rotational force of the driving reduction motor 360; a motor fixing bracket 380 having one end coupled to the guide post 340 and the other end of which the driving deceleration motor 360 is fixedly installed with a pin; It is configured to include a photovoltaic panel 390 that is finished and fixed to the panel fixing array 350 and is installed to collect sunlight.
여기서, 상기 태양광발전장치(300)의 전기생산 원리는 공지된 기술과 동일하며 태양광발전장치(300)의 태양광패널(360)은 공지된 기술이 적용되어도 무방하다. Here, the electricity production principle of the photovoltaic device 300 is the same as a known technology, and a known technology may be applied to the solar panel 360 of the photovoltaic device 300 .
또한, 상기 태양광발전장치(300)는 복수로 제공되며 복수의 태양광발전장치(300)는 상호간에 이격된 상태로 탑프레임(210)에 설치된다. 이와 같이 복수의 태양광발전장치(300)가 서로 이격됨에 따라, 태양광발전장치(300) 사이에는 간격이 발생하고, 그 간격을 통해 경작지 및 하부 부지에 일조량을 충분히 확보시킬 수 있다. In addition, the photovoltaic device 300 is provided in plurality, and the plurality of photovoltaic devices 300 are installed on the top frame 210 while being spaced apart from each other. As described above, as the plurality of photovoltaic devices 300 are spaced apart from each other, a gap occurs between the photovoltaic devices 300 , and through the gap, sufficient amount of sunlight can be secured to the cultivated land and the lower site.
상기 고정포스트(310)는 수직 길이방향의 몸체(311)와; 상기 몸체(311)의 상측단에 돌출 형성되어 일면에 상기 회전포스트(320)를 연결 고정하는 체결볼트(B)가 가이드되는 가이드 장홈(312a)을 갖는 연결플랜지(312)가 형성되며, 상기 몸체(311)의 하측단에 돌출 형성되어 상기 지지프레임(220)에 고정 설치되는 고정플랜지(313)를 포함하여 구성된다.The fixing post 310 includes a body 311 in the vertical longitudinal direction; A connection flange 312 having a guide long groove 312a through which a fastening bolt (B) protruding from the upper end of the body 311 to connect and fix the rotary post 320 is guided is formed on one surface, the body It is formed to protrude from the lower end of the 311 and is configured to include a fixing flange 313 that is fixedly installed on the support frame 220 .
상기 회전포스트(320)는 수직 길이방향의 몸체(321)와; 상기 몸체(321)의 하측단에 돌출 형성되어 일면에 상기 고정포스트(310)의 연결플랜지(312)에 형성된 가이드 장홈(312a)을 따라 회전이 가능하면서 체결볼트(B)로 고정되는 제1 회전플랜지(322)와; 상기 몸체(321)의 상측단에 돌출 형성되어 상기 각도조정브라켓(330)이 회전 가능하도록 핀 결합되는 제2 회전플랜지(323)를 포함하고, 상기 제2 회전플랜지(323)에 핀 결합된 상기 각도조정브라켓(330)의 회전으로 태양광 고도각 조정이 가능하도록 이루어질 수 있다.The rotating post 320 includes a body 321 in the vertical longitudinal direction; The first rotation is formed protruding from the lower end of the body 321 and is rotatable along the guide long groove 312a formed in the connection flange 312 of the fixing post 310 on one surface while being fixed with the fastening bolt (B). a flange 322; a second rotation flange 323 protruding from the upper end of the body 321 to which the angle adjustment bracket 330 is pin-coupled to be rotatable, the second rotation flange 323 being pin-coupled to the second rotation flange 323 The rotation of the angle adjustment bracket 330 can be made so that the solar altitude angle can be adjusted.
상기 각도조정브라켓(330)은 일측이 양측으로 분리 연장되어 상기 회전포스트(320)에 핀 결합되며 각도 조절 가능하도록 설치되는 연장플랜지(331)와; 상기 연장플랜지(331)의 타측으로 구부러져 연결 형성되어 상기 가이드포스트(340)를 연결 고정하도록 형성되는 지지플랜지(332)를 포함하여 구성하게 된다.The angle adjustment bracket 330 has one side extended separately to both sides, is pin-coupled to the rotation post 320, and an extension flange 331 installed so as to be able to adjust the angle; It is configured to include a support flange 332 formed to be connected and bent to the other side of the extension flange 331 to connect and fix the guide post 340 .
상기 가이드포스트(340)는 원통형의 몸체로서, 상기 가이드포스트(340)는 그 몸체의 상/하측단에서 연결 설치되어 상기 패널고정어레이(370)의 회전 가이드 역할을 가능하도록 설치되는 가이드부싱(341)(342)이 더 형성됨이 바람직하다.The guide post 340 is a cylindrical body, and the guide post 340 is connected at upper/lower ends of the body, and a guide bushing 341 installed to serve as a rotation guide of the panel fixing array 370 . ) 342 is preferably further formed.
상기 패널고정어레이(350)는 일정 길이를 갖는 좌우 한쌍의 길이바(351)와; 상기 길이바(351)를 상호 연결하여 고정하도록 형성되며, 상기 가이드포스트(340)의 양측단이 수용 고정되는 좌우 한쌍의 간격바(352)를 포함하여 구성하게 된다. 여기서 상기 간격바(352)의 중앙부에는 상기 가이드회전브라켓(370)이 체결볼트로 볼팅 고정하게 된다.The panel fixing array 350 includes a pair of left and right length bars 351 having a predetermined length; It is formed to be fixed by interconnecting the length bars 351, and includes a pair of left and right spacer bars 352 to which both ends of the guide post 340 are accommodated and fixed. Here, the guide rotation bracket 370 is bolted to the central portion of the spacing bar 352 with a fastening bolt.
상기 구동감속모터(360)는 구동모터(361)와, 상기 구동모터가 설치되는 모터베이스(362)와, 모터베이스(362)의 타측으로 돌출되어 상기 가이드회전브라켓(370)과 핀 결합되어 회전력을 전달하는 전달축(363)을 포함하여 구성된다. 또한, 상기 모터베이스(362)의 타측으로는 상기 모터고정브라켓(380)을 연결 고정하는 핀이 결합 고정하게 된다.The driving deceleration motor 360 includes a driving motor 361 , a motor base 362 on which the driving motor is installed, and the other side of the motor base 362 protruding from the other side of the motor base 362 to be pin-coupled with the guide rotation bracket 370 to provide a rotational force. It is configured to include a transmission shaft 363 for transmitting the. In addition, a pin for connecting and fixing the motor fixing bracket 380 is fixed to the other side of the motor base 362 .
여기서, 상기 구동감속모터(360)는, 모터베이스(362)가 조립 구성되며 상기 모터베이스(362)에 축 회전이 좌우 회전 범위 각 이상으로 벗어나지 않고 회전 범위 각을 조정할 수 있는 구조로 된 것이 바람직하다. Here, it is preferable that the driving reduction motor 360 has a structure in which the motor base 362 is assembled, and the rotation range angle can be adjusted without deviate by the rotation of the shaft to the motor base 362 by more than the left and right rotation range angle. do.
상기 가이드회전브라켓(370)은 상기 패널고정어레이(350)와 체결볼트로 고정되는 볼트공을 갖는 플랜지(371)와; 상기 플랜지(371)의 일측으로 돌출되어 상기 구동감속모터(360)와 핀 결합되는 제1 연결부(372)와; 상기 플랜지(371)의 타측으로 돌출되어 상기 가이드포스트(340)의 일측단부와 축설되는 제2 연결부(373)와; 상기 제1 연결부(372)와 상기 구동감속모터(360)를 핀 연결하는 연결커플링(374)을 더 포함하여 구성된다. The guide rotation bracket 370 includes a flange 371 having a bolt hole fixed to the panel fixing array 350 and a fastening bolt; a first connection part 372 protruding from one side of the flange 371 and pin-coupled to the driving reduction motor 360; a second connection part 373 protruding to the other side of the flange 371 and axially installed with one end of the guide post 340; It is configured to further include a connection coupling 374 for connecting the pin connecting the first connection part 372 and the drive reduction motor 360 .
또한, 상기 가이드회전브라켓(370)은 상기 가이드포스트(340)의 양측단부에 대칭으로 축설되는 좌우 한 쌍으로 구성할 수 있는데, 상기 패널고정어레이(350)와 체결볼트로 고정되는 볼트공을 갖는 플랜지형상으로 가공되며 플랜지의 일측 및 타측으로 축 가공 돌출되어 일측은 상기 가이드포스트(340)의 일측단부와 축설되고, 타측은 상기 구동감속모터(360)와 연결 고정되어 패널고정어레이(350)의 회전 및 고정 지지할 수 있도록 함이 바람직하다.In addition, the guide rotation bracket 370 may be configured as a left and right pair symmetrically installed on both ends of the guide post 340 , having a bolt hole fixed to the panel fixing array 350 and a fastening bolt. It is processed into a flange shape and protrudes to one side and the other side of the flange, one side is axially installed with one end of the guide post 340, and the other side is connected to the driving reduction motor 360 and fixed to the panel fixing array 350. It is desirable to be able to rotate and to be fixedly supported.
이하, 본 발명의 의한 다목적 스마트 태양광발전장치의 구성에 따른 작용 효과를 설명하면 다음과 같다. 이하 설명은 상기 구조 설명에 따른다.Hereinafter, the operation and effect according to the configuration of the multi-purpose smart photovoltaic device according to the present invention will be described as follows. The following description is in accordance with the above structure description.
먼저, 작업자는 발전부지에 지주(100)을 파일링하여 세운다.First, the worker piles the post 100 on the power generation site and erects it.
다음, 지주(100)의 상단부에 탑프레임(210)과 지지프레임(220)을 설치한다.Next, the top frame 210 and the support frame 220 are installed at the upper end of the post 100 .
다음으로, 작업자는 상기 탑프레임(210) 상에서 복수의 태양광발전장치(300)를 일렬로 설치하고, 상기 지지프레임(220)에 설치된 발판 위에 전기부(500)를 고정하여 설치를 마무리한다.Next, the operator installs a plurality of photovoltaic devices 300 in a line on the top frame 210 , and fixes the electric part 500 on the scaffold installed on the support frame 220 to complete the installation.
도 6 내지 도8을 참조하면, 상기 회전포스트(320)에서 제1 회전플랜지(322)의 회전으로 태양 방향 위치에 따른 태양광발전장치의 위치 즉, 남쪽방향을 향하도록 정할 수 있다. 6 to 8 , the rotation of the first rotation flange 322 in the rotation post 320 may determine the position of the photovoltaic device according to the position in the sun direction, that is, to face the south direction.
더불어, 상기 회전포스트(320)의 제2 회전플랜지(323)와 핀 결합된 상기 각도조정브라켓(330)의 상하 회전 조정으로 상기 각도조정브라켓(330)과 연결 고정된 태양광패널(390)의 태양광 고도각 조정이 가능할 수 있다. 이때 태양광 패널의 최적의 고도각 및 방위각에 따른 범위각은 60도 이내가 바람직하다.In addition, by adjusting the vertical rotation of the second rotation flange 323 and the pin-coupled angle adjustment bracket 330 of the rotation post 320, the angle adjustment bracket 330 and the fixed solar panel 390 of It may be possible to adjust the solar elevation angle. In this case, the range angle according to the optimal elevation angle and azimuth angle of the solar panel is preferably within 60 degrees.
한편으로, 태양광발전장치(300)는 상기 구동감속모터(360)의 전기적 작동으로 가이드포스트(340)를 축으로 상기 가이드회전브라켓(370)에 의해 연동되는 태양광패널(390)이 집광 효율성을 높이기 위해 태양광을 따라 태양광 추적 좌우 회전을 할 수 있다. 이때, 상기 구동감속모(360)는 타이머 및 PLC를 통해 태양광 패널(390)을 일정 시간마다 일정 각도만큼 회전시킬 수 있도록 제어되는 것이 바람직하다.On the other hand, in the photovoltaic device 300 , the photovoltaic panel 390 interlocked by the guide rotation bracket 370 with the guide post 340 as an axis by the electrical operation of the driving deceleration motor 360 is condensing efficiency. You can rotate the sunlight tracking left and right to follow the sunlight to increase the . At this time, it is preferable that the driving reduction cap 360 is controlled to rotate the solar panel 390 by a predetermined angle every predetermined time through a timer and PLC.
다시 말해, 구동감속모터(360)의 구동으로 연결커플링(374)으로 연결된 가이드회전브라켓(370)이 가이드포스트(340)을 축 기점으로 회전한다. 이때 상기 가이드회전브라켓(370)과 고정된 패널고정어레이(350)가 함께 회전하는 것으로, 태양광 패널(390)을 동시에 회전 가능하도록 이루어진다.In other words, the guide rotation bracket 370 connected to the coupling coupling 374 by the driving of the driving deceleration motor 360 rotates the guide post 340 as the shaft starting point. At this time, the guide rotation bracket 370 and the fixed panel fixing array 350 rotate together, so that the solar panel 390 can be rotated at the same time.
한편, 전기부(500)는 태양광배터리 제어부(P1)에 모아진 전기에너지를 태양광발전인버터(510)로 무선 공급 받고 위상 변환 후 전주로 보내거나 태양광발전ESS(530)로 보내져 저장 후 전주로 보내는 방식으로 태양광발전장치와 메인 전기부(500) 사이의 송배전 선로공사가 삭제됨으로 시공 및 유지 보수에 편리하다.On the other hand, the electric unit 500 receives the electric energy collected in the photovoltaic battery control unit (P1) wirelessly and is supplied to the photovoltaic inverter 510, and after phase conversion, it is sent to the electric pole or sent to the photovoltaic ESS (530) to be stored and then stored. It is convenient for construction and maintenance since the transmission/distribution line construction between the photovoltaic device and the main electric part 500 is deleted by sending it to the
바람직하게는, 제어반지지대(560)에 설치된 상기 전기부(500)에는 도 2 및 도 8에 도시된 바와 같이 태양광배터리 제어부(P1)에서 모아진 전기에너지를 무선 공급 받아 위상 변환 후 전주로 보내거나 태양광발전ESS(530)로 보내는 태양광발전인버터(510), 상기 태양광발전인버터(510)에서 받은 태양광 에너지를 저장 후 발전량이 떨어지는 시간대에 송전하는 태양광발전ESS(530)에서 받은 태양광에너지를 저장 후 발전량이 떨어지는 시간대에 송전하는 태양광발전ESS(530)을 포함한다. Preferably, the electric unit 500 installed on the control panel support 560 receives the electric energy collected from the solar battery control unit P1 wirelessly as shown in FIGS. 2 and 8 and transmits it to the electric pole after phase conversion or The solar power inverter 510 sent to the photovoltaic power generation ESS 530, the solar power received from the photovoltaic power generation ESS 530 that stores the solar energy received from the photovoltaic power inverter 510 and transmits it at a time when the amount of power generation falls It includes a photovoltaic power generation ESS (530) that stores light energy and transmits it at a time when the amount of power generation falls.
지금까지 설명한 바와 같이 본 발명에 따른 다목적 스마트 태양광발전장치는 발전부지의 용도 및 입지 방향에 구애받지 않고, 입지면적 대비 발전효율을 높이고, 전기장치를 지상으로 하며 송 수전 방식을 무선방식으로 채택하여 설치 및 운영을 스마트화하여 원활한 유지 보수와 독립 발전시스템에서 점차 규모화되는 발전시스템까지 적용하기에 편리하고 안전한 시공 및 유지 보수 작업의 효율성을 높일 수 있다. As described so far, the multi-purpose smart photovoltaic device according to the present invention does not depend on the use and location direction of the power generation site, increases the power generation efficiency compared to the site area, puts the electric device on the ground, and adopts the transmission/reception method as a wireless method By making installation and operation smart, it is possible to increase the efficiency of construction and maintenance work that is convenient and safe for smooth maintenance and application from an independent power generation system to a power generation system that is gradually scaled up.
본 발명은 이상에서 살펴본 바와 같이 바람직한 실시 예를 들어 도시하고 설명하였으나, 상기한 실시 예에 한정되지 아니하며 본 발명의 정신을 벗어나지 않는 범위 내에서 당해 발명이 속하는 기술분야에서 통상의 지식을 가진 자에 의해 본 발명의 기술사상과 아래에 기재될 특허청구범위의 균등범위 내에서 다양한 수정 및 변형이 가능함은 물론이다.Although the present invention has been illustrated and described with reference to preferred embodiments as described above, it is not limited to the above-described embodiments, and within the scope of not departing from the spirit of the present invention, those of ordinary skill in the art to which the present invention pertains Of course, various modifications and variations are possible within the technical spirit of the present invention and the equivalent scope of the claims to be described below.

Claims (7)

  1. 발전부지에 파일링으로 세워지는 지주와; 상기 지주의 상단에서 탑프레임과 지지프레임의 구조물로 이루어지는 프레임과; 상기 프레임에서 간격을 두고 복수로 설치되는 태양광 패널을 갖는 태양광발전장치를 포함하되, Posts erected as filings on the power generation site; a frame made of a structure of a top frame and a support frame at the upper end of the post; Including a photovoltaic device having a plurality of photovoltaic panels installed at intervals in the frame,
    상기 태양광 발전장치는, The solar power generation device,
    수직으로 세워지는 고정포스트와;a fixed post erected vertically;
    상기 고정포스트 상단에 설치되어 태양광 방향각 조정이 가능하도록 설치되는 회전포스 트와;a rotating post installed at the top of the fixed post to enable adjustment of the sunlight direction angle;
    상기 회전포스트의 상단에 설치되어 태양광 고도각 조정이 가능하도록 설치되는 각도조 정브라켓과;an angle adjustment bracket installed on the upper end of the rotary post to enable solar altitude angle adjustment;
    상기 각도조정브라켓의 상측단에 결합되어 태양광 추적 좌우 회전을 안내하도록 설치되는 가이드포스트와;a guide post coupled to the upper end of the angle adjustment bracket and installed to guide the left and right rotation of the sunlight tracking;
    상기 가이드포스트의 상/하측단에 연결 설치되며, 태양광 패널을 받치도록 고정하면서 좌우 회전이 가능하도록 설치되는 패널고정어레이와;a panel fixing array connected to the upper/lower ends of the guide post and installed so as to be able to rotate left and right while fixing to support the solar panel;
    상기 가이드포스트의 일단에 핀 고정 설치되어 태양광 추적 좌우 회전을 작동하도록 설치 되는 구동감속모터와;a driving deceleration motor which is fixedly installed with a pin at one end of the guide post and installed to operate the left and right rotation of the sunlight tracking;
    상기 가이드포스트와 패널고정어레이를 연결 고정하면서 축결합되며, 상기 구동감속모 터의 회전력을 전달받도록 설치되는 가이드회전브라켓과;a guide rotation bracket coupled to the shaft while connecting and fixing the guide post and the panel fixing array, and installed to receive the rotational force of the driving reduction motor;
    상기 가이드포스트에 일단이 결합되며, 타단으로 상기 구동감속모터가 핀 고정으로 설치 되는 모터고정브라켓과;a motor fixing bracket having one end coupled to the guide post and the other end of which the driving deceleration motor is fixedly installed with a pin;
    상기 패널고정어레이에 마감 고정되어 태양광을 집광하도록 설치되는 태양광 패널을 포함하여 이루어지는 것을 특징으로 하는 다목적 스마트 태양광발전장치.Multi-purpose smart photovoltaic power generation device, characterized in that it comprises a photovoltaic panel that is fixed to the end of the panel fixing array is installed to collect sunlight.
  2. 제1 항에 있어서, The method of claim 1,
    상기 고정포스트는The fixed post is
    수직 길이방향의 몸체와;a body in the vertical longitudinal direction;
    상기 몸체의 상측단에 돌출 형성되어 일면에 상기 회전포스트를 연결 고정하는 체결볼트가 가이드되는 가이드 장홈을 갖는 연결플랜지가 형성되며, A connecting flange having a guide long groove protruding from the upper end of the body to guide a fastening bolt for connecting and fixing the rotary post on one surface is formed,
    상기 몸체의 하측단에 돌출 형성되어 상기 지지프레임에 고정 설치되는 고정플랜지를 포함하여 구성됨을 특징으로 하는 Characterized in that it is formed to protrude from the lower end of the body and is configured to include a fixing flange fixedly installed on the support frame.
    다목적 스마트 태양광발전장치.Multi-purpose smart solar power generation device.
  3. 제1 항 또는 제2 항에 있어서, 3. The method according to claim 1 or 2,
    상기 회전포스트는 The rotating post
    수직 길이방향의 몸체와;a body in the vertical longitudinal direction;
    상기 몸체의 하측단에 돌출 형성되어 일면에 상기 고정포스트의 연결플랜지에 형성된 가이드 장홈을 따라 회전이 가능하면서 체결볼트로 고정되는 제1 회전플랜지와;a first rotating flange protruding from the lower end of the body and rotatable along a guide long groove formed on the connecting flange of the fixed post on one surface and fixed with a fastening bolt;
    상기 몸체의 상측단에 돌출 형성되어 상기 각도조정브라켓이 회전 가능하도록 핀 결합되는 제2 회전플랜지를 포함하고, 상기 제2 회전플랜지에 핀 결합된 상기 각도조정브라켓의 회전으로 태양광 고도각 조정이 가능하도록 이루어짐을 특징으로 하는 It includes a second rotation flange that is formed protruding from the upper end of the body and is pin-coupled to the angle adjustment bracket so that the angle adjustment bracket is rotatable, and the solar altitude angle adjustment is performed by rotation of the angle adjustment bracket pin-coupled to the second rotation flange. characterized in that it is made possible
    다목적 스마트 태양광발전장치.Multi-purpose smart solar power generation device.
  4. 제1 항에 있어서, The method of claim 1,
    상기 각도조정브라켓은 The angle adjustment bracket is
    일측이 양측으로 분리 연장되어 상기 회전포스트에 핀 결합되며 각도 조절 가능하도록 설치되는 연장플랜지와;an extension flange whose one side is separated and extended to both sides, is pin-coupled to the rotary post, and is installed so as to be able to adjust the angle;
    상기 연장플랜지의 타측으로 구부러져 연결 형성되어 상기 가이드포스트를 연결 고정하 도록 형성되는 지지플랜지를 포함하여 구성되는 것을 특징으로 하는 It is formed by bending to the other side of the extension flange, characterized in that it comprises a support flange formed to connect and fix the guide post.
    다목적 스마트 태양광발전장치.Multi-purpose smart solar power generation device.
  5. 제1 항에 있어서,The method of claim 1,
    상기 가이드포스트는 원통형의 몸체로서, The guide post is a cylindrical body,
    상기 가이드포스트는 그 몸체의 상/하측단에서 연결 설치되어 상기 패널고정어레이의 회전 가이드 역할을 가능하도록 설치되는 가이드부싱이 더 형성됨을 특징으로 하는 The guide post is connected to the upper / lower end of the body, characterized in that the guide bushing is further formed to be installed so as to serve as a rotation guide of the panel fixed array.
    다목적 스마트 태양광발전장치.Multi-purpose smart solar power generation device.
  6. 제1 항에 있어서, The method of claim 1,
    상기 패널고정어레이는 일정 길이를 갖는 좌우 한쌍의 길이바와;The panel fixing array includes a pair of left and right length bars having a predetermined length;
    상기 길이바를 상호 연결하여 고정하도록 형성되며, 상기 가이드포스트의 양측단이 수용 고정되는 좌우 한쌍의 간격바를 포함하여 구성되고, It is formed to connect the length bars to each other and fix them, and includes a pair of left and right spacer bars to which both ends of the guide post are accommodated and fixed,
    상기 간격바의 중앙부에는 상기 가이드회전브라켓이 체결볼트로 볼팅 고정됨을 특징으로 하는 The guide rotation bracket is bolted to the central part of the spacing bar, characterized in that it is fixed by bolting with a fastening bolt.
    다목적 스마트 태양광발전장치.Multi-purpose smart solar power generation device.
  7. 제1 항에 있어서, The method of claim 1,
    상기 가이드회전브라켓은 The guide rotation bracket is
    상기 패널고정어레이와 체결볼트로 고정되는 볼트공을 갖는 플랜지와;a flange having a bolt hole fixed to the panel fixing array and a fastening bolt;
    상기 플랜지의 일측으로 돌출되어 상기 구동감속모터와 핀 결합되는 제1 연결부와;a first connection part protruding from one side of the flange and pin-coupled to the driving reduction motor;
    상기 플랜지의 타측으로 돌출되어 상기 가이드포스트의 일측단부와 축설되는 제2 연결부 와;a second connection part protruding to the other side of the flange and axially connected to one end of the guide post;
    상기 제1 연결부와 상기 구동감속모터를 핀 연결하는 연결커플링을 더 포함하여 구성되며, and a connection coupling connecting the first connection part and the driving reduction motor with a pin,
    상기 가이드회전브라켓은 상기 가이드포스트의 양측단부에 대칭으로 축설되는 좌우 한쌍으로 이루어짐을 특징으로 하는 The guide rotation bracket is characterized in that it consists of a pair of left and right axially installed symmetrically on both ends of the guide post.
    다목적 스마트 태양광발전장치.Multi-purpose smart solar power generation device.
PCT/KR2022/000261 2021-02-08 2022-01-07 Multipurpose smart solar power generation system WO2022169119A1 (en)

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Families Citing this family (4)

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Publication number Priority date Publication date Assignee Title
KR102265876B1 (en) * 2021-02-08 2021-06-16 주식회사 연호 A multipurpose of smart solar power device
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CN114520622B (en) * 2021-12-28 2023-08-04 上海鹍鹏实业有限公司 Tracking type photovoltaic power generation equipment with high conversion rate and working method thereof
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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100711550B1 (en) * 2006-10-16 2007-04-27 (주)탑인프라디벨로퍼건축사사무소 Manual method that increase generation efficiency of solar panel by seasonable sunshine
JP2013079488A (en) * 2011-09-30 2013-05-02 Big-Intec Co Ltd Unit for installing photovoltaic power generation panel on water
KR20130078888A (en) * 2012-01-02 2013-07-10 주식회사 라온테크 Photovoltaic power generation apparatus
KR20190007949A (en) * 2017-07-14 2019-01-23 이선동 Solar cell panel tilting device of solar tracking type power generation system
KR102172622B1 (en) * 2020-03-12 2020-11-03 (주)연호 A farming smart solar power system
KR102265876B1 (en) * 2021-02-08 2021-06-16 주식회사 연호 A multipurpose of smart solar power device

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101868449B1 (en) * 2015-01-09 2018-07-23 민승기 Renewable power generation equipment for coastal area
KR101958965B1 (en) * 2017-06-05 2019-03-15 조진설 Multi power generating apparatus
KR20200025649A (en) * 2018-08-31 2020-03-10 한기식 Solar tracking apparatus
KR102195705B1 (en) 2020-03-12 2020-12-28 (주)연호 A solar panels actuater of solar power system

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100711550B1 (en) * 2006-10-16 2007-04-27 (주)탑인프라디벨로퍼건축사사무소 Manual method that increase generation efficiency of solar panel by seasonable sunshine
JP2013079488A (en) * 2011-09-30 2013-05-02 Big-Intec Co Ltd Unit for installing photovoltaic power generation panel on water
KR20130078888A (en) * 2012-01-02 2013-07-10 주식회사 라온테크 Photovoltaic power generation apparatus
KR20190007949A (en) * 2017-07-14 2019-01-23 이선동 Solar cell panel tilting device of solar tracking type power generation system
KR102172622B1 (en) * 2020-03-12 2020-11-03 (주)연호 A farming smart solar power system
KR102265876B1 (en) * 2021-02-08 2021-06-16 주식회사 연호 A multipurpose of smart solar power device

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