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    • 101. 发明公开
    • 태양광 발전장치
    • SOLARCELL装置
    • KR1020150137797A
    • 2015-12-09
    • KR1020140066304
    • 2014-05-30
    • 주식회사 더블유쏠라
    • 김승섭
    • H02S10/00
    • H02S50/00G01W1/02H02S10/00H02S40/32Y02E10/58
    • 본발명의특징에따르면, 태양의위치를추적하여태양과구름을촬영하는태양추적부; 촬영된영상을처리하여상기태양과구름을파악하는영상처리부; 태양광모듈이장착된태양광발전구조물; 상기영상처리부의출력값을통해태양과구름의상호관계를검출하는태양상태검출부; 상기태양광모듈에서발전된직류전원을교류전원으로전환하는인버터본체; 상기인버터본체에탑재되되상기태양광모듈에서발전된직류전원을교류전원으로변환시키는과정에서변환효율을높이기위한복수개의 MPPT(Maximum Power Point Tracking) 알고리즘; 및상기태양상태검출부에서산출된태양구름의겹침정도에따라일정주기로, 적용해야할 MPPT 알고리즘을결정하는인버터제어부;를포함한다. 이상살펴본바와같은본 발명에따르면, 태양광모듈에서발전된직류전원을교류전원으로변환시키는과정에서변환효율을높이기위한복수개의 MPPT(Maximum Power Point Tracking) 알고리즘중에서적합한어느하나의 MPPT알고리즘을적용하고, 그에따라태양광발전량을증대및 최대로유지시킬뿐만아니라, 저장장치에전원을저장하며계통시킬수 있는태양광발전장치를제공할수 있다.
    • 太阳能发电装置技术领域本发明涉及太阳能发电装置。 太阳能发电装置包括:太阳跟踪单元,跟踪太阳的位置以记录太阳和云的图像; 处理记录图像以识别太阳和云的图像处理单元; 安装有太阳能模块的太阳能发电结构; 太阳状态检测单元,其通过使用图像处理单元的输出值来检测太阳与云之间的相关性; 将由太阳能模块产生的直流电力转换为交流电力的逆变器体; 多个最大功率点跟踪(MPPT)算法,其安装在逆变器体上,并提高将由太阳能模块产生的直流电力转换为交流电力的过程的转换效率; 以及逆变器控制单元,其根据由太阳状态检测单元计算出的与太阳重叠的云量,以预定周期来确定MPPT算法中的一个。 本发明在MPPT算法中选择并应用一种合适的MPPT算法,以提高将由太阳能模块产生的直流电力转换为交流电力的过程的转换效率。 因此,本发明可以将光伏发电增加到最大容量,将功率存储在存储装置中,并从存储装置供电。
    • 104. 发明授权
    • 태양광 발전시스템 확장식 스트링 채널 스위칭 장치
    • 用于太阳能发电系统的STRING通道的可扩展切换装置
    • KR101535513B1
    • 2015-07-09
    • KR20150000656
    • 2015-01-05
    • ABM GREENTECH CO LTD
    • KIM BYEONG CHEOLJOUNG CHE BONGJANG SEONG TAEKKIM MIN SEOKPARK YEON MIN
    • H02S10/00
    • H02S10/00
    • 본발명은 n 채널(n은자연수)로형성되는다채널태양전지스트링(100)으로부터생산된전력이입력되는입력커넥터부(10)와; 상기입력커넥터부(10)에입력된전력이퓨즈(20)와역전류방지다이오드부(30)를지나입력되면전력량을측정하는전력감지부(40)와; 상기전력감지부(40)에서감지한전력량정보를입력받아스위칭제어신호를출력시키는스위치제어부(80)와; 상기전력감지부(40) 후단에형성되어각 채널이 n 채널의인버터(200)에각각연결되게하는출력커넥터부(60)와; 상기전력감지부(40)와출력커넥터부(60) 사이에형성되며상기스위치제어부(80)의제어신호에따라각 채널전력을당해채널출력커넥터부(60)로연결시키거나이웃채널출력커넥터부(60)로연결시키는스위치부(50)와; 상기스위치부(50)에선로를연결시키는제1 확장선로(91)와스위치부(50)에서연결제어되는제2 확장선로(92)가연결된확장커넥터부(90)로; 구성되는장치로서, 태양전지스트링채널이 n × m(m은자연수)개필요할때, 상기장치를 m개배열시키고상기확장커넥터부(90)를연결선로(300)로순차연결시켜태양전지스트링채널을확장시키는것을특징으로하는태양광발전시스템확장식스트링채널스위칭장치에관한것이다.본발명에의하여, 선등록특허 10-1445711를개선하여, 태양전지의설치면적에따라태양광발전시스템장치규모를연동시킬수 있으며, 기설치이후에서설치사정변경에따라장치의증설또는축소가가능한태양광발전시스템확장식스트링채널스위칭장치가제공되는이점이있다.
    • 本发明涉及一种用于太阳能发电系统的可扩展串通道切换装置。 本发明提供了一种用于太阳能发电系统的可扩展串通道切换装置,其包括输入连接器部分(10),从由n个通道形成的多通道太阳能电池串(100)产生的功率被输入到该输入连接器部分中,功率感测单元 ),输出开关控制信号的开关控制单元(80),输出连接器部(60),开关部(50),其形成在功率感测单元(40)和输出端 连接器部分(60)和连接到第一延伸线(91)和第二延伸线(92)的可延伸连接器部分(90)。 本发明根据太阳能电池的安装面积来改变太阳能发电系统的规模。
    • 105. 发明授权
    • 어테뉴에이팅 하이브리드 태양광-파력에너지변환장치
    • 混合光伏(PV) - 能源转换器
    • KR101533090B1
    • 2015-07-02
    • KR1020140064925
    • 2014-05-29
    • 한국원자력연구원
    • 차경호김정택
    • H02S10/00
    • E03B9/08E03B9/06H02S10/00Y02E10/28Y02E10/38
    • 본발명은내부에제1유체가일부수용되어서로연결된다수의세그먼트(110)를포함하며, 상기세그먼트(110)는파동에의해상측이나하측으로이동되는단진운동을하며내부에수용된제1유체가좌측이나우측으로이동되는파동호스(100); 상기다수의세그먼트(110)의내부에각각 2개이상수용되며내부에상기제1유체보다밀도가낮은제2유체가수용되며, 상기세그먼트(110)의내부에유입된제1유체의압력에의해수축상태또는팽창상태가되는다수의풍선(200); 상기다수의풍선(200) 중수축상태인것에서이송된제2유체가채워지는유출호스(300); 상기유출호스(300)에서이송된제2유체에의해터빈이회전되어전력이발생되는발전모듈(400); 상기발전모듈(400)에서터빈을회전시켜감압된제2유체가채워져서상기다수의풍선(200) 중수축상태인것으로이송되어팽창시키는유입호스(500); 및상기파동호스(100), 유출호스(300), 및유입호스(500)의상단부에각각설치되는다수의태양광모듈(600);을포함하는것을특징으로하는어테뉴에이팅하이브리드태양광-파력에너지변환장치(1000)에관한것이다.
    • 本发明涉及一种衰减的混合光伏波能转换器(1000),包括:波形软管(100),其包括多个段(110),每个段具有部分地容纳在其中并彼此连接的第一流体,其中 片段(110)提供由波浪向上和向下移动的简单谐波运动,并且使从其一侧容纳的第一流体移动到另一侧; 多个气囊(200)分别容纳有至少两个气囊(110),其容纳具有比第一流体密度低的密度的第二流体,并且通过第一流体的压力收缩或膨胀 引入到段(110)中的流体; 流出软管(300),其填充有从气囊(200)中收缩的第二流体转移的第二流体。 发电模块(400),其通过从所述流出软管(300)传送的所述第二流体旋转涡轮而产生动力; 流入软管(500),其在所述发电模块(400)中旋转所述涡轮机之后填充有减压的第二流体,并且将所述第二流体转移到所述气囊(200)的收缩气囊以使其膨胀; 和多个光伏组件(600),分别安装在波形软管(100)的上部,流出软管(300)和流入软管(500)中。
    • 106. 发明授权
    • 태양광 발전 배터리 시스템 및 발전 전력량 조절 방법
    • 照相发电电池系统和调节发电功率的方法
    • KR101473902B1
    • 2014-12-18
    • KR1020130153106
    • 2013-12-10
    • 한국항공우주연구원
    • 박희성양정환박성우윤석택장진백구자춘
    • H02S40/38G05F1/67F15C1/10H02J3/38H02J9/06
    • H02S10/00G05F1/67H02S40/32H02S40/38Y02E10/58
    • 본 발명은 태양전력 조절기로부터 출력되는 전력을 구성하는 전류 및 전압을 비교한 결과를 이용하여 태양전지 어레이의 출력노드의 전압을 조절함으로써, 태양전력 어레이로부터 생성되는 전력의 양을 조절할 수 있는 태양광발전 배터리 시스템 및 상기 태양광발전 배터리 시스템을 이용하여 발전 전력량을 조절할 수 있는 발전 전력량 조절 방법을 제공하는 것에 있다. 상기 기술적 과제를 달성하기 위한 본 발명에 따른 태양광 발전 배터리 시스템은, 복수의 태양전지가 배열되어 태양광을 전기에너지로 변환하는 태양전지 어레이, 상기 태양전지 어레이로부터 출력되는 에너지를 배터리로 전송하는 태양전력 조절기를 구비하며, 상기 발전 전력량 조절 방법은, 제1 전압-전류 비교단계, 제2 전압-전류 비교단계, 동작영역 조절단계를 포함한다.
    • 本发明提供了一种光电发电电池系统,其能够通过使用从太阳能输出的电流和电压构成功率的比较结果来调节太阳能电池阵列的输出节点上的电压来调节太阳能电力阵列产生的功率的量 功率调节器和调节发电量的方法,能够使用光伏发电电池系统来调节发电量。 为了实现上述技术目的,本发明的光电发电电池系统包括:具有多个太阳能电池的太阳能电池阵列,其将太阳能光转换为电能; 以及太阳能调节器,用于将从太阳能电池阵列输出的能量传输到电池。 调节发电功率量的方法包括第一电压 - 电流比较步骤,第二电压 - 电流比较步骤和运行区域调节步骤。
    • 107. 发明公开
    • 태양광 발전 시스템의 발전분석 장치
    • 光伏发电系统分析装置及检测方法
    • KR1020140116245A
    • 2014-10-02
    • KR1020130026002
    • 2013-03-12
    • 주식회사 케이디파워주식회사 케이디티박기주
    • 박기주권영복최정내
    • H02S50/00
    • H02S50/00H02S10/00Y02E10/50
    • The present invention relates to an apparatus and a method for analyzing power generation of a photovoltaic power generation system, which enable a user to easily maintain the photovoltaic power generation system by analyzing the power generation time and rate of photovoltaic power generation during a time period (day, month, or year) designated by the user. The apparatus includes: a plurality of photovoltaic power generation parts including solar cell modules to convert solar energy into electrical energy and output the electrical energy; a photovoltaic power generation measuring part, which is arranged in each of the photovoltaic power generation parts, to measure the atmospheric temperature, the temperature of the solar cell modules, the quantity of horizontal solar radiation, the quantity of incident solar radiation, and the power generation time and amount; a photovoltaic power generation analysis part to analyze the power generation time and rate of the photovoltaic power generation part for each site or overall sites where the photovoltaic power generation parts are arranged on the basis of various pieces of information measured in the photovoltaic power generation measuring part; and a photovoltaic power generation monitoring part to monitor power generation status, surveillance, diagnosis, analysis, and reports in real-time by receiving various information diagnosed by the photovoltaic power generation analysis part over a network.
    • 本发明涉及一种用于分析光伏发电系统的发电的装置和方法,其使得用户能够通过分析在一段时间内的光电发电的发电时间和速率来容易地维持光伏发电系统 日,月,年)。 该装置包括:多个光伏发电部件,包括将太阳能转换为电能并输出电能的太阳能电池模块; 布置在每个光伏发电部分中的光伏发电测量部分,以测量大气温度,太阳能电池模块的温度,水平太阳辐射的量,入射的太阳辐射量和功率 发电时间和数量; 光伏发电分析部分,根据在光伏发电测量部分中测量的各种信息来分析光伏发电部件的各个部位或光伏发电部件的整体部位的光电发电部的发电时间和发电速率 ; 光伏发电监测部,通过接收由光伏发电分析部通过网络诊断出的各种信息,实时监视发电状态,监视,诊断,分析和报告。
    • 108. 发明公开
    • 지지대에 태양전지를 부착한 해상풍력 발전시스템(기어형)
    • 太阳能电池安装风力涡轮机身的海洋风力发电系统(齿轮型)。
    • KR1020140012329A
    • 2014-02-03
    • KR1020120078880
    • 2012-07-19
    • (주)육천건설구본신
    • 이기본구본신
    • F03D9/00F03D11/00F03D11/04
    • Y02E10/725Y02P70/523F03D9/007H02S10/00Y02B10/70Y02E10/50Y02E10/727
    • The present invention relates to a new offshore wind power generation system for producing electricity by installing a wind power generator on the sea, and more specifically, to a hybrid type offshore wind power generation system for combining photovoltaic power generation and wind power generation by attaching solar cells to a support as a steel structure for supporting the wind power generator. High energy efficiency can be obtained by installing the photovoltaic power generator to be combined with the wind power generator because energy generation efficiency has a limit due to generating energy only by the wind power generation. According to the present invention, the offshore wind power generation system (geared type) having the solar cells attached to the support thereof comprises a foundation structure, a wind power generator support, a blade part, a photovoltaic installation part, a geared type power generator part, and an inverter part. According to the present invention, the offshore wind power generation system (geared type) having the solar cells attached to the support thereof is the offshore wind power generation system, wherein the offshore wind power generation system has the photovoltaic power generator on the surface of the support as the steel structure for supporting the wind power generator so that the maximum energy efficiency can be obtained. The solar cells are evenly attached to the surface of the support as the steel structure for supporting the offshore wind power generation system so that a large amount of the energy is additionally obtained only by attaching the solar cells to the support without securing an extra space. In addition, a large amount of the solar cells is evenly attached to the surface of the support so that space utilization can be efficient.
    • 本发明涉及一种用于通过在海上安装风力发电机来发电的新的海上风力发电系统,更具体地说,涉及一种通过安装太阳能来组合光伏发电和风力发电的混合型海上风力发电系统 细胞作为支撑风力发电机的钢结构的支撑体。 通过安装与风力发电机组合的光伏发电机可以获得高的能量效率,因为由于仅由风力发电产生能量,因此发电效率具有极限。 根据本发明,具有安装在其支撑体上的太阳能电池的海上风力发电系统(齿轮型)包括基础结构,风力发电机支撑件,叶片部件,光伏安装部件,齿轮型发电机 部分和逆变器部分。 根据本发明,具有安装在其支撑体上的太阳能电池的海上风力发电系统(齿轮式)是海上风力发电系统,其中海上风力发电系统在其表面上具有光伏发电机 支撑作为支撑风力发电机的钢结构,从而可以获得最大的能量效率。 太阳能电池作为用于支撑海上风力发电系统的钢结构均匀地附着到支撑体的表面,使得仅通过将太阳能电池附接到支撑件而不确保额外的空间来额外获得大量的能量。 此外,大量的太阳能电池均匀地附着到支撑体的表面上,从而空间利用效率高。
    • 109. 发明公开
    • 지지대에 태양전지를 부착한 해상풍력 발전시스템(기어리스형)
    • 太阳能电池安装风力涡轮机体的海洋风力发电系统(无齿轮型)。
    • KR1020140012328A
    • 2014-02-03
    • KR1020120078879
    • 2012-07-19
    • (주)육천건설구본신
    • 이기본구본신
    • F03D9/00F03D11/00F03D11/04
    • Y02E10/725Y02P70/523F03D9/007F05B2240/95H02S10/00Y02B10/70Y02E10/50Y02E10/727
    • The present invention relates to a new offshore wind power generation system for producing electricity by installing a wind power generator on the sea, and more specifically, to a hybrid type offshore wind power generation system for combining photovoltaic power generation and wind power generation by attaching solar cells to a support as a steel structure for supporting the wind power generator. High energy efficiency can be obtained by installing the photovoltaic power generator to be combined with the wind power generator because energy generation efficiency has a limit due to generating energy only by the wind power generation. According to the present invention, the offshore wind power generation system (gearless type) having the solar cells attached to the support thereof comprises a foundation structure, a wind power generator support, a blade part, a photovoltaic installation part, a gearless type power generator part, and an inverter part. According to the present invention, the offshore wind power generation system (gearless type) having the solar cells attached to the support thereof is the offshore wind power generation system, wherein the offshore wind power generation system has the photovoltaic power generator on the surface of the support as the steel structure for supporting the wind power generator so that the maximum energy efficiency can be obtained. The solar cells are evenly attached to the surface of the support as the steel structure for supporting the offshore wind power generation system so that a large amount of the energy is additionally obtained only by attaching the solar cells to the support without securing an extra space. In addition, a large amount of the solar cells is evenly attached to the surface of the support so that space utilization can be efficient.
    • 本发明涉及一种用于通过在海上安装风力发电机来发电的新的海上风力发电系统,更具体地说,涉及一种通过安装太阳能来组合光伏发电和风力发电的混合型海上风力发电系统 细胞作为支撑风力发电机的钢结构的支撑体。 通过安装与风力发电机组合的光伏发电机可以获得高的能量效率,因为由于仅由风力发电产生能量,因此发电效率具有极限。 根据本发明,具有安装在其支撑体上的太阳能电池的海上风力发电系统(无齿轮型)包括基础结构,风力发电机支撑件,叶片部件,光伏安装部件,无齿轮型发电机 部分和逆变器部分。 根据本发明,具有安装在其支撑体上的太阳能电池的海上风力发电系统(无齿轮型)是海上风力发电系统,其中海上风力发电系统在其表面上具有光伏发电机 支撑作为支撑风力发电机的钢结构,从而可以获得最大的能量效率。 太阳能电池作为用于支撑海上风力发电系统的钢结构均匀地附着到支撑体的表面,使得仅通过将太阳能电池附接到支撑件而不确保额外的空间来额外获得大量的能量。 此外,大量的太阳能电池均匀地附着到支撑体的表面上,从而空间利用效率高。
    • 110. 发明公开
    • 하이브리드 방식의 해상풍력 발전시스템(기어형)
    • 混合型风力发电系统(GEARED TYPE)。
    • KR1020140012326A
    • 2014-02-03
    • KR1020120078877
    • 2012-07-19
    • (주)육천건설구본신
    • 이기본구본신
    • F03D9/00F03D11/00F03D11/04
    • Y02E10/725Y02P70/523F03D9/007H02S10/00Y02B10/70Y02E10/50Y02E10/727
    • The present invention relates to a hybrid type offshore wind power system for producing electricity by installing a wind power generator on the sea, and more specifically, to an offshore wind power system in which a geared type wind power generator and a photovoltaic power generator are combined. High energy efficiency can be obtained by installing the photovoltaic power generator to be combined with the wind power generator because energy generation efficiency has a limit due to generating energy only by wind power generation. The hybrid type offshore wind power system according to the present invention comprises a foundation structure, a wind power generator support, a blade part, a photovoltaic installation part, a geared type power generator part, and an inverter part. The hybrid type offshore wind power system according to the present invention is the offshore wind power system, wherein the offshore wind power system has the wind power generator and the photovoltaic power generator simultaneously installed in one place thereof so that the maximum energy efficiency can be obtained.
    • 本发明涉及一种用于通过在海上安装风力发电机来发电的混合型海上风力发电系统,更具体地说,涉及一种将齿轮式风力发电机和光伏发电机组合在一起的海上风力发电系统 。 通过安装与风力发电机组合的光伏发电机,可以获得高能效,因为由于仅通过风力发电产生能量,因此发电效率有限。 根据本发明的混合型海上风力发电系统包括基础结构,风力发电机支撑件,叶片部件,光伏安装部件,齿轮型发电机部件和逆变器部件。 根据本发明的混合型海上风力发电系统是海上风力发电系统,其中海上风力发电系统具有风力发电机,并且光伏发电机同时安装在其一处,从而可以获得最大的能量效率 。