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    • 41. 发明公开
    • ENERGIEMANAGEMENTSYSTEM FÜR EIN ENERGIEERZEUGUNGSSYSTEM
    • 发电系统的能源管理系统
    • EP3314721A1
    • 2018-05-02
    • EP16709702.1
    • 2016-03-11
    • Karlsruher Institut für Technologie
    • WOLLERSHEIM, OlafGUTSCH, AndreasRENTZSCH, MichaelTIMKE, Thomas
    • H02J7/35
    • H02J7/35Y02E10/566Y02P90/50
    • The invention relates to a DC-coupled energy management system (10) for an energy generation plant (100), in particular a photovoltaic system, comprising a control unit (30), a sensor unit (32) for measuring an electrical balance between consumer units (80) of the energy generation plant (100) and a mains power connection (20) of an energy supply network (200), and a DC/DC converter (22), which is connected by a first connector (24) to an electrical connecting line (16) of the energy generation plant (100) between an energy converter (12) and an inverter (14) coupled to the supply network, and is also connected by a second connector (26) to at least one energy storage unit (40). The control unit (30) is designed for communication connection to the sensor unit (32), to the energy storage unit (40), and to the DC/DC converter (22). The energy converter (12) is provided in order to supply a variable DC voltage power in accordance with operating conditions and/or environmental conditions. Furthermore, a withdrawal or a delivery of electrical energy by the DC/DC converter (22) can be controlled by means of the control unit (30), wherein the control unit (30) controls the DC/DC converter (22) according to the electrical balance specified by the sensor unit (32). The invention further relates to an energy generation plant (100) comprising such a DC-coupled energy management system (10), to a DC/DC converter for such a DC-coupled energy management system (10), and to a method for operating such an energy generation plant (100) having such a DC-coupled energy management system (10).
    • 48. 发明公开
    • HYBIRD STORAGE SYSTEM
    • HYBRIDSPEICHERSYSTEM
    • EP3114750A1
    • 2017-01-11
    • EP14884493.9
    • 2014-03-03
    • Robert Bosch GmbH
    • SENGEBUSCH, FalcoKUFNER, AnnikaCHOUTHE, SumedhaWANG, XingchiLI, YanlinCHER, Jingting
    • H02J7/04H02S40/38
    • H02J7/35H02J7/0003H02J7/0045H02J7/007H02J7/34H02J2007/0067H02S40/32H02S40/38Y02P90/50
    • The application discloses a hybrid battery-charging device with input terminals for connecting a current source, first battery connections for connecting a lead-acid battery and second battery connections for connecting a high-cycle chemical battery. A two-way DC/DC converter with first and second sets of terminals is connected with the second battery connections, and with the first battery connections. A charge and discharge control system of the charging device comprises a first sensing input for sensing a state of charge of the lead-acid-battery and for sensing an internal resistance of the lead-acid battery, a second sensing input for sensing a state of charge of the high-cycle chemical battery, a control output for controlling the DC/DC converter and a controller unit. The charge and discharge control system is operative to detect when an internal resistance of the lead-acid battery exceeds a pre-determined resistance threshold, and to control the DC/DC converter, in response to the internal resistance of the lead-acid battery exceeding the pre-determined resistance threshold, such that, in a discharge mode, the lead- acid battery and the high-cycle chemical battery are discharged in parallel during a parallel discharge phase.
    • 具有用于连接电流源的输入端子,用于连接铅酸蓄电池的第一电池连接和用于连接高周期化学电池的第二电池连接的混合电池充电装置。 具有第一和第二组端子的双向DC / DC转换器与第二电池连接以及与第一电池连接相连接。 充电装置的充放电控制系统可操作以检测铅酸蓄电池的内阻何时超过预定的电阻阈值,并且响应于铅酸的内阻来控制DC / DC转换器 电池超过预定电阻阈值,使得在放电模式中,铅酸电池和高周期化学电池在平行放电阶段期间并联放电。
    • 49. 发明公开
    • SOLAR THERMAL COLLECTING SYSTEM
    • SONNENWÄRMESAMMELSYSTEM
    • EP2387694A4
    • 2016-12-28
    • EP10731111
    • 2010-01-18
    • TIGI LTD
    • KLIER SHIMONADEL MICHAEL
    • F24J2/40F24J2/34F24J2/46F24J2/50F24J2/51
    • F24J2/34F24J2/4636F24J2/505F24J2/507F24J2/515Y02B10/20Y02E10/40Y02P90/50
    • It is provided a solar energy module for converting solar radiation to thermal energy. The module includes a thermally insulating element transmissive to solar radiation and having low transmissivity to thermal infra-red radiation, an absorbing element, a sealed enclosure, and a variable portion in the envelope of the sealed enclosure. This portion is adapted for varying the volume available to gas enclosed in the enclosure in accordance with changing temperature of the enclosed gas. Also, it is provided a solar energy module which includes a thermally insulating element, an absorbing surface and liquid pipes for absorbing the solar radiation, and an air duct thermally coupled thereof. The heated liquid and the heated air are usable for a variety of thermal applications. A heat storage may be thermally coupled to the absorbing surface and to the liquid pipes. The air duct has several air valves, and is associated with a controller for regulating air flow through the air duct. The controller may regulate heat flow in accordance with an optimization program, receiving inputs from several sources, like a sensor monitoring a building, a sensor monitoring the solar energy module, and an environment sensor.
    • 它提供了一个用于将太阳辐射转换成热能的太阳能模块。 该模块包括对太阳辐射透射并且对热红外辐射具有低透射率的隔热元件,吸收元件,密封外壳和密封外壳的封套中的可变部分。 该部分适于根据封闭气体的变化温度来改变可用于封闭在外壳中的气体的体积。 而且,提供了一种太阳能模块,其包括隔热元件,吸收表面和用于吸收太阳辐射的液体管道,以及与其热耦合的空气管道。 加热的液体和加热的空气可用于各种热应用。 储热器可以热耦合到吸收表面和液体管道。 空气管道具有多个空气阀,并且与用于调节通过风道的空气流量的控制器相关联。 控制器可以根据优化程序来调节热流,接收来自多个源的输入,例如监测建筑物的传感器,监测太阳能模块的传感器和环境传感器。