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    • 2. 发明公开
    • SMART GRID SYSTEM, FOR BLACK BOX, USING PHOTOVOLTAIC POWER GENERATION
    • 智慧型STROMNETZSYSTEMFÜR黑色BLOX UNTER VERWENDUNG VON FOTOVOLTAISCHER STRMERZEUGUNG
    • EP3151421A1
    • 2017-04-05
    • EP15803345.6
    • 2015-05-27
    • Choi, Kyu Taek
    • Choi, Kyu Taek
    • H02S40/38B60R16/02H02J9/06
    • B60R16/02B60L1/00B64D45/00B64D2045/0065G07C5/00G07C5/085H02J9/06H02S10/20H02S40/38
    • The present invention relates to a grid system for supplying power to a black box for a vehicle by means of photovoltaic power generation, the grid system comprising: a solar cell unit for generating power by using photovoltaic power generation; a main system for supplying a black box with the power generated from the solar cell unit; and an internal battery for storing the power which is from the main system and generated by a solar cell unit. The effectiveness is provided in which, if photovoltaic power generation is not performed due to a change in the amount of sunlight or the vehicle's parking state, discharging of a battery inside a vehicle is prevented by enabling the supply of power first from an internal battery that stores the power from photovoltaic power generation.
    • 本发明涉及一种用于通过光伏发电向车辆的黑盒供电的电网系统,所述电网系统包括:太阳能电池单元,用于通过使用光伏发电发电; 用于向黑匣子提供从太阳能电池单元产生的电力的主系统; 以及用于存储来自主系统并由太阳能电池单元产生的电力的内部电池。 提供的效果是,如果由于太阳光量的变化或车辆的停车状态而不能进行太阳能发电,则可以通过使得能够首先从内部电池供电来防止车辆内的电池的放电, 存储来自光伏发电的电力。
    • 4. 发明公开
    • METHODS AND SYSTEMS FOR PROVIDING PHOTOVOLTAIC PLANT POWER FEED-IN
    • 用于提供光伏设备功率馈入的方法和系统
    • EP3285351A1
    • 2018-02-21
    • EP17186162.8
    • 2017-08-14
    • Robert Bosch GmbH
    • Chen, FangAhmed, JasimRoy, Binayak
    • H02J3/38H02J3/28H02J3/32H02S10/20
    • G05B19/048G05B2219/2639H02J3/28H02J3/32H02J3/383H02J3/46H02J2003/007H02S10/20Y02E10/563Y02E10/566Y02E60/76Y02E70/30Y04S40/22
    • A method of controlling a photovoltaic system includes: receiving a forecast of energy generation by the photovoltaic system for a predetermined time period; determining a revenue generation objective function characterizing revenue generated by feeding electrical energy from the photovoltaic system into an energy transmission system; determining constraints on the feed-in of electrical energy into the energy transmission system, at least some of the constraints being a function of the forecast; optimizing the revenue generation objective function as constrained to determine energy feed-in and storage actions; and executing the determined energy feed-in and storage actions. The method, for example, utilizes a simplified revenue generation module including a linear revenue generation objective function and a plurality of linear constraints, which can enable optimization using a mixed integer linear programming approach. The method steps can be performed iteratively, at each of a plurality of predetermined time intervals during the predetermined time period.
    • 一种控制光伏系统的方法包括:在预定时间段内接收光伏系统的能量产生的预测; 确定表征通过将来自所述光伏系统的电能馈送到能量传输系统中而产生的收入的收益产生目标函数; 确定对进入能量传输系统的电能的限制,至少一些限制是预测的函数; 将收益产生目标函数优化为受限制以确定能量馈入和存储行为; 并执行确定的能量馈入和存储动作。 该方法例如利用包括线性收入产生目标函数和多个线性约束的简化收入产生模块,其可以使用混合整数线性规划方法来实现优化。 方法步骤可以在预定时间段期间的多个预定时间间隔中的每一个处迭代地执行。
    • 7. 发明公开
    • PNEUMATIC ENERGY HARVESTING AND MONITORING
    • PNEUMATISCHER ENERGIEGEWINNUNG UNDÜBERWACHUNG。
    • EP2464946A1
    • 2012-06-20
    • EP10749936.0
    • 2010-08-11
    • The Boeing Company
    • FONDA, James W.SLESINSKI, Raymond J.
    • G01F1/115G01F15/06G01D21/00
    • F04B51/00F01D15/10F04B2205/04F15B19/005G01D21/00G01L9/00G01L19/0007H02S10/20
    • A method and apparatus for monitoring a pneumatic system. A number of parameters are monitored using a monitoring device connected to the pneumatic system, an energy harvesting unit configured to generate electrical energy from a gas in the pneumatic system, and a controller. The monitoring device comprises a number of sensors configured to detect the number of parameters. The controller is in communication with the number of sensors and the energy harvesting unit and is configured to process measurements for the number of parameters detected by the number of sensors and control operation of the energy harvesting unit. The number of sensors and the controller are powered by the energy harvesting unit. The monitoring device is powered using the electrical energy generated by the energy harvesting unit.
    • 一种用于监测气动系统的方法和装置。 使用连接到气动系统的监视装置来监视多个参数,能量收集单元被配置为从气动系统中的气体产生电能,以及控制器。 监测装置包括多个被配置为检测参数数量的传感器。 控制器与传感器的数量和能量收集单元通信,并且被配置为处理由传感器的数量检测的参数的数量和能量收集单元的控制操作的测量。 传感器和控制器的数量由能量采集单元供电。 监测装置使用能量采集装置产生的电能供电。