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    • 3. 发明申请
    • ELECTRIC POWER SUPPLY SYSTEM, MASTER CONTROL DEVICE, SYSTEM STABILIZATION SYSTEM, CONTROL METHOD FOR THE MASTER CONTROL DEVICE AND CONTROL PROGRAM FOR THE MASTER CONTROL DEVICE
    • 电力供应系统,主控制装置,系统稳定系统,主控制装置的控制方法和主控装置的控制程序
    • US20120228941A1
    • 2012-09-13
    • US13425139
    • 2012-03-20
    • Souichi SAKAI
    • Souichi SAKAI
    • H02J7/34
    • H02J3/383Y02E10/563Y02P90/50Y10T307/625
    • An electrical power supply system is managed by a master management system external to the supply system. The system includes a power generator generating electric power using renewable energy, a battery storing electric power generated by the power generator, and a power output device outputting power from the power generator or the battery. The system also includes a charge and discharge controller acquiring generated power data from the power generator, transmitting the generated power data to the master management system, computing a target output value for output from the power output device, and controlling charge and discharge of the battery such that the target output value is outputted from the power output device. The charge and discharge controller receives charge and discharge instruction signals from the master management device, and initiates or terminates the charge and discharge of the battery based on the charge and discharge instruction signals.
    • 供电系统由供应系统外部的主管理系统管理。 该系统包括使用可再生能源产生电力的发电机,存储由发电机产生的电力的电池和从发电机或电池输出电力的电力输出装置。 该系统还包括充放电控制器,其从发电机获取发电功率数据,将生成的电力数据传送到主管理系统,计算用于从电力输出装置输出的目标输出值,以及控制电池的充电和放电 使得目标输出值从电力输出装置输出。 充放电控制器从主管理装置接收充放电指示信号,并根据充放电指示信号启动或终止电池的充放电。
    • 4. 发明授权
    • Method of manufacturing photovoltaic device
    • 制造光伏器件的方法
    • US4721629A
    • 1988-01-26
    • US778377
    • 1985-12-19
    • Souichi SakaiShoichi NakanoYukinori Kuwano
    • Souichi SakaiShoichi NakanoYukinori Kuwano
    • H01L31/04H01L27/142H01L31/0224B05D3/06
    • H01L31/022466H01L31/046H01L31/0463Y02E10/50Y10S438/94
    • A transparent conductive film is formed on a glass substrate covering substantially its entire surface area and this transparent conductive film is divided into a plurality of transparent conductive parts per each photoelectric converting region. The photoelectric converting region is of a nearly rectangular shape, and accordingly, in order to divide the transparent conductive film into respective transparent conductive film parts, a laser beam is irradiated along all longitudinal and lateral sides of the rectangle. Thereby, the transparent conductive film parts corresponding to the photoelectric converting regions are formed as island regions. Semiconductor film parts are formed on the transparent conductive film parts divided into island regions corresponding to respective photoelectric converting regions and subsequently aluminum film parts are formed on these semiconductor film parts. Transparent conductive film parts are electrically connected to aluminum film parts of adjacent photoelectric converting regions. Thus, a photovoltaic device is manufactured wherein a plurality of photoelectric converting regions are formed on the substrate and respective photoelectric converting regions are connected in a series fashion.
    • 在覆盖其整个表面积的玻璃基板上形成透明导电膜,并且每个光电转换区域将该透明导电膜分成多个透明导电部件。 光电转换区域为近似矩形的形状,因此为了将透明导电膜分割成各自的透明导电膜部分,沿矩形的所有纵向和横向照射激光束。 由此,与光电转换区域对应的透明导电膜部件形成为岛状区域。 半导体膜部件形成在分别对应于各个光电转换区域的岛状区域的透明导电膜部件上,随后在这些半导体膜部件上形成铝膜部件。 透明导电膜部件与相邻的光电转换区域的铝膜部分电连接。 因此,制造其中在基板上形成多个光电转换区域并且各个光电转换区域以串联方式连接的光伏器件。
    • 8. 发明申请
    • ELECTRICAL CHARGING AND DISCHARGING SYSTEM AND CHARGE AND DISCHARGE CONTROL DEVICE
    • 电气充电和放电系统以及充电和放电控制装置
    • US20120223579A1
    • 2012-09-06
    • US13414888
    • 2012-03-08
    • Souichi SAKAITakeshi Nakashima
    • Souichi SAKAITakeshi Nakashima
    • H02J3/32
    • H02J3/32Y02E70/30Y10T307/527
    • The electric power generation system has a power generator configured to generate electric power using renewable energy, a battery configured to store electric power generated by the power generator, a detector configured to detect regularly a power data that is the amount of electric power generated by the power generator, a power output means configured to output electric power generated by the power generator and electric power discharged by the battery, and a controller configured to control the charge and discharge of the battery. The controller is configured to acquire the power data from the detector, to determine a first period based on the size of the fluctuations in the amount of electric power generated by the power generator from a first generated power output to a second generated power output, to control the charge and discharge of the battery.
    • 所述发电系统具有:发电机,其被配置为利用可再生能源发电;蓄电池,被配置为存储由发电机产生的电力;检测器,被配置为定期检测作为由所述发电机产生的电力量的功率数据; 电力输出装置,被配置为输出由发电机产生的电力和由电池放电的电力;以及控制器,被配置为控制电池的充电和放电。 控制器被配置为从检测器获取功率数据,以基于由发电机从第一生成的功率输出到第二生成的功率输出产生的电力的量的波动的大小来确定第一时段,到 控制电池的充放电。
    • 10. 发明授权
    • Charge/discharge control device and power generation system
    • 充放电控制装置及发电系统
    • US08527110B2
    • 2013-09-03
    • US13426128
    • 2012-03-21
    • Takeshi NakashimaSouichi SakaiRyuzo Hagihara
    • Takeshi NakashimaSouichi SakaiRyuzo Hagihara
    • H02J7/04
    • H02J3/32H02J7/34Y02E70/30Y02P90/50
    • A charge/discharge control device capable of increasing the lifetime of a storage portion while suppressing effects of fluctuation in power generated by a power generator on a power grid is provided. This charge/discharge control device is so formed as to start charge/discharge control of the storage portion if an amount of change in power detected by a power detection portion detecting power passing through a prescribed portion of a line between the power generator and the power grid is at least a prescribed amount of change when the detected power changes from first power to second power while the detected power does not return to power in the vicinity of the first power from the second power within a first period from a time point when the detected power changes from the first power to the second power.
    • 提供一种能够在抑制发电机对电力网产生的电力波动的影响的同时增加存储部的寿命的充放电控制装置。 如果由功率检测部检测到的功率变化量检测到通过发电机和功率之间的线路的规定部分的功率,则该充放电控制装置形成为开始存储部的充放电控制 当检测到的功率从第一功率变化到第二功率时,网格至少是规定量的变化,同时在从第一功率到第二功率的时间点之后的第一时间段内,从第二功率在第一功率附近,检测到的功率不会恢复到第一功率附近的功率 检测到的功率从第一功率变化到第二功率。