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    • 2. 发明申请
    • THIN FILM SOLAR CELL STRUCTURE AND METHOD OF PATTERNING ELECTRODE OF THE SAME
    • 薄膜太阳能电池结构及其电极图案的方法
    • US20110180136A1
    • 2011-07-28
    • US13011447
    • 2011-01-21
    • CHIH-HUNG HSIAO
    • CHIH-HUNG HSIAO
    • H01L31/0224H01L31/18
    • H01L31/046H01L31/02245H01L31/0465Y02E10/50
    • A thin film solar cell structure comprises a substrate, a front electrode layer, an absorber layer, and a back electrode layer stacked on one another sequentially. A first isolation groove goes through the back electrode layer and the absorber layer, and a second isolation groove is disposed concavely in the front electrode layer and filled with an insulative material. A conductive groove is disposed concavely in the absorber layer and filled with a conductive material. Therefore, the front electrode layer is electrically conducted to the back electrode layer via the conductive material. By means of a method of patterning the first isolation groove, second isolation groove and conductive groove, a succinct design of the thin film solar cell structure can be achieved.
    • 薄膜太阳能电池结构包括依次层叠的基板,前电极层,吸收体层和背面电极层。 第一隔离槽穿过背面电极层和吸收层,第二隔离槽凹入地设置在前电极层中并填充有绝缘材料。 导电槽凹陷地设置在吸收层中并填充有导电材料。 因此,前电极层经由导电材料导电到背面电极层。 通过图案化第一隔离槽,第二隔离槽和导电槽的方法,可以实现薄膜太阳能电池结构的简洁设计。
    • 3. 发明授权
    • Power system and power controlling method and apparatus thereof
    • 电力系统及其功率控制方法及装置
    • US08928298B2
    • 2015-01-06
    • US13351240
    • 2012-01-17
    • Chih-Hung HsiaoCheng-Chieh ChanChing-Yueh YuYueh-Shan Lin
    • Chih-Hung HsiaoCheng-Chieh ChanChing-Yueh YuYueh-Shan Lin
    • G05F1/56H02J7/14H02M3/158H02P3/22H02J7/00
    • H02J7/1415H02J7/1492H02J2007/0039H02M3/1582H02P3/22
    • A power controlling method includes the following steps. A first Proportional Integral (PI) computation is performed according to an input current signal and command. Next, whether the input current signal is greater than a maximum rated charging current of a battery unit is determined to generate a switching signal for controlling a brake unit correspondingly. Then, a second PI computation is performed in accordance with the output voltage signal and a predetermined voltage command. Thereafter, the output voltage signal and the voltage command are compared to set an output current command selectively. Next, a third PI computation is performed in accordance with the output current signal and command to adjust a first pair of switching signals and a second pair of switching signals, such that a switching unit performs a corresponding switching action to adjust the output voltage signal. A power system and a power controlling apparatus are provide.
    • 功率控制方法包括以下步骤。 根据输入电流信号和命令执行第一比例积分(PI)计算。 接下来,确定输入电流信号是否大于电池单元的最大额定充电电流,以产生用于相应地控制制动单元的开关信号。 然后,根据输出电压信号和预定电压指令执行第二PI计算。 此后,对输出电压信号和电压指令进行比较,选择性地设定输出电流指令。 接下来,根据输出电流信号和命令来执行第三PI计算,以调整第一对开关信号和第二对开关信号,使得开关单元执行相应的开关动作来调节输出电压信号。 提供电力系统和电力控制装置。
    • 4. 发明申请
    • Power System and Power Controlling Method and Apparatus Thereof
    • 电力系统及其功率控制方法及装置
    • US20130088210A1
    • 2013-04-11
    • US13351240
    • 2012-01-17
    • Chih-Hung HSIAOCheng-Chieh CHANChing-Yueh YUYueh-Shan LIN
    • Chih-Hung HSIAOCheng-Chieh CHANChing-Yueh YUYueh-Shan LIN
    • G05F1/10
    • H02J7/1415H02J7/1492H02J2007/0039H02M3/1582H02P3/22
    • A power controlling method includes the following steps. A first Proportional Integral (PI) computation is performed according to an input current signal and command. Next, whether the input current signal is greater than a maximum rated charging current of a battery unit is determined to generate a switching signal for controlling a brake unit correspondingly. Then, a second PI computation is performed in accordance with the output voltage signal and a predetermined voltage command. Thereafter, the output voltage signal and the voltage command are compared to set an output current command selectively. Next, a third PI computation is performed in accordance with the output current signal and command to adjust a first pair of switching signals and a second pair of switching signals, such that a switching unit performs a corresponding switching action to adjust the output voltage signal. A power system and a power controlling apparatus are provide.
    • 功率控制方法包括以下步骤。 根据输入电流信号和命令执行第一比例积分(PI)计算。 接下来,确定输入电流信号是否大于电池单元的最大额定充电电流,以产生用于相应地控制制动单元的开关信号。 然后,根据输出电压信号和预定电压指令执行第二PI计算。 此后,对输出电压信号和电压指令进行比较,选择性地设定输出电流指令。 接下来,根据输出电流信号和命令来执行第三PI计算,以调整第一对开关信号和第二对开关信号,使得开关单元执行相应的开关动作来调节输出电压信号。 提供电力系统和电力控制装置。