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    • 72. 发明授权
    • Gas turbine system and method for controlling the same
    • 燃气轮机系统及其控制方法
    • US06768277B2
    • 2004-07-27
    • US10102598
    • 2002-03-18
    • Masaya IchinoseMotoo FutamiHiroshi Arita
    • Masaya IchinoseMotoo FutamiHiroshi Arita
    • H02P766
    • F02C9/28F05D2270/304H02P9/04
    • In a gas turbine system having first power converter converting power system N AC voltage to DC voltage, second power converter converting the DC voltage into AC voltage, generator connected to second power converter's AC output and rotated by turbine and turbine controller outputting a revolution speed command value omg* according to a fuel flow rate of the turbine, a detector for detects a revolution speed omg of the generator, another detector detects Vdc of the first converter, a speed regulator generats a DC voltage command value according to a difference between omg and omg*, a switchover unit selects either a preset DC voltage command value Vref or the DC voltage command value according to the revolution speed omg and a voltage regulator and a controller control first power converter conversion output according to a control signal for making Vdc coincide with Vdc*.
    • 在具有将电力系统N交流电压转换为直流电压的第一功率转换器的燃气轮机系统中,将直流电压转换成交流电压的第二功率转换器,与第二功率转换器的交流输出相连接的发电机,由涡轮机和涡轮机控制器旋转输出转速指令 根据涡轮机的燃料流量计算值,检测器,用于检测发电机的转速,另一个检测器检测第一转换器的Vdc,速度调节器根据omg和 omg *,切换单元根据转速omg和调节器选择预置的直流电压指令值Vref或直流电压指令值,以及根据用于使Vdc与Vdc的Vdc一致的控制信号的控制器控制第一功率转换器转换输出 Vdc *。
    • 73. 发明申请
    • Battery System
    • 电池系统
    • US20140117762A1
    • 2014-05-01
    • US13391998
    • 2011-06-20
    • Shin YamauchiHiromu KakuyaMotoo FutamiToshiki TakahashiTsutomu Sudo
    • Shin YamauchiHiromu KakuyaMotoo FutamiToshiki TakahashiTsutomu Sudo
    • H02J7/00
    • H02J7/0014H01M2/1061H01M2/206H01M2/266H02J7/0042H02J7/0091Y10T307/527
    • An objective of the invention is to deal with difference of the internal resistance of batteries.A battery system (1) including a plurality of battery modules (3) connected, wherein the higher the temperature of the location where the battery module (3) is located becomes, the larger the resistance value of a distribution cable (11) is made. In a chassis (2), the distribution cable (11) located where the temperature is high is made longer and the distribution cable (11) located where the temperature is low is made shorter. More specifically, the distribution cable (11) connected to a battery group (4) located on the upper part of the chassis is made longer and the distribution cable (11) connected to a battery group (4) located on the lower part of the chassis is made shorter. Further, the length of the distribution cable (11) may be adjusted by arranging the output terminal (21) on the lowermost part of the chassis (2).
    • 本发明的目的是处理电池内阻的差异。 一种电池系统(1),包括连接有多个电池模块(3),其中电池模块(3)所在位置的温度越高,配电电缆(11)的电阻值越大 。 在底盘(2)中,位于温度较高的分配电缆(11)较长,位于温度较低的分配电缆(11)较短。 更具体地,连接到位于机架上部的电池组(4)的分配电缆(11)制成得更长,并且配置电缆(11)连接到位于底座的下部的电池组(4) 底盘更短。 此外,可以通过将输出端子(21)布置在底架(2)的最下部分来调节配线电缆(11)的长度。
    • 79. 发明授权
    • Power converting device and method for controlling the same
    • 电力转换装置及其控制方法
    • US07643317B2
    • 2010-01-05
    • US11964274
    • 2007-12-26
    • Shuji KatohYasuhiro KiyofujiShoichiro KosekiTomomichi ItoMotoo Futami
    • Shuji KatohYasuhiro KiyofujiShoichiro KosekiTomomichi ItoMotoo Futami
    • H02M1/15H02M3/155
    • H02J3/01Y02E40/40
    • In a system to which a fluctuating load is connected, compensating for fluctuation in voltage harmonics at the load connecting point and fluctuation in system current harmonics has been difficult for a power converting device connected in parallel with the load. To resolve the problem, a power converting device connected in parallel with a fluctuating load includes: a Fourier series expansion unit which executes Fourier series expansion to load current by use of a reference sine wave in sync with a system and thereby outputs Fourier coefficients; and a fundamental component calculating unit which calculates a positive phase active fundamental component of the load current from the Fourier coefficients. A current instruction of the power converting device is generated by subtracting the fundamental current from the load current. With the current instruction, the fluctuations in system current harmonics and in voltage harmonics at the connecting point can be compensated for.
    • 在连接波动负载的系统中,与负载并联连接的电力转换装置难以补偿负载连接点的电压谐波的波动和系统电流谐波的波动。 为了解决该问题,与波动负载并联连接的电力转换装置包括:傅立叶级数扩展单元,其通过使用与系统同步的参考正弦波来执行傅里叶级数展开以加载电流,从而输出傅立叶系数; 以及从傅立叶系数计算负载电流的正相位有源基波分量的基波分量计算单元。 通过从负载电流中减去基波电流来产生电力转换装置的电流指令。 利用当前的指令,可以补偿系统电流谐波和连接点电压谐波的波动。
    • 80. 发明授权
    • Battery system
    • 电池系统
    • US09112247B2
    • 2015-08-18
    • US13408483
    • 2012-02-29
    • Shin YamauchiMotoo FutamiKenji TakedaTakeshi Uchida
    • Shin YamauchiMotoo FutamiKenji TakedaTakeshi Uchida
    • H02J7/00H01M10/48H01M10/42H02J7/34
    • H01M10/482H01M10/425H02J7/0014H02J7/34
    • Even if requirements for any scale of system constructions occur, a battery system of flexibly responding to the requirements is provided. The battery system comprising a battery module having a plurality of battery cells being connected, a battery pack having a plurality of battery modules being connected either in series or in parallel or both in series and in parallel, and a battery block having a plurality of battery packs being connected either in series or in parallel or both in series and in parallel. They are mutually layered. In the battery system, the battery module, the battery pack, and the battery block are previously prepared as variations of layered basic units. In response to requirements for any scale of system constructions, the basic units are combined accordingly.
    • 即使发生了任何系统结构规模的要求,也提供了灵活应对要求的电池系统。 电池系统包括具有连接多个电池单元的电池模块,具有串联或并联或并联或并联连接的多个电池模块的电池组以及具有多个电池的电池组 包装串联或并联或两者串联和并联连接。 它们是相互分层的。 在电池系统中,电池模块,电池组和电池块预先准备为分层基本单元的变型。 为了响应任何规模的系统结构的要求,基本单位相应组合。