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    • 4. 发明授权
    • Converter control device for a bidirectional power supply system having plural parallel phases
    • 用于具有多个并联相位的双向电源系统的转换器控制装置
    • US08111056B2
    • 2012-02-07
    • US12442438
    • 2007-10-01
    • Kota ManabeTakahiko HasegawaHiroyuki Imanishi
    • Kota ManabeTakahiko HasegawaHiroyuki Imanishi
    • G05F1/59
    • H02M3/1582B60L11/1887B60R16/03H02J7/34H02J2001/004H02M3/1584Y02T90/34
    • A converter device which is configured by connecting three converter circuits in parallel is provided between a secondary battery serving as a first power supply and a fuel cell serving as a second power supply. Two differential ammeters are placed on three reactors corresponding to the three converter circuits. A control unit includes a passing electric power calculation module which calculates electric power passing through the converter device on the basis of detected values of the two differential ammeters, an electric power equalization module which performs equalization of passing electric power between the respective converter circuits which constitute the converter device, a module for changing the number of drive phases which changes the number of drive phases of the converter device in response to the passing electric power, and a voltage conversion control module which controls the converter device and executes a desired voltage conversion.
    • 在用作第一电源的二次电池和用作第二电源的燃料电池之间提供并联连接三个转换器电路的A转换器装置。 两个差分电流表放置在对应于三个转换器电路的三个电抗器上。 控制单元包括通过电力计算模块,其基于两个差分电流表的检测值来计算通过转换器装置的电力;电力均衡模块,其在构成的各个转换器电路之间进行通过电力的均衡 转换器装置,用于改变响应于通过电力而改变转换器装置的驱动相位数的驱动相位数的模块,以及控制转换器装置并执行所需电压转换的电压转换控制模块。
    • 6. 发明申请
    • CONVERTER CONTROL DEVICE
    • 转换器控制器件
    • US20100007319A1
    • 2010-01-14
    • US12442438
    • 2007-10-01
    • Kota ManabeTakahiko HasegawaHiroyuki Imanishi
    • Kota ManabeTakahiko HasegawaHiroyuki Imanishi
    • H02M3/155
    • H02M3/1582B60L11/1887B60R16/03H02J7/34H02J2001/004H02M3/1584Y02T90/34
    • A converter device which is configured by connecting three converter circuits in parallel is provided between a secondary battery serving as a first power supply and a fuel cell serving as a second power supply. Two differential ammeters are placed on three reactors corresponding to the three converter circuits. A control unit includes a passing electric power calculation module which calculates electric power passing through the converter device on the basis of detected values of the two differential ammeters, an electric power equalization module which performs equalization of passing electric power between the respective converter circuits which constitute the converter device, a module for changing the number of drive phases which changes the number of drive phases of the converter device in response to the passing electric power, and a voltage conversion control module which controls the converter device and executes a desired voltage conversion.
    • 在用作第一电源的二次电池和用作第二电源的燃料电池之间提供并联连接三个转换器电路的A转换器装置。 两个差分电流表放置在对应于三个转换器电路的三个电抗器上。 控制单元包括通过电力计算模块,其基于两个差分电流表的检测值来计算通过转换器装置的电力;电力均衡模块,其在构成的各个转换器电路之间进行通过电力的均衡 转换器装置,用于改变响应于通过电力而改变转换器装置的驱动相位数的驱动相位数的模块,以及控制转换器装置并执行所需电压转换的电压转换控制模块。
    • 7. 发明授权
    • Fuel cell system
    • 燃料电池系统
    • US08906567B2
    • 2014-12-09
    • US13258146
    • 2009-06-08
    • Takahiko HasegawaNobuyuki KitamuraKota Manabe
    • Takahiko HasegawaNobuyuki KitamuraKota Manabe
    • H01M8/04H01M16/00B60L11/18B60L3/00
    • H01M8/04589B60L3/003B60L3/0053B60L11/1881H01M8/04559H01M8/04686H01M16/006Y02E60/50Y02T90/34Y10T307/50
    • The present invention detects a failure in an FC converter. A target voltage determination section determines an output target voltage for a fuel cell. A superimposition signal generation section generates a predetermined reference signal to be superimposed onto the output target voltage. A voltage command signal generation section generates a voltage command signal by superimposing the reference signal onto the output target voltage. A frequency characteristics calculation section calculates the frequency characteristics of the reference signal component superimposed on the output voltage of the fuel cell. A failure judgment section judges that a failure occurs in the FC converter if a value of the calculated frequency characteristics is less than the lower limit threshold value of an allowable range established based on reference characteristics. A gain adjustment section adjusts the gains in the FC converter so that the frequency characteristics calculated by the frequency characteristics calculation section correspond to the reference characteristics.
    • 本发明检测FC转换器的故障。 目标电压确定部确定燃料电池的输出目标电压。 叠加信号生成部生成叠加在输出目标电压上的规定的基准信号。 电压指令信号生成部通过将基准信号叠加在输出目标电压上来生成电压指令信号。 频率特性计算部分计算叠加在燃料电池的输出电压上的参考信号分量的频率特性。 如果所计算的频率特性的值小于基于参考特性建立的允许范围的下限阈值,则故障判断部分判断在FC转换器中发生故障。 增益调整部分调节FC转换器中的增益,使得由频率特性计算部分计算的频率特性对应于参考特性。
    • 9. 发明申请
    • CONVERTER CONTROLLER
    • 转换器控制器
    • US20120139522A1
    • 2012-06-07
    • US13383119
    • 2009-07-10
    • Takahiko HasegawaNobuyuki KitamuraKota Manabe
    • Takahiko HasegawaNobuyuki KitamuraKota Manabe
    • G05F3/08
    • H02M3/1584B60L11/1887B60L11/1892H02M1/32H02M1/34H02M2001/0058Y02T10/92Y02T90/34
    • There is disclosed a converter controller which can simply and early detect an abnormality of an auxiliary circuit constituting a soft switching converter. On turning off a first switching element, a controller detects a voltage between both the ends of a snubber capacitor and a voltage between both the ends of the first switching element, to obtain a difference voltage. The controller compares the obtained difference voltage with a voltage threshold value stored in a memory (not shown) to judge whether or not the difference voltage is larger than the voltage threshold value. When the difference voltage is smaller than the voltage threshold value, the controller judges that an auxiliary circuit is normal, to end processing, whereas when the difference voltage is not less than the voltage threshold value, the controller judges that a failure (an open failure) occurs in the auxiliary circuit, to shift to a fail safe operation, thereby ending the processing.
    • 公开了一种转换器控制器,其可以简单且早期地检测构成软开关转换器的辅助电路的异常。 在关闭第一开关元件时,控制器检测缓冲电容器的两端之间的电压和第一开关元件的两端之间的电压,以获得差分电压。 控制器将获得的差分电压与存储在存储器(未示出)中的电压阈值进行比较,以判断差分电压是否大于电压阈值。 当差值电压小于电压阈值时,控制器判断辅助电路是正常的,以结束处理,而当差值电压不小于电压阈值时,控制器判断故障(开路故障 )发生在辅助电路中,以转移到故障安全操作,从而结束处理。