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    • 3. 发明申请
    • AUTOMOTIVE ELECTRICAL SYSTEM FOR COUPLING POWER CONVERTERS WITH A TRANSFORMER
    • 用于与变压器连接电力变换器的汽车电气系统
    • US20100078997A1
    • 2010-04-01
    • US12241398
    • 2008-09-30
    • KEMING CHENCHRISTOPHER P. HENZEGEORGE R. WOODY
    • KEMING CHENCHRISTOPHER P. HENZEGEORGE R. WOODY
    • H02M3/335
    • B60L1/00B60L2210/14Y02T10/7225Y10T307/406
    • Systems and/or apparatus are provided for automotive electrical systems having power converters that are coupled by using a transformer. An electrical system comprises a boost converter, wherein a first winding of a transformer is coupled between the input node of the boost converter and a first reference node. The boost converter further includes a switch coupled between the first reference node and a second reference node and a diode coupled between the first reference node and the output node of the boost converter. An energy source is coupled between the input node and the second reference node and a first electrical load is coupled between the output node and the second reference node. The electrical system further comprises a voltage converter having an input coupled to a second winding of the transformer, and a second electrical load coupled to the output of the voltage converter.
    • 为具有通过使用变压器耦合的功率转换器的汽车电气系统提供系统和/或设备。 电气系统包括升压转换器,其中变压器的第一绕组耦合在升压转换器的输入节点和第一参考节点之间。 升压转换器还包括耦合在第一参考节点和第二参考节点之间的开关以及耦合在升压转换器的第一参考节点和输出节点之间的二极管。 能量源耦合在输入节点和第二参考节点之间,并且第一电负载耦合在输出节点和第二参考节点之间。 电气系统还包括电压转换器,其具有耦合到变压器的第二绕组的输入端和耦合到电压转换器的输出的第二电负载。
    • 5. 发明申请
    • BIDIRECTIONAL NO LOAD CONTROL WITH OVERSHOOT PROTECTION
    • 双向无负载控制与海洋保护
    • US20080284387A1
    • 2008-11-20
    • US11748106
    • 2007-05-14
    • KEMING CHENSteven E. Schulz
    • KEMING CHENSteven E. Schulz
    • G05F1/00
    • H02M1/32H02M3/33576H02M3/3378
    • A method of operating an isolated bi-directional dc/dc converter to provide voltage regulation at a no-load condition over a wide voltage range and also provide overshoot protection for the boost mode main switching transistors uses new boost mode drive waveforms. The new waveforms drive switches S2 and S4 to be turned off during boost mode and only S1 and S3 are switched to provide reverse energy flow at no-load. In boost mode, C1 and C2 provide overshoot protection caused by leakage inductance of the isolation transformer when boost mode drive transistors turn off during forward energy flow and provide stored energy for reverse energy flow during reverse energy flow periods used for voltage regulation in the boost mode. In buck mode, C1 and C2 provide soft switching for buck mode main switching transistors S2 and S4.
    • 一种隔离双向dc / dc转换器的运行方式,可在宽电压范围内的无负载状态下提供电压调节,并为升压模式主开关晶体管提供过冲保护,采用新的升压模式驱动波形。 新的波形驱动开关S 2和S 4在升压模式下关闭,只有S 1和S 3被切换以在空载时提供反向能量流。 在升压模式下,当升压模式驱动晶体管在正向能量流动期间关断时,C 1和C 2提供由隔离变压器的漏感引起的过冲保护,并在用于电压调节的反向能量流期间提供反向能量流的存储能量 升压模式。 在降压模式下,C 1和C 2为降压模式主开关晶体管S 2和S 4提供软开关。
    • 8. 发明申请
    • COMPOSITE AC TO DC CONVERTER WITH BOOSTING CAPABILITIES
    • 具有升压能力的复合交直流转换器
    • US20130128634A1
    • 2013-05-23
    • US13300482
    • 2011-11-18
    • EVGENI GANEVWILLIAM WARRKEMING CHEN
    • EVGENI GANEVWILLIAM WARRKEMING CHEN
    • H02M7/06H02M1/12
    • H02M7/068H01F30/02H01F30/14H02M1/12H02M1/14H02M7/08
    • A composite-like AC-to-DC converter has boosting capabilities. The term “composite AC-to-DC converter” has been coined to distinguish a converter using two or more conversion methods in parallel. All the autotransformer designs for the boost topology composite-like system begin with vector diagrams constructed using the tips of the line-to-line voltage vectors. A constructor arc is swung between these tips equal to the length of the line-to-line voltage vector span. The number of autotransformer three-phase outputs is then determined by the number of equally spaced rays drawn from the opposite vector tip to the arc. The intersection of points of these rays with the arc are used to design the composite-like autotransformer's winding's voltage ratios and interconnections.
    • 复合式AC-DC转换器具有增强能力。 术语“复合AC-DC转换器”已被设计为使用两个或多个并行转换方法来区分转换器。 用于升压拓扑复合系统的所有自耦变压器设计都是以使用线间电压矢量提示构建的矢量图开始的。 这些尖端之间的构造电弧摆动等于线间电压矢量跨度的长度。 自耦变压器三相输出的数量然后由从相对向量尖端到弧线的等间距射线的数量确定。 这些光线与电弧的点用于设计复合式自耦变压器绕组的电压比和互连。
    • 9. 发明申请
    • SNUBBER CAPACITOR RESETTING IN A DC-TO-DC CONVERTER
    • 直流到直流转换器中的SNUBBER电容器复位
    • US20090154205A1
    • 2009-06-18
    • US11959003
    • 2007-12-18
    • KEMING CHEN
    • KEMING CHEN
    • H02H7/125
    • H02M3/33576H02M2001/0032H02M2001/342Y02B70/1491Y02B70/16
    • A DC-to-DC converter and associated methods are provided for controlling the discharge of snubber capacitances during a light/no load buck mode of operation. An operating method for a DC-to-DC converter detects conditions corresponding to a light/no load buck mode of operation, and, in response to the detection of that mode, controls the states of a first switch, a second switch, a first switched diode element, a second switched diode element, a third switched diode element, and a fourth switched diode element to facilitate discharging of a first capacitance element and a second capacitance element through a secondary winding of a transformer.
    • 提供DC-DC转换器和相关联的方法用于在轻/无负载降压操作模式期间控制缓冲电容的放电。 用于DC-DC转换器的操作方法检测与轻/无负载降压操作模式相对应的条件,并且响应于该模式的检测,控制第一开关,第二开关,第一 开关二极管元件,第二开关二极管元件,第三开关二极管元件和第四开关二极管元件,以便于通过变压器的次级绕组放电第一电容元件和第二电容元件。