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    • 2. 发明公开
    • ELECTRIC POWER CONVERSION DEVICE
    • 电力转换装置
    • EP2863530A1
    • 2015-04-22
    • EP13804362.5
    • 2013-05-23
    • Panasonic Intellectual Property Management Co., Ltd.
    • MASUDA, TakuyaMUTO, KeisukeSANUKI, MaiyaADACHI, MasakazuKOBAYASHI, Susumu
    • H02M3/28H02M3/335
    • H02M3/33507H02M3/33584H02M3/3376H02M2001/0074H02M2001/0077H02M2001/0093
    • An electric power conversion device 1 has a first operation mode and a second operation mode. The first operation mode is of converting DC power received from a first terminal 11 into DC power having a desired voltage to be output to a second terminal 12. The second operation mode is of converting DC power received from the second terminal 12 into DC power having a desired voltage to be output to the first terminal 11. A switching section 50 is configured to, in the first operation mode, be turned on to cause short-circuiting between both ends of a capacitor 52 of a rectifying circuit 5, and, in the second operation mode, be turned off. Accordingly, a first conversion part 31 is configured to, in the first operation mode, supply DC power, received from the first terminal 11, from a first winding 21 to a second conversion part 32 through a conversion circuit 4, and, in the second operation mode, output to the first terminal 11 a voltage obtained by adding an output voltage of the rectifying circuit 5 to an output voltage of the conversion circuit 4. Therefore, it is possible to bidirectionally boost electric power while using a transformer.
    • 电力转换装置1具有第一操作模式和第二操作模式。 第一操作模式是将从第一端子11接收的DC电力转换成具有期望电压的DC电力以将其输出到第二端子12.第二操作模式将从第二端子12接收的DC电力转换成DC电力, 期望的电压被输出到第一端子11.开关部件50被配置为在第一操作模式中导通,以在整流电路5的电容器52的两端之间引起短路,并且在 第二种操作模式将被关闭。 因此,第一转换部件31被配置为在第一操作模式中将通过转换电路4从第一端子11接收的DC电力从第一绕组21传输到第二转换部件32,并且在第二 向第一端子11输出通过将整流电路5的输出电压与转换电路4的输出电压相加而获得的电压。因此,可以在使用变压器的同时双向地提升电力。
    • 3. 发明公开
    • POWER SUPPLY SYSTEM AND DISCHARGE DEVICE
    • ENTLADUNGSVORRICHTUNG的STROMVERSORGUNGSSYSTEM
    • EP3032681A1
    • 2016-06-15
    • EP14833624.1
    • 2014-07-30
    • Panasonic Intellectual Property Management Co., Ltd.
    • ADACHI, MasakazuSHINAGAWA, Mikio
    • H02J3/32
    • B60L11/1816B60L11/1824B60L11/1842B60L11/1844B60L11/1846B60L11/1848B60L11/185B60L11/1887B60L2200/12B60L2230/16B60L2240/80H02J3/32Y02E60/721Y02T10/7088Y02T90/121Y02T90/128Y02T90/14Y02T90/16Y02T90/163Y02T90/169Y02T90/34Y04S10/126Y04S30/14
    • An object is to achieve discharging of electric power of a battery mounted in an electric vehicle to a power wiring so as to match with an amount of electric power consumed in a facility of a consumer, even when the electric vehicle is away from the facility of the consumer. A meter device (10) measures an amount of electric power received by a facility (1) of a consumer from a power grid (51). A discharge device (20) supplies, to a power wiring (50), electric power of a battery (41) for travelling, which is mounted in an electric vehicle (40). A control device (30) controls the discharge device (20) so as to adjust an amount of electric power to be supplied to the power wiring (50) from the battery (41). A communication portion (31) of the control device (30) acquires, through communication with the meter device (10), information regarding an amount of electric power measured by the meter device (10). An adjustment portion (32) of the control device (30) adjusts the amount of electric power to be supplied from the battery (41) to the power wiring (50) so as to be equal to an amount of electric power corresponding to at least part of the amount of electric power measured by the meter device (10).
    • 本发明的目的是实现将安装在电动车辆中的电池的电力放电到电力布线,以便与消费者的设施中消耗的电力量相匹配,即使电动车辆远离设备 消费者。 仪表装置(10)测量来自电网(51)的消费者的设施(1)接收的电力量。 放电装置(20)向电力线路(50)供给安装在电动车辆(40)中的用于行驶的电池(41)的电力。 控制装置(30)控制放电装置(20),以便从电池(41)调节要供给到电力布线(50)的电力量。 控制装置(30)的通信部(31)通过与仪表装置(10)的通信,获取关于由仪表装置(10)测量的电力量的信息。 控制装置(30)的调整部(32)将从电池(41)向电力配线(50)供给的电力量调整为与至少相当的电力量 由仪表装置(10)测量的电力量的一部分。