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    • 3. 发明专利
    • Circuit for preventing extension of hindrance caused by high-voltage grounding of dc electric railway
    • 用于防止直流电力铁路高压接地造成延误的电路
    • JP2003032882A
    • 2003-01-31
    • JP2001216756
    • 2001-07-17
    • Jr Soken Denki System:KkRailway Technical Res Inst株式会社ジェイアール総研電気システム財団法人鉄道総合技術研究所
    • KAWAHARA TAKAHARUHASE SHINICHIITO TOSHIKATSU
    • H02H9/06H02H7/26
    • PROBLEM TO BE SOLVED: To see that as far as the feeder of adjacent another substation does not stop by the rounding of the DC bus of one substation or the grounding of the low-resistance external wire within a pipe.
      SOLUTION: In a series circuit of a discharge circuit 1, the discharge voltage is smaller than the working voltage of a DC high-voltage grounding relay 42, and a resistor 43 for current detection is provided in place of a DC high-voltage grounding relay between the grounding mat 23 and the rail 21 of the substation 5. Even if the discharge gap discharge electricity by the grounding 24 of the DC bus of the substation 5 and an AC breaker 6 and DC breakers 10 to 13 become off, that relay 42 does not work since the discharge voltage of the discharge gap 1 is lower than the working voltage of the DC high-voltage grounding relay 42 in the substation 28, and the feeder continues without disconnecting an AC breaker 29 and DC breakers 33 to 36.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:只要相邻另一个变电站的馈线不会因一个变电站的直流母线的倒圆或管道内的低电阻外部电线的接地而停止。 解决方案:在放电电路1的串联电路中,放电电压小于直流高压接地继电器42的工作电压,并且提供用于电流检测的电阻器43来代替直流高压接地继电器 在接地垫23和变电站5的轨道21之间。即使通过变电站5的直流母线的接地24和交流断路器6以及直流断路器10至13的放电间隙放电电力断开,该继电器42 由于放电间隙1的放电电压低于变电站28中的直流高压接地继电器42的工作电压,因此不进行工作,并且馈电器在不断开AC断路器29和直流断路器33至36的情况下继续进行。
    • 10. 发明专利
    • Storage device
    • 储存设备
    • JP2005278366A
    • 2005-10-06
    • JP2004091815
    • 2004-03-26
    • Shizuki Electric Co IncWest Japan Railway Co株式会社指月電機製作所西日本旅客鉄道株式会社
    • YAMAMOTO MASAHIROSHOJI TADASHIUMEDA SHIGEKISUEHIRO KAZUOYASUNAGA KAZUOAIHARA TORUCHUGANJI TAKANOBUSUZUKI MOTOHISAINOUE TAKASHIKAWAHARA TAKAHARUISHII JUNKAI HIROYUKIYABE HISAHIROMAEDA HIROSHISHIMADA ICHIRO
    • H02J7/00H02J7/02H02J9/06
    • PROBLEM TO BE SOLVED: To provide a storage device attaining miniaturization, reduction in maintenance cost by a longer service life, and low environmental load. SOLUTION: If a first power converter (11) stops its output due to stopping of or voltage settlement, for example, at least 10% drop in AC power supplied to an input terminal (13), the output voltage of a first capacitor (C1) is converted into a prescribed voltage with a second power converter (12) for output. When a current higher than an output current of the first capacitor (C1) is required, a current is output from a second capacitor (C2). Current supply is performed to a load requiring a heavy current from the second capacitor (C2), therefore the first or the second power converter (11) or (12) does not need large capacity, thus miniaturizing the device. No use of heavy metal provides environmental load reduction, which is advantageous in environmental protection. Furthermore, the service life of the capacitor is 10 to 15 years, which is longer than that of a battery, thus attaining maintenance cost reduction. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种小型化的存储装置,更长的使用寿命和较低的环境负荷降低维护成本。 解决方案:如果第一电力转换器(11)由于停止或电压沉降而停止其输出,例如,提供给输入端子(13)的AC电力的至少10%的下降,则第一 用第二功率转换器(12)将电容器(C1)转换成规定的电压以输出。 当需要高于第一电容器(C1)的输出电流的电流时,从第二电容器(C2)输出电流。 对需要来自第二电容器(C2)的大电流的负载进行电流供给,因此第一或第二功率转换器(11)或(12)不需要大容量,从而使装置小型化。 不使用重金属可以减轻环境负荷,有利于环保。 此外,电容器的使用寿命为10〜15年,比电池使用寿命长,从而实现维护成本的降低。 版权所有(C)2006,JPO&NCIPI