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    • 3. 发明授权
    • Method for reforming low grade coals
    • 低等级煤的改质方法
    • US4176041A
    • 1979-11-27
    • US880708
    • 1978-02-23
    • Kenji MoriMamoru TaniuchiShigeo Yaguchi
    • Kenji MoriMamoru TaniuchiShigeo Yaguchi
    • C10G1/08C10L9/00C10G1/06
    • C10G1/083C10L9/00Y10S208/951
    • In a method for reforming low grade coal to a carbonaceous material suitable for the production of metallurgical coke, steam coal (noncoking coal), such as sub-bituminous coal, brown coal, etc., is mixed with a catalyst, a co-catalyst (sulfur) and a hydrocarbonaceous heavy oil, and the mixture is thermally reformed in a reducing gaseous atmosphere at elevated pressure and temperature (400.degree. to 450.degree. C.) and the resultant reaction mixture is distilled at a reduced pressure of 40-150 mm Hg and at a temperature of 280.degree. to 350.degree. C. An iron type catalyst is used in proportions up to 3 wt.% based on the coal (on an ash-free, dry basis). The sulfur and heavy oil are recycled.
    • 在将低等级煤转化成适用于生产冶金焦炭的碳质材料的方法中,将诸如次烟煤,褐煤等的蒸汽煤(无焦煤)与催化剂,助催化剂 (硫)和烃类重油,并将混合物在还原气氛中在升高的压力和温度(400至450℃)下热重整,所得反应混合物在40-150mm的减压下蒸馏 Hg,温度为280-350℃。铁类催化剂的使用比例高达3重量%,基于煤(无灰,干基)。 硫和重油被回收利用。
    • 9. 发明申请
    • CONTROL APPARATUS OF ELECTRIC POWER STEERING APPARATUS
    • 电力转向装置控制装置
    • US20090055049A1
    • 2009-02-26
    • US11815133
    • 2006-02-10
    • Toru SakaguchiKenji Mori
    • Toru SakaguchiKenji Mori
    • B62D6/00
    • B62D5/0463
    • In a control apparatus of an electric power steering apparatus structured such as to control a motor applying a steering assist force to a steering mechanism on the basis of a current command value calculated from a steering assist command value calculated on the basis of a steering torque generated in a steering shaft and a current value of the motor, it is always possible to execute a high-performance control regardless of a steering speed, by setting a first differential compensator and a second differential compensator inputting a steering torque, making a sampling cycle of the second differential compensator slower than a sampling cycle of the first differential compensator, and adding outputs of the first differential compensator and the second differential compensator to the steering assist command value.
    • 在电动助力转向装置的控制装置中,根据从根据产生的转向转矩计算出的转向辅助指令值计算的电流指令值,控制向转向机构施加转向辅助力的电动机 在转向轴和电动机的电流值中,通过设置第一差动补偿器和输入转向转矩的第二差动补偿器,总是可以执行与转向速度无关的高性能控制,使得取样周期为 所述第二差分补偿器比所述第一差分补偿器的采样周期慢,并且将所述第一差分补偿器和所述第二差分补偿器的输出相加于所述转向辅助指令值。
    • 10. 发明授权
    • Storage device and storage device power consumption control method
    • 存储设备和存储设备功耗控制方法
    • US07454656B2
    • 2008-11-18
    • US10937311
    • 2004-09-10
    • Naoki OkadaKenji MoriNobuyuki Minowa
    • Naoki OkadaKenji MoriNobuyuki Minowa
    • G06F11/00
    • G06F11/1441
    • According to the present invention, in cases where a CHA function and a DKA function are mounted within a single package, a battery power supply that is used during the occurrence of power supply trouble is effectively utilized so that the supply of power can be separately controlled for each function. A CHA part and DKA part are disposed in a single control package. When trouble such as a power outage is detected, the CHA part blocks access requests from the host, and initiates end processing. When the end processing of the CHA part is completed, the package internal power supply control part stops the clock supply to the CHA part. Then, when the DKA part completes destage processing, the package internal power supply control part stops the supply of power to the DKA part. The power consumption of the package is lowered in stages in accordance with the progress of the end processing.
    • 根据本发明,在单个封装中安装有CHA功能和DKA功能的情况下,有效地利用在发生电源故障期间使用的电池电源,从而可以单独控制电力供应 对于每个功能 CHA部件和DKA部件设置在单个控制包装中。 当检测到停电等故障时,CHA部分阻止来自主机的访问请求,并开始结束处理。 当CHA部件的结束处理完成时,封装内部电源控制部分停止对CHA部件的时钟供给。 然后,当DKA部件完成停止处理时,封装内部电源控制部分停止向DKA部件供电。 根据最终处理的进度,包装的功耗逐级降低。