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    • 115. 发明申请
    • COAL DEACTIVATION APPARATUS
    • 煤炭灭活装置
    • US20130239471A1
    • 2013-09-19
    • US13881619
    • 2011-11-25
    • Keiichi SatoKeiji TanizakiSetsuo Omoto
    • Keiichi SatoKeiji TanizakiSetsuo Omoto
    • C10L9/08
    • C10L9/083C10B57/08C10L9/08C10L2290/58C10L2290/60
    • The coal deactivation apparatus including: a separating device that separates out a portion of the beneficiated coal deactivated in the main treatment apparatus; a main evaluation apparatus into which the sample of the beneficiated coal separated out by the separating apparatus is supplied; a blower and heater that supply air at the evaluation temperature to the main evaluation apparatus; a temperature sensor that detects the temperature of the air that has heat-treated the sample in the main evaluation apparatus; and a control unit that, when the temperature of the air is at or below the lower limit on the basis of information from the temperature sensor, determines whether or not the temperature of the process gas is at or below the lower limit and if the process gas temperature exceeds the lower limit, controls the heater to reduce the temperature of the process gas by a prescribed value.
    • 该煤失活装置包括:分离装置,其分离在主处理装置中失活的一部分精选煤; 提供由分离装置分离出的精选煤样品的主要评价装置; 鼓风机和加热器,其将评价温度下的空气供给到主评价装置; 温度传感器,其检测在所述主评价装置中对所述样品进行了热处理的空气的温度; 以及控制单元,当空气的温度基于来自温度传感器的信息等于或低于下限时,确定处理气体的温度是否处于或低于下限,并且如果处理 气体温度超过下限,控制加热器将处理气体的温度降低规定值。
    • 117. 发明申请
    • POWER CONVERTER AND FUEL CELL SYSTEM INCLUDING THE SAME
    • 电源转换器和燃料电池系统,包括它们
    • US20130108938A1
    • 2013-05-02
    • US13144061
    • 2011-02-09
    • Nin KakeKeiichi SatoHiroaki KakuHiroshi NagasatoAkihito OotaniToru Kushisaka
    • Nin KakeKeiichi SatoHiroaki KakuHiroshi NagasatoAkihito OotaniToru Kushisaka
    • H01M8/04H01M8/06H02M7/48
    • H01M8/04037H01M8/04253H01M8/0606H01M8/0618H02J3/387H02J2001/004H02M3/337H02M7/48H02M7/4807H02M2001/007
    • A power converter of the present invention is configured to convert DC power generated by a power generator (1) into AC power. The power converter includes: a boost converter circuit (3) configured to boost an output voltage of the power generator (1); an inverter circuit (5) configured to convert an output voltage of the boost converter circuit (3) into AC power and to interconnect the AC power with a power system (2); a buck converter circuit (8) configured to perform power conversion of output power of the boost converter circuit (3) and to supply resultant power to an internal load (60); and a controller (9). The controller (9) is configured to control the output voltage of the boost converter circuit (3) to be lower than or equal to a second voltage value which is less than the maximum value of AC voltage of the power system (2), in a case of supplying output power of the power generator (1) to the internal load (60) via the boost converter circuit (3) and the buck converter circuit (8).
    • 本发明的电力转换装置将由发电机(1)生成的直流电力转换为交流电力。 功率转换器包括:升压转换器电路(3),被配置为升高发电机(1)的输出电压; 逆变器电路(5),被配置为将所述升压转换器电路(3)的输出电压转换为交流电力并将所述交流电力与电力系统(2)互连; 降压转换器电路(8),被配置为对所述升压转换器电路(3)的输出功率进行功率转换,并将合成功率提供给内部负载(60); 和控制器(9)。 控制器(9)被配置为控制升压转换器电路(3)的输出电压低于或等于小于电力系统(2)的交流电压的最大值的第二电压值, 通过升压转换器电路(3)和降压转换器电路(8)将发电机(1)的输出功率提供给内部负载(60)的情况。
    • 119. 发明授权
    • Liquid ejecting head unit and liquid ejecting apparatus
    • 液体喷射头单元和液体喷射装置
    • US08408675B2
    • 2013-04-02
    • US13330485
    • 2011-12-19
    • Hiroyuki HagiwaraKeiichi Sato
    • Hiroyuki HagiwaraKeiichi Sato
    • B41J23/00
    • B41J25/34B41J2202/19
    • The head unit includes: a recording head; and a sub-carriage to which the recording head is fixed in a state where spacers are interposed therebetween, wherein each spacer has a spacer main body portion having a base surface which comes into contact with the sub-carriage, and back end-side protrusion portions, reference plane protrusion portions, and leading end-side protrusion portions, which are convex portions that rise from the spacer main body portion to direct toward the flange portion side, to which the spacer is fixed, from the sub-carriage side and which are respectively formed toward a leading end portion of the flange portion in relation to a direction of the nozzle row, at both end portions in a width direction perpendicular to the nozzle row of the recording head, each reference plane protrusion portion has a surface that becomes a reference plane which comes into contact with the flange portion.
    • 头单元包括:记录头; 以及在其间插入间隔件的状态下将记录头固定到其上的分支架,其中每个间隔件具有间隔件主体部分,该间隔件主体部分具有与副托架接触的基面,以及后端侧突起 从间隔件主体部分起凸出的部分,参考平面突出部分和前端侧突出部分从辅助滑架侧朝着固定有间隔件的凸缘部分侧引导,并且哪个 相对于喷嘴列的方向分别形成在凸缘部的前端部,在与记录头的喷嘴列垂直的宽度方向的两端部,每个基准面突起部具有成为 与凸缘部接触的基准面。
    • 120. 发明申请
    • DISTRIBUTED POWER GENERATION SYSTEM
    • 分布式发电系统
    • US20120286759A1
    • 2012-11-15
    • US13574966
    • 2011-01-31
    • Akihito OotaniHiroaki KakuHiroshi NagasatoNin KakeKeiichi SatoToru Kushisaka
    • Akihito OotaniHiroaki KakuHiroshi NagasatoNin KakeKeiichi SatoToru Kushisaka
    • H02J3/00
    • H02J3/44G01R21/133G01R29/18
    • A distributed power generation system of the present invention is a distributed power generation system connected to a three-wire electric power system including first to third electric wires, the third electric wire being a neutral wire, and includes: an electric power generator (105); a connection mechanism (110) configured to connect any two electric wires among the first to third electric wires (101a to 101c) to an internal electric power load (111); a first current sensor (109a) set so as to detect a current value of the first electric wire (101a); a second current sensor (109b) set so as to detect a current value of the second electric wire (101b); and an operation controller (112) configured to determine the electric wire on which each of the first current sensor (109a) and the second current sensor (109b) is provided and an installing direction of each of the first current sensor (109a) and the second current sensor (109b) by determining whether or not the amount of change in the current value detected by each of the first current sensor (109a) and the second current sensor (109b) before and after the connection mechanism (110) connects any two electric wires to the internal electric power load (111) is the amount corresponding to the power consumption of the internal electric power load (111).
    • 本发明的分布式发电系统是与包括第一至第三电线,第三电线为中性线的三线制电力系统连接的分布式发电系统,包括:发电机(105) ; 连接机构(110),被配置为将所述第一至第三电线(101a至101c)中的任何两条电线连接到内部电力负载(111); 设置为检测第一电线(101a)的电流值的第一电流传感器(109a); 设置为检测第二电线(101b)的电流值的第二电流传感器(109b); 以及操作控制器(112),其被配置为确定其上设置有所述第一电流传感器(109a)和所述第二电流传感器(109b)中的每一个的电线,以及所述第一电流传感器(109a)和 第二电流传感器(109b)通过确定在连接机构(110)之前和之后由第一电流传感器(109a)和第二电流传感器(109b)中的每一个检测到的电流值的变化量是否连接任何两个 与内部电力负载(111)的电线是对应于内部电力负载(111)的功耗的量。