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    • 1. 发明授权
    • Multi-chamber fluidized bed-carrying classifier
    • 多室流化床载体分选机
    • US06253465B1
    • 2001-07-03
    • US09582585
    • 2000-06-28
    • Noboru IchitaniIsao HayashiMikio Murao
    • Noboru IchitaniIsao HayashiMikio Murao
    • F26B2100
    • F26B3/08B01J8/36B03B4/00
    • A multi-chamber fluidized bed classifying apparatus comprising; a main chamber having a fluidized bed arranged on wind boxes, through a perforated gas distributing plate is divided into a drying chamber and a classifying chamber by a partition plate, and a communication passage is defined under the plate. The wind boxes have respective lower ends connected to discharge devices respectively. The wind box is connected to a processing fluidization gas supply system for supplying the fluidization gas into the box, while the wind box is connected to a classifying fluidization gas supply system for supplying the fluidization gas into the box. The classifying fluidization gas supply system is provided with a flow control unit which adjusts the quantity of gas supplied into the classifying chamber to control the size of classified particles. The processing fluidization gas supply system is provided with a control unit, which adjusts the gas quantity and/or the temperature of gas supplied into the drying chamber.
    • 一种多室流化床分选装置,包括: 通过穿孔气体分配板将具有设置在风箱上的流化床的主室通过隔板分成干燥室和分级室,并且在板下方形成连通通道。 风箱具有各自的下端分别连接到排放装置。 风箱连接到用于将流化气体供应到箱中的处理流化气体供应系统,同时风箱连接到用于将流化气体供应到箱中的分级流化气供应系统。 分级流化气供给系统设有流量控制单元,该流量控制单元调节供给到分级室的气体量,以控制分级颗粒的尺寸。 处理流化气体供给系统设置有控制单元,其调节供应到干燥室中的气体的气体量和/或温度。
    • 2. 发明授权
    • Fluidized-bed drying and classifying apparatus
    • 流化床干燥和分级装置
    • US06298579B1
    • 2001-10-09
    • US09581898
    • 2000-06-20
    • Noboru IchitaniIsao HayashiMikio Murao
    • Noboru IchitaniIsao HayashiMikio Murao
    • F26B2100
    • B03B4/00F26B3/08F26B21/12
    • A fluidized-bed drying and classifying apparatus is provided with a main body (10) in which a fluidized bed is formed to dry a granular material and to classify the same into fine particles and coarse particles. A perforated gas-distributing plate (12) is disposed in a lower part of a region in which a fluidized bed (14) is formed in the main body (10), a wind box having the shape of a hopper is disposed below the perforated gas-distributing plate. A dropped material discharge device (29) is connected to the lower end of the hopper-shaped wind box (16) to discharge the material dropped into the wind box (16). A gas supply system (110) is connected to the wind box (16) to supply a fluidizing gas that serves as a drying hot gas and a classifying gas into the wind box. A material supply opening portion (20) is mounted to the main body (10) to feed the granular material. A discharge chute (24) is connected to the main body (10) to discharge dried coarse particles. A gas discharge opening portion (56) is connected to the main body (10) to discharge an exhaust gas containing fine particles. The gas supply system (110) includes a flow controller (111) to control classification particle size by controlling the flow rate of the gas supplied into the wind box (16), and a temperature controller (112) to control drying degree through the adjustment of temperature of the hot gas supplied into the wind box (16) according to the adjusted flow rate.
    • 流化床干燥和分级装置设有主体(10),其中形成流化床以干燥颗粒材料并将其分类为细颗粒和粗颗粒。 穿孔气体分布板(12)设置在主体(10)中形成有流化床(14)的区域的下部,具有料斗形状的风箱设置在穿孔 气体分布板。 下料装置(29)连接到料斗形风箱(16)的下端,以排放落入风箱(16)中的材料。 气体供给系统(110)连接到风箱(16),以将用作干燥热气体和分级气体的流化气体供应到风箱中。 材料供给开口部分(20)安装到主体(10)上以供给颗粒材料。 卸料槽(24)连接到主体(10)以排出干燥的粗颗粒。 气体排出开口部(56)与主体(10)连接,排出含有微粒子的废气。 气体供给系统(110)包括通过控制供给到风箱(16)的气体的流量来控制分级粒子的流量控制器(111),以及通过调整来控制干燥程度的温度控制器(112) 根据调节后的流量供给到风箱(16)中的热气的温度。
    • 3. 发明授权
    • Battery pack, charging device, and electronic device
    • 电池组,充电装置和电子设备
    • US08339095B2
    • 2012-12-25
    • US12125414
    • 2008-05-22
    • Isao Hayashi
    • Isao Hayashi
    • H02J7/00H02J7/16
    • H01M10/441H01M2/1022H02J7/0031H02J7/045H02J2007/0098
    • A charging device capable of appropriately grasping the charged state of a battery pack using data stored in a memory of the battery pack even when the battery pack becomes commercial as a new product. A charging device determines charged state data indicative of a charged state of a battery pack mounted thereon based on a charging current supplied and/or a charging voltage applied to the battery pack. A charge control microcomputer reads charging characteristics data from a memory of the battery pack, and generates a data table associating at least one of the charging current supplied and the charging voltage applied to the battery pack and the charged state data with each other, based on the charging characteristics data read out. The microcomputer determines charged state data indicative of a charged state of the battery pack, based on the generated data table.
    • 一种充电装置,即使当电池组作为新产品变得商业化时,也能够使用存储在电池组的存储器中的数据来适当地掌握电池组的充电状态。 充电装置基于提供的充电电流和/或施加到电池组的充电电压来确定表示其上安装的电池组的充电状态的充电状态数据。 充电控制微型计算机从电池组的存储器中读取充电特性数据,并产生数据表,该数据表基于提供的充电电流和施加到电池组的充电电压与充电状态数据之间的至少一个,基于 充电特性数据读出。 微型计算机基于生成的数据表来确定表示电池组的充电状态的充电状态数据。
    • 4. 发明授权
    • Battery charger and control method therefor
    • 电池充电器及其控制方法
    • US08159185B2
    • 2012-04-17
    • US12126031
    • 2008-05-23
    • Isao Hayashi
    • Isao Hayashi
    • H02J7/00
    • H02J7/0075
    • A battery charger capable of correcting the deterioration of a secondary battery left unattended in a charge state and capable of accurately grasping a residual capacity. A battery pack having a nonvolatile memory and a secondary battery cell is attached to the battery charger. Full charge capacity data indicating a chargeable capacity of the battery pack at full charge and a left-charged battery deterioration correcting table to correct the full charge capacity data in accordance with the number of charge cycles are read out from the nonvolatile memory. The charged state data is counted each time it is stored in the nonvolatile memory. A battery cycle deterioration correcting value is specified based on the number of charge cycles, and full charge capacity data is corrected using the specified correcting value. The full charge capacity stored in the nonvolatile memory is rewritten.
    • 一种电池充电器,其能够校正在充电状态下无人值守的二次电池的劣化并且能够准确地掌握剩余容量。 具有非易失性存储器和二次电池单元的电池组附接到电池充电器。 从非易失性存储器中读出表示充满电的电池组的充电容量的充满电量数据和根据充电周期数来校正充满电量数据的左充电电池劣化校正表。 每当存储在非易失性存储器中时,对带电状态数据进行计数。 基于充电周期数来指定电池周期恶化校正值,并且使用指定的校正值来校正充满电量的数据。 存储在非易失性存储器中的完全充电容量被重写。
    • 6. 发明申请
    • BATTERY CHARGER AND METHOD THEREFOR
    • 电池充电器及其方法
    • US20070229037A1
    • 2007-10-04
    • US11759738
    • 2007-06-07
    • Isao Hayashi
    • Isao Hayashi
    • H02J7/00
    • H02J7/042H02J7/0055
    • To fully charge a battery by a multi-power-source battery charger either when a DC power having a voltage corresponding to the charging voltage of the battery is input or when a DC power having a voltage higher than the charging voltage of the battery is input, the supply destination of the input DC power is switched, in accordance with the voltage of the DC power input to the battery charger, between a controller which controls charging of the battery in accordance with the charging voltage of the battery and a DC/DC converter which controls the voltage and current of the DC power supplied to the battery through the controller.
    • 当输入具有与电池的充电电压对应的电压的直流电力时,或者当输入具有高于电池的充电电压的电压的直流电力时,通过多电源电池充电器对电池进行完全充电 根据电池充电器输入的直流电力的电压,根据电池的充电电压来控制电池充电的控制器与DC / DC之间切换输入直流电力的供给目的地 转换器,其通过控制器控制提供给电池的直流电力的电压和电流。
    • 9. 再颁专利
    • Inference rule determining method and inference device
    • 推理规则确定方法和推理装置
    • USRE36823E
    • 2000-08-15
    • US542852
    • 1995-10-13
    • Hideyuki TakagiIsao Hayashi
    • Hideyuki TakagiIsao Hayashi
    • G05B13/02G06N5/04G06N7/04G05B13/00
    • G06N7/046G05B13/0285G06N5/048
    • An inference rule determining process according to the present invention sequentially determines, using a learning function of a neural network model, a membership function representing a degree which the conditions of the IF part of each inference rule is satisfied when input data is received to thereby obtain an optimal inference result without using experience rules. The inventive inference device uses an inference rule of the type "IF . . . THEN . . ." and includes a membership value determiner (1) which includes all of IF part and has a neural network; individual inference quantity determiners (21)-(2r) which correspond to the respective THEN parts of the inference rules and determine the corresponding inference quantities for the inference rules; and a final inference quantity determiner which determines these inference quantities synthetically to obtain the final results of the inference. If the individual inference quantity determiners (2) each has a neural network structure, the non-linearity of the neural network models is used to obtain the result of the inference with high inference accuracy even if in object to be inferred is non-linear.
    • 根据本发明的推理规则确定过程顺序地确定使用神经网络模型的学习功能,表示在接收到输入数据时满足每个推理规则的IF部分的条件的程度的隶属函数,从而获得 没有使用经验规则的最佳推理结果。 本发明的推理装置使用类型“IF ... THEN ...”的推理规则。 并且包括隶属值确定器(1),其包括所有的IF部分并具有神经网络; 单个推理量确定器(21) - (2r),其对应于推理规则的相应THEN部分并且确定推理规则的相应推理量; 以及最终推理量确定器,其合成地确定这些推理量以获得推断的最终结果。 如果个体推理量确定器(2)各具有神经网络结构,则即使在被推断的对象是非线性的,也使用神经网络模型的非线性度来获得具有高推理精度的推理结果。