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    • 74. 发明授权
    • Heat activating and thermosensitive recording for thermosensitive adhesive label
    • 热敏粘合标签的热激活和热敏记录
    • US06731319B2
    • 2004-05-04
    • US10238558
    • 2002-09-10
    • Akira IchikawaMasanaka NagamotoHiroshi Yamada
    • Akira IchikawaMasanaka NagamotoHiroshi Yamada
    • B65C924
    • B41J3/4075B41J2/32B65C9/25G09F3/0291G09F3/04
    • There is provided an apparatus for heat-activating a thermosensitive adhesive label. The thermosensitive label includes a support and a thermosensitive adhesive agent layer provided thereon which is not adhesive at room temperature, but becomes adhesive with application of heat. The apparatus according to the present invention includes a heating medium and a platen roller arranged opposite to the heating medium. The thermosensitive adhesive label is transported between the heating medium and the platen roller in a direction where the thermosensitive adhesive agent layer is faced with the heating medium. When a friction coefficient between the thermosensitive adhesive agent layers is less than 2.0, a pressing force of the thermosensitive adhesive label between the heating medium and the platen roller is in a range of from 50 to 5,000 g/25 mm at room temperature.
    • 提供了一种热敏粘合标签的热激活装置。 热敏标签包括支撑体和设置在其上的热敏粘合剂层,其在室温下不粘合,但在​​施加热量时变得粘合。 根据本发明的装置包括与加热介质相对设置的加热介质和压板辊。 热敏粘合剂标签在热敏粘合剂层面对加热介质的方向上在加热介质和压纸辊之间传送。 当热敏粘合剂层之间的摩擦系数小于2.0时,热敏粘合剂标签在加热介质和压纸辊之间的压力在室温下在50至5,000g / 25mm的范围内。
    • 77. 发明授权
    • Sign recognition apparatus and method and sign translation system using
same
    • 符号识别装置和方法,并使用相同的符号翻译系统
    • US5887069A
    • 1999-03-23
    • US567875
    • 1995-12-06
    • Hiroshi SakouHirohiko SagawaMasahiro AbeAkira IchikawaKiyoshi InoueKiyoshi AraiTakanori ShimuraYuji Toda
    • Hiroshi SakouHirohiko SagawaMasahiro AbeAkira IchikawaKiyoshi InoueKiyoshi AraiTakanori ShimuraYuji Toda
    • G06F17/28G06K9/00G06K9/62G06K9/68
    • G06F17/2818G06K9/00355G06K9/6293
    • In continuous sign language recognition, reference sign language patterns of good quality are generated. Continuous sign language patterns and reference sign language patterns are efficiently compressed. The compressed continuous sign language patterns are sequentially and directly matched with the compressed reference sign language patterns to recognize the sign language at high speed and with high precision. A reference sign pattern generating unit generates a reference sign language pattern by normalizing sample patterns while taking into consideration of their nonlinear compression/expansion and by calculating an average of the sample patterns. A continuous sign language recognition unit recognizes a continuous sign language at high speed by sequentially matching the continuous sign language of time sequential patterns with reference sign language patterns while allowing nonlinear expansion and compression in the time domain. A sign language translation system is provided in which a sign language as well as the facial expression or emotion of a sign language user is recognized and converted into a spoken language with emotion, and transferred in the form of texts, voices, sign languages of another type to a particular partner among a plurality of unknown system users.
    • 在连续的手语识别中,产生了质量好的参考手语模式。 连续手语模式和参考手语模式被有效地压缩。 压缩的连续手语模式与压缩的参考手语模式顺序地和直接地匹配,以高速和高精度识别手语。 参考符号图案生成单元通过在考虑其非线性压缩/扩展并且通过计算样本图案的平均值的同时归一化样本图案来生成参考手势语言模式。 连续符号语言识别单元通过使时序模式的连续符号语言与参考手语模式顺序匹配,同时在时域中允许非线性扩展和压缩来高速识别连续符号语言。 提供了一种手语翻译系统,其中手语语言以及手语用户的面部表情或情感被识别并转换成具有情感的口语,并以文本,语音,另一种语言的手语的形式传送 类型到多个未知系统用户中的特定伙伴。
    • 79. 发明授权
    • System for detecting misfire in a multi-cylinder internal combustion
engine
    • 用于检测多缸内燃机失火的系统
    • US5539644A
    • 1996-07-23
    • US152504
    • 1993-11-16
    • Akira IchikawaKenji YamamotoNaoyuki Kamiya
    • Akira IchikawaKenji YamamotoNaoyuki Kamiya
    • G01M15/11G06G7/70F02P5/06G01L3/26
    • G01M15/11
    • A misfiring detecting system for an internal combustion engine includes a first misfire determination unit for comparing an engine rotational speed variation amount computed by an engine rotational speed variation amount computing unit, which computes a variation amount of the engine rotational speed, with a misfire determination value set by a misfire determination value setting unit and determines the occurrence of misfiring in the internal combustion engine on the basis of a result of the comparison, and a second misfire determination unit for determining the occurrence of misfiring in the internal combustion engine on the basis of: a result of comparison of a value indicative of a variation between engine rotational speed variation amounts computed by the engine rotational speed variation amount computing unit in the current and immediately preceding cycles, respectively, with a first set value; and a result of comparison of a value indicative of a variation of variation between engine rotational speed variation amounts computed by the engine rotational speed variation amount computing unit in the immediately preceding cycle and that of a two preceding cycle, respectively, with a second set value, so that misfiring can be accurately detected by preventing erroneous misfiring detection.
    • 用于内燃机的失火检测系统包括:第一失火判定单元,用于将由发动机转速变化量计算单元计算的发动机转速变化量与发动机转速的变化量进行比较, 由失火判定值设定单元设定,并且基于比较结果来确定内燃机中发生的点火现象;以及第二失火判定单元,其基于在内燃机中基于 :将表示发动机转速变化量计算部计算出的发动机转速变化量计算部的发动机转速变化量的变化量的值分别与第一设定值进行比较的结果; 以及分别表示在前一周期中由发动机转速变化量计算单元计算的发动机转速变化量与前一个循环之间的变化的变化的值与第二设定值的比较结果 ,从而可以通过防止错误的点火检测来准确地检测到失火。
    • 80. 发明授权
    • Apparatus for detecting misfire in internal combustion engines for
vehicles
    • 用于检测车辆内燃机失火的装置
    • US5440922A
    • 1995-08-15
    • US126609
    • 1993-09-27
    • Akira Ichikawa
    • Akira Ichikawa
    • G01M15/11G01M15/00
    • G01M15/11
    • An apparatus for detecting a misfire in an internal combustion engine includes a rotational signal outputting unit for outputting a rotational signal corresponding to a rotational position of the engine, an average rotational angular speed computing unit for computing an average rotational angular speed of the engine based on the rotational signal, a deviation computing unit for computing a deviation of a computation result of the average rotational angular speed computing unit at every predetermined rotational position, and a misfire determining unit for determining occurrence of a misfire based on a pattern of the relative magnitude of three consecutive values of the deviations obtained at every predetermined rotational position. Further, the misfire determining unit may use a difference of the deviation, which is computed separately, in place of the deviation itself.
    • 一种用于检测内燃机失火的装置,包括:旋转信号输出单元,用于输出与发动机的旋转位置对应的旋转信号;平均旋转角速度计算单元,用于计算发动机的平均旋转角速度,基于 旋转信号,用于计算平均旋转角速度计算单元在每个预定旋转位置处的计算结果的偏差的偏差计算单元,以及用于基于相对值的模式来确定失火发生的失火判定单元 在每个预定旋转位置获得的三个连续的偏差值。 此外,失火判定单元可以使用单独计算的偏差的差来代替偏差本身。