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    • 71. 发明授权
    • Brake control apparatus for vehicle
    • 车辆制动控制装置
    • US07571967B2
    • 2009-08-11
    • US11277825
    • 2006-03-29
    • Shigeru SaitoMasahiro MatsuuraKoichi KokuboYuji Sengoku
    • Shigeru SaitoMasahiro MatsuuraKoichi KokuboYuji Sengoku
    • B60T8/64
    • B60W30/18127B60L7/26B60L2210/20B60T1/10B60T2270/602B60W10/08B60W10/184Y02T10/725
    • A brake apparatus for a vehicle controls braking force acting on front wheels by hydraulic braking force (front-wheel-side vacuum-booster hydraulic pressure fraction+linear-valve differential pressure fraction), which is frictional braking force, and regenerative braking force, and controls braking force acting on rear wheels by hydraulic braking force (rear-wheel-side vacuum-booster hydraulic pressure fraction) only, to thereby perform regeneration-coordinative brake control. During performance of ABS control, the apparatus sets the limit regenerative braking force to a force under which locking of the front wheels does not occur in a case in which the force acts on the front wheels, which are wheels undergoing regenerative braking, and adjusts the regenerative braking force such that the regenerative braking force does not exceed the limit regenerative braking force.
    • 用于车辆的制动装置通过作为摩擦制动力和再生制动力的液压制动力(前轮侧真空增压器液压分数+线性阀差压分数)来控制作用在前轮上的制动力,以及 通过液压制动力(后轮侧真空增压器液压分压)来控制作用在后轮上的制动力,从而进行再生协调制动控制。 在执行ABS控制期间,该装置将限制再生制动力设定为在作用在作为再生制动的车轮的前轮上作用力的情况下不会发生前轮的锁定的力,并且调整 再生制动力使得再生制动力不超过限制再生制动力。
    • 73. 发明申请
    • General graphical Gaussian modeling method and apparatus therefore
    • 一般图形高斯建模方法和装置因此
    • US20070021952A1
    • 2007-01-25
    • US11186277
    • 2005-07-21
    • Shigeru Saito
    • Shigeru Saito
    • G06G7/48G06G7/58
    • G16B40/00G16B5/00G16B25/00G16B45/00
    • A graphical Gaussian modeling method capable of speedily and accurately estimating a genetic network from an expression profile and an apparatus therefore are provided. The present invention provides a graphical Gaussian modeling method for estimating a genetic network including the steps of (a) clustering genes based on an expression profile, (b) selecting genes having a profile closest to a mean value of an expression profile per cluster to be used as representative genes representing the cluster, (c) obtaining a correlation coefficient matrix among representative genes, (d) obtaining a partial correlation coefficient matrix from the correlation coefficient matrix, (e) contracting the partial correlation coefficient matrix according to predetermined conditions and (f) displaying a contracted model based on the contracted partial correlation coefficient matrix.
    • 因此,提供了能够从表达谱和装置快速准确估计遗传网络的图形高斯建模方法。 本发明提供了一种用于估计遗传网络的图形高斯建模方法,包括以下步骤:(a)基于表达谱聚类基因,(b)选择具有最接近每簇的表达谱的平均值的轮廓的基因为 (c)获得代表性基因中的相关系数矩阵,(d)从相关系数矩阵获得部分相关系数矩阵,(e)根据预定条件收缩部分相关系数矩阵和( f)基于收缩的部分相关系数矩阵显示收缩模型。
    • 75. 发明授权
    • Fusion splicer and fusion splicing method for optical fibers
    • 用于光纤的熔接器和熔接方法
    • US06799903B2
    • 2004-10-05
    • US10162631
    • 2002-06-06
    • Shigeru SaitoNoriyuki KawanishiToshiki Kubo
    • Shigeru SaitoNoriyuki KawanishiToshiki Kubo
    • G02B6255
    • G02B6/2551G02B6/255
    • A fusion splicer and fusion splicing method for optical fibers is disclosed including a TV camera 32 which obtains transmitted light images passing through side areas of respective optical fibers 10, 20, an image processing unit 33 which calculates mode field diameters of the respective optical fibers from brightness distributions of the images in terms of directions traverse to the optical fibers to calculate a diametric difference between the mode field diameters, a movable base 57 to move abutted portions between the optical fibers relative to an electric discharge beam position, a drive unit 35 which implements additional electric discharge heating after applying electric discharge fusion splicing heating to the abutted portions while moving the electric discharge beam position toward one of the optical fibers, of which mode field diameter is regarded to be small, and a control unit 34 which controls an electric discharge power supply 36.
    • 公开了一种用于光纤的熔接机和融合拼接方法,包括:获得通过各光纤10,20的侧面区域的透射光图像的TV摄像机32;图像处理单元33,其计算各个光纤的模场直径; 图像的方向穿过光纤的亮度分布,以计算模场直径之间的直径差,可移动基座57相对于放电光束位置移动光纤之间的邻接部分;驱动单元35, 在将放电光束位置移动到其中模式场直径被认为是较小的光纤中的一根光纤移动放电光束位置之后,在施加放电熔融加热之后,进行附加的放电加热;以及控制单元34,其控制电 放电电源36。
    • 78. 发明授权
    • Feed additives for ruminants
    • 反刍动物饲料添加剂
    • US06203829B1
    • 2001-03-20
    • US09319482
    • 1999-06-04
    • Takao MorikawaSeiji SasaokaShigeru SaitoMasato SugawaraKaoru MutoShigenori Yabuta
    • Takao MorikawaSeiji SasaokaShigeru SaitoMasato SugawaraKaoru MutoShigenori Yabuta
    • A23K100
    • A23K50/10A23K40/35Y10S426/807
    • The present invention is directed to rumen-bypass preparations for ruminants composed of a core preparation and a coating layer applied thereonto, characterized in that the core preparation contains from 50 to 90% by weight, based on the core preparation, of a biologically-active substance, that the active substance has been dispersed in from 10 to 50% by weight of a protective substance, and that the coating layer applied onto the core preparation is made of from at least one material selected among linear and branched, saturated and unsaturated aliphatic C12-24 monocarboxylates, polymers insoluble in the neutral region but soluble in the acidic region, and zein. Use of protective substances originating in natural substances and being harmless to the ecological system makes it possible to obtain rumen-bypass preparations which contain biologically-active substances at a high concentration and are advantageous economically.
    • 本发明涉及由核心制剂和涂覆在其上的涂层组成的反刍动物的瘤胃旁路制剂,其特征在于核心制剂含有基于芯制剂的50-90重量%的生物活性 物质,活性物质分散在10〜50重量%的保护物质中,涂布在核心制剂上的涂层由至少一种选自直链和支链,饱和和不饱和脂族的材料制成 C12-24单羧酸盐,不溶于中性区但可溶于酸性区的聚合物,和玉米醇溶蛋白。 使用源于天然物质,对生态系统无害的保护物质,可以获得高浓度含有生物活性物质的瘤胃旁路制剂,经济有利。
    • 79. 发明授权
    • Graphic form shaping apparatus and graphic form shaping method
    • 图形形状设备和图形形状整形方法
    • US6166745A
    • 2000-12-26
    • US956467
    • 1997-10-23
    • Shigeru Saito
    • Shigeru Saito
    • G06T3/00G06K9/52G06T5/30G06T7/60G06T11/20G06K9/32
    • G06K9/52G06T7/68
    • The invention provides a graphic form shaping apparatus which shapes, when a graphic form having certain symmetry with respect to a line and surrounded by a curved line is inputted, the input graphic form so as to be symmetrical with respect to a line. Apexes and maximal points and minimal points in horizontal and vertical directions of an input graphic form are determined as characteristic points, and the degree of symmetry with respect to a straight line interconnecting two of the characteristic points is measured. If the degree of symmetry satisfies a criterion determined in advance, then it is determined that the input graphic form is symmetrical with respect to the straight line, and the input graphic form is corrected based on the symmetry with respect of the straight line.
    • 本发明提供了一种图形形状成形装置,当输入相对于线条具有一定对称性并被曲线包围的图形时,形成输入图形以相对于线对称。 将输入图形的水平和垂直方向的顶点和最大点和最小点确定为特征点,并且测量相对于互连两个特征点的直线的对称度。 如果对称度满足预先确定的标准,则确定输入图形相对于直线对称,并且基于对直线的对称性来校正输入图形。
    • 80. 发明授权
    • Point symmetry shaping method used for curved figure and point symmetry
shaping apparatus thereof
    • 用于曲面图形和点对称成形装置的点对称成形方法
    • US06151411A
    • 2000-11-21
    • US219365
    • 1998-12-23
    • Shigeru Saito
    • Shigeru Saito
    • G06T1/00G06K9/52G06T5/30G06T7/60G06T11/80G06K9/00G06K9/46G06T3/20G06T11/20H04N9/74
    • G06K9/52
    • In a point symmetry shaping apparatus used for a curved figure, any unrecorded symmetry figures are automatically shaped in a point symmetry manner within a short processing time. In the point symmetry shaping apparatus, a coordinate point which constitutes a symmetry center candidate point is calculated from all of center points of symmetry-judging-line-segments. A first point symmetry center candidate point/center point distance calculating unit calculates a distance between the symmetry center candidate point and the center point of the symmetry-judging-line-segment. A point symmetry judging unit judges a point symmetry of the input curved figure in such a manner that a calculation is made of a fluctuation value contained in the distances between the symmetry center candidate point and the center points of the symmetry-judging-line-segments, and the calculated fluctuation value is compared with a threshold value. A point symmetrizing processing unit corrects the coordinate values of the set of the intersection points between the curved line of the input curved figure and the grid, and also the coordinate values of the feature points in order to shape such an input curved figure having a point symmetry judged by the point symmetry judging unit in such a manner that the input curved figure having the point symmetry is positioned in a point symmetry manner with respect to the point symmetry center candidate point.
    • 在用于弯曲图形的点对称成形装置中,任何未记录的对称图形在短处理时间内以点对称方式自动地成形。 在点对称整形装置中,从对称判断线段的所有中心点计算构成对称中心候选点的坐标点。 第一点对称中心候选点/中心点距离计算单元计算对称中心候选点与对称判断线段的中心点之间的距离。 点对称判断单元以对称中心候选点和对称判断线段的中心点之间的距离中包含的波动值进行计算的方式来判断输入曲线图的点对称性 ,并将计算的波动值与阈值进行比较。 点对称处理单元校正输入曲线图和曲线的曲线之间的交点的坐标值,以及特征点的坐标值,以形成具有点的输入曲线图 通过点对称判断单元判断的对称性,使得具有点对称性的输入曲线图相对于点对称中心候选点以点对称方式定位。