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    • 2. 发明申请
    • METHOD AND APPARATUS FOR DETERMINING A MOBILITY OF A MOBILE STATION IN A WIRELESS COMMUNICATION SYSTEM
    • 用于确定无线通信系统中移动站的移动性的方法和装置
    • US20100267397A1
    • 2010-10-21
    • US12435806
    • 2009-05-05
    • Xiaohui ShenSheng-Yue HuHong-Lei LiuYinyan Wang
    • Xiaohui ShenSheng-Yue HuHong-Lei LiuYinyan Wang
    • H04W64/00
    • H04W64/006
    • An infrastructure-based mobililty determination module (MDM) receives multiple measurement reports from the MS and, for each received measurement report, stores values corresponding to values included in the report that are associated with measurements of parameters associated with received signals, wherein each stored value is stored in association with a wireless access node sourcing the corresponding signal. For each of one or more pairings of received measurement reports, the MDM then determines a signal parameter measurement change value corresponding to a change from the signal parameter measurement values associated with a first measurement report of the pairing to the signal parameter measurement values associated with a second measurement report of the pairing. Based on the one or more signal parameter measurement change values, the MDM determines an average signal parameter measurement change value and, based on the average signal parameter measurement change value, determines a mobility of the MS.
    • 基于基础设施的移动确定模块(MDM)从MS接收多个测量报告,并且对于每个接收到的测量报告,存储对应于报告中包括的值与与接收信号相关联的参数的测量相关联的值,其中每个存储值 与提供相应信号的无线接入节点相关联地存储。 对于所接收的测量报告的一个或多个配对中的每一个,MDM然后确定对应于从与配对的第一测量报告相关联的信号参数测量值到与相关联的测量报告相关联的信号参数测量值的变化的信号参数测量改变值 配对的第二个测量报告。 基于一个或多个信号参数测量改变值,MDM确定平均信号参数测量改变值,并且基于平均信号参数测量改变值来确定MS的移动性。
    • 3. 发明授权
    • Method and apparatus for determining a mobility of a mobile station in a wireless communication system
    • 用于确定无线通信系统中的移动台的移动性的方法和装置
    • US08223692B2
    • 2012-07-17
    • US12435806
    • 2009-05-05
    • Xiaohui ShenSheng-Yu HuHong-Lei LiuYinyan Wang
    • Xiaohui ShenSheng-Yu HuHong-Lei LiuYinyan Wang
    • H04W4/00H04W24/00H04M3/42
    • H04W64/006
    • An infrastructure-based mobility determination module (MDM) receives multiple measurement reports from the MS and, for each received measurement report, stores values corresponding to values included in the report that are associated with measurements of parameters associated with received signals, wherein each stored value is stored in association with a wireless access node sourcing the corresponding signal. For each of one or more pairings of received measurement reports, the MDM then determines a signal parameter measurement change value corresponding to a change from the signal parameter measurement values associated with a first measurement report of the pairing to the signal parameter measurement values associated with a second measurement report of the pairing. Based on the one or more signal parameter measurement change values, the MDM determines an average signal parameter measurement change value and, based on the average signal parameter measurement change value, determines a mobility of the MS.
    • 基于基础设施的移动性确定模块(MDM)从MS接收多个测量报告,并且对于每个接收到的测量报告,存储与包括在报告中的值相关联的值,其与与接收到的信号相关联的参数的测量相关联,其中每个存储值 与提供相应信号的无线接入节点相关联地存储。 对于所接收的测量报告的一个或多个配对中的每一个,MDM然后确定对应于从与配对的第一测量报告相关联的信号参数测量值到与相关联的测量报告相关联的信号参数测量值的变化的信号参数测量改变值 配对的第二个测量报告。 基于一个或多个信号参数测量改变值,MDM确定平均信号参数测量改变值,并且基于平均信号参数测量改变值来确定MS的移动性。
    • 5. 发明授权
    • Measuring surface flatness using shadow moire technology and
phase-stepping image processing
    • 使用阴影莫尔+ E,acu e + EE技术和相位步进图像处理测量表面平坦度
    • US5969819A
    • 1999-10-19
    • US90058
    • 1998-06-03
    • Yinyan Wang
    • Yinyan Wang
    • G01B11/30G01R31/309
    • G01B11/306G01R31/309
    • A two-dimensional array of phase values is calculated from digitized phase-shifted shadow moire fringe patterns that are indicative of the flatness of the surface of an object. The light intensity "I.sub.1 " of a pixel in a first of such shadow moire fringe patterns is approximated by I.sub.0 +Acos.o slashed., the light intensity "I.sub.2 " of the pixel in a second of such shadow moire fringe patterns is approximated by I.sub.0 +Acos[.o slashed.+(.pi./2)], the light intensity "I.sub.3 " of the pixel in a third of such shadow moire fringe patterns is approximated by I.sub.0 +Acos[.o slashed.+.pi.], and the light intensity "I.sub.4 " of the pixel in a fourth of such shadow moire fringe patterns is approximated by Acos[.o slashed.+(3.pi.)/2)]. The phase values ".o slashed." are equal to arctan((I.sub.2 -I.sub.4)/(I.sub.1 -I.sub.3), and a first two-dimensional array of phase values are calculated. A plurality of two-dimensional arrays of image values are calculated from a first two-dimensional array of phase values, and the two-dimensional arrays of image values are filtered. A second two-dimensional array of phase values is calculated from the filtered two-dimensional arrays of image values. Discontinuities between adjacent phase values in the second two-dimensional array of phase values are identified by searching along a plurality of one-dimensional arrays of the two-dimensional array of phase values, and those discontinuities are adjusted. After the first row and, thereafter, the first column are searched, the other rows are sequentially searched, and thereafter the other columns may be sequentially searched.
    • 相位值的二维阵列由表示物体表面的平坦度的数字化相移阴影莫尔+ E,acu e + EE条纹图案计算。 第一个这样的阴影波纹+ E,acu e + EE条纹图案中的第一个像素的光强度“I1”由I0 + Acos + 526近似,第二个这样的阴影波纹中的像素的光强度“I2” + E,acu e + EE条纹图案由I0 + Acos [+526 +(pi / 2)]近似,三分之一的阴影波纹+ E,acu e + EE边缘中的像素的光强度“I3” 图案由I0 + Acos [+526 + pi]近似,并且第四种这样的阴影波纹+ E,acu e + EE条纹图案中的像素的光强度“I4”近似为Acos [+526 +(3 pi)/ 2)]。 相位值“+526”等于arctan((I2-I4)/(I1-I3)),并且计算相位值的第一二维阵列,从多个二维阵列的图像值计算出 相位值的第一个二维阵列和图像值的二维阵列被过滤,从滤波后的二维图像数组中计算相位值的第二个二维阵列,相邻相位值之间的不连续性 通过沿着相位值的二维阵列的多个一维阵列进行搜索来识别相位值的第二二维阵列,并且调整那些不连续性,在第一行之后,然后搜索第一列 ,顺序地搜索其他行,然后可以顺序地搜索其他列。