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    • 133. 发明授权
    • Abnormal value detection apparatus for satellite positioning system, abnormal value detection method, and abnormal value detection program
    • 卫星定位系统异常检测装置,异常值检测方法,异常检测程序
    • US08878720B2
    • 2014-11-04
    • US13034921
    • 2011-02-25
    • Takeshi OnoKazushi SuzukiTakayuki KanesoTakayuki NakataKenji Aoki
    • Takeshi OnoKazushi SuzukiTakayuki KanesoTakayuki NakataKenji Aoki
    • G01S19/40G01S19/20G01S19/08G01S19/07
    • G01S19/07G01S19/08G01S19/20
    • To detect an abnormal value in a satellite positioning system with high precision even when the observation environment changes or there is the time series correlation between data. An abnormal value index calculation unit 11 calculates an abnormal value index at each time of time-series data such as a pseudo distance between each artificial satellite and a receiver in the satellite positioning system or the like. A dynamic model forming unit 12 dynamically forms a model from the abnormal value index in a predetermined period and calculates a change point index from the time-series abnormal value index based on the dynamic model. The change point index is an index for determining whether the time-series is a one-shot outlier from a dynamic model or the dynamic model itself of input data changes when the time-series value which suddenly increases and decreases exists. The abnormal value detection unit 13 compares the change point index with a threshold value set in advance and detects the abnormal value index corresponding to the change point index at that time as an abnormal value when the value of the change point index is greater than the threshold value.
    • 即使观测环境发生变化或数据之间存在时间序列相关,也能高精度地检测卫星定位系统的异常值。 异常值指标计算单元11计算卫星定位系统等中每个人造卫星和接收机之间的伪距离等时间序列数据的每个时刻的异常值指标。 动态模型形成单元12在预定时段内从异常值索引动态地形成模型,并且基于动态模型从时间序列异常值指数计算变化点索引。 改变点索引是用于确定时间序列是否是动态模型的单次离群值,或者当突然增加和减少的时间序列值存在时输入数据的动态模型本身变化的索引。 异常值检测单元13将改变点索引与预先设定的阈值进行比较,当变化点索引的值大于阈值时,将与该时刻的变化点索引对应的异常值指标作为异常值进行检测 值。
    • 135. 发明授权
    • Touch screen, touch panel and display device
    • 触摸屏,触摸屏和显示设备
    • US08390598B2
    • 2013-03-05
    • US13550737
    • 2012-07-17
    • Masafumi AgariTakeshi OnoNaoki NakagawaIsao NojiriHiroyuki MuraiTakahiro Nishioka
    • Masafumi AgariTakeshi OnoNaoki NakagawaIsao NojiriHiroyuki MuraiTakahiro Nishioka
    • G06F3/044
    • G06F3/044G06F2203/04112
    • A detection column wiring includes a set of a first metal wiring having a zigzag pattern and a second metal wiring having a structure axisymmetric with the first metal wiring about a column direction. The first metal wiring includes first sloped portions obliquely sloped by an inclination angle of 45° with respect to the column direction, and first parallel portions parallel with the column direction and continuous with the first sloped portions; the first sloped portions and the first parallel portions being repeatedly placed in a zigzag shape along the column direction. Each detection row wiring has the same structure. A sloped portion of the first sloped portions of the first metal wiring is always orthogonally and spatially intersected, at its middle point, with a sloped portion of the second sloped portions of the third metal wiring at its middle point. Other portions have the same orthogonal relationship.
    • 检测列布线包括一组具有锯齿形图案的第一金属布线和第二金属布线,其具有围绕列方向的与第一金属布线轴对称的结构。 第一金属布线包括相对于列方向倾斜倾斜45°的第一倾斜部分,以及与列方向平行并与第一倾斜部分连续的第一平行部分; 第一倾斜部分和第一平行部分沿着列方向被重复地设置成锯齿形。 每个检测行布线具有相同的结构。 第一金属布线的第一倾斜部分的倾斜部分在其中点处始终与第三金属布线的第二倾斜部分的倾斜部分在其中点处正交和空间相交。 其他部分具有相同的正交关系。
    • 136. 发明申请
    • TOUCH SCREEN, TOUCH PANEL AND DISPLAY DEVICE
    • 触摸屏,触摸屏和显示设备
    • US20120293457A1
    • 2012-11-22
    • US13550737
    • 2012-07-17
    • Masafumi AgariTakeshi OnoNaoki NakagawaIsao NojiriHiroyuki MuraiTakahiro Nishioka
    • Masafumi AgariTakeshi OnoNaoki NakagawaIsao NojiriHiroyuki MuraiTakahiro Nishioka
    • G06F3/044G06F3/041
    • G06F3/044G06F2203/04112
    • A detection column wiring includes a set of a first metal wiring having a zigzag pattern and a second metal wiring having a structure axisymmetric with the first metal wiring about a column direction. The first metal wiring includes first sloped portions obliquely sloped by an inclination angle of 45° with respect to the column direction, and first parallel portions parallel with the column direction and continuous with the first sloped portions; the first sloped portions and the first parallel portions being repeatedly placed in a zigzag shape along the column direction. Each detection row wiring has the same structure. A sloped portion of the first sloped portions of the first metal wiring is always orthogonally and spatially intersected, at its middle point, with a sloped portion of the second sloped portions of the third metal wiring at its middle point. Other portions have the same orthogonal relationship.
    • 检测列布线包括一组具有锯齿形图案的第一金属布线和第二金属布线,其具有围绕列方向的与第一金属布线轴对称的结构。 第一金属布线包括相对于列方向倾斜倾斜45°的第一倾斜部分,以及与列方向平行并与第一倾斜部分连续的第一平行部分; 第一倾斜部分和第一平行部分沿着列方向被重复地设置成锯齿形。 每个检测行布线具有相同的结构。 第一金属布线的第一倾斜部分的倾斜部分在其中点处始终与第三金属布线的第二倾斜部分的倾斜部分在其中点处正交和空间相交。 其他部分具有相同的正交关系。
    • 138. 发明授权
    • Thin-film transistor, method of manufacturing the same, and display device
    • 薄膜晶体管,其制造方法和显示装置
    • US08269908B2
    • 2012-09-18
    • US12335806
    • 2008-12-16
    • Koji OdaNaoki NakagawaTakeshi OnoYusuke Uchida
    • Koji OdaNaoki NakagawaTakeshi OnoYusuke Uchida
    • G02F1/136
    • H01L29/4908H01L29/66765
    • A method of manufacturing a thin-film transistor according to an embodiment of the present invention includes the step of forming a gate insulator on a gate electrode. The gate insulator includes at least a first region being in contact with a hydrogenated amorphous silicon film, and a second region positioned below the first region. The first and second regions are deposited using a source gas including NH3, N2, and SiH4, and H2 gas or a mixture of H2 and He. The first region is deposited by setting the flow-rate ratio NH3/SiH4 in a range from 11 to 14 and the second region is deposited by setting the flow-rate ratio NH3/SiH4 to be equal to or less than 4. It is thus possible to provide a thin-film transistor having excellent characteristics and high reliability, a method of manufacturing the same, and a display device including the thin-film transistor mounted thereon.
    • 根据本发明的实施例的制造薄膜晶体管的方法包括在栅电极上形成栅极绝缘体的步骤。 栅极绝缘体至少包括与氢化非晶硅膜接触的第一区域和位于第一区域下方的第二区域。 使用包括NH 3,N 2和SiH 4,H 2气体或H 2和He的混合物的源气体来沉积第一和第二区域。 通过将流量比NH3 / SiH4设定在11〜14的范围内来沉积第一区域,并且通过将流量比NH3 / SiH4设定为等于或小于4来沉积第二区域。因此 可以提供具有优异特性和高可靠性的薄膜晶体管,其制造方法以及安装在其上的薄膜晶体管的显示装置。
    • 139. 发明授权
    • Touch screen, touch panel and display device
    • 触摸屏,触摸屏和显示设备
    • US08269744B2
    • 2012-09-18
    • US12553659
    • 2009-09-03
    • Masafumi AgariTakeshi OnoNaoki NakagawaIsao NojiriHiroyuki MuraiTakahiro Nishioka
    • Masafumi AgariTakeshi OnoNaoki NakagawaIsao NojiriHiroyuki MuraiTakahiro Nishioka
    • G06F3/044
    • G06F3/044G06F2203/04112
    • Each detection column wiring is constituted by a set of a first metal wiring having a zigzag pattern and a second metal wiring having a structure axisymmetric with the first metal wiring about a column direction as an axis, wherein the first metal wiring is constituted by first sloped portions which are obliquely sloped by an inclination angle of 45 degrees with respect to the column direction, and first parallel portions which are parallel with the column direction and are continuous with the first sloped portions, such that the first sloped portions and the first parallel portions are repeatedly placed in a zigzag shape along the column direction. Each detection row wiring also has the same structure. A sloped portion out of the first sloped portions of the first metal wiring is always orthogonally and spatially intersected, at its middle point, with a sloped portion out of the second sloped portions of the third metal wiring at its middle point. There is also the same orthogonal relationship among the other portions.
    • 每个检测列布线由一组具有锯齿形图案的第一金属布线和第二金属布线构成,第一金属布线具有围绕列方向作为轴线的与第一金属布线轴对称的结构,其中第一金属布线由第一倾斜 相对于列方向倾斜倾斜45度的部分和与列方向平行且与第一倾斜部连续的第一平行部,使得第一倾斜部和第一平行部 沿着列方向被重复地设置成Z字形。 每个检测行布线也具有相同的结构。 在第一金属布线的第一倾斜部分之间的倾斜部分总是在其中间点处与第三金属布线的中间点处的第二倾斜部分的倾斜部分正交和空间相交。 其他部分之间也具有相同的正交关系。