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    • 11. 发明授权
    • Checks for signal lines
    • 检查信号线
    • US07421672B2
    • 2008-09-02
    • US11485154
    • 2006-07-12
    • Neal MeyerBrett NealAndrew McRonaldLee GenzPing SunGene Garrison
    • Neal MeyerBrett NealAndrew McRonaldLee GenzPing SunGene Garrison
    • G06F17/50
    • G06F17/5081
    • Some embodiments provide identification of a first polyline and a second polyline associated with a differential signal, determination of whether a distance between a segment of the first polyline and a segment of the second polyline is within a first tolerance, determination, if the distance is not within the first tolerance, of whether the distance is within a second tolerance, determination, if the distance is not within the first tolerance and is within the second tolerance, of whether the length of the segment of the first polyline is less than a first threshold, and to indicate that the first polyline and the second polyline are sufficiently spaced, if the distance is not within the first tolerance and is within the second tolerance, and if the length of the segment of the first polyline is less than the first threshold.
    • 一些实施例提供与差分信号相关联的第一折线和第二折线的识别,确定第一折线的段与第二折线的段之间的距离是否在第一公差内,确定距离不是 在所述第一公差内,所述距离是否在第二公差内,确定所述距离是否在所述第一公差内并且在所述第二公差内,所述第一折线的所述段的长度是否小于第一阈值 并且指示所述第一折线和所述第二折线是充分间隔的,如果所述距离不在所述第一公差内且在所述第二公差内,并且所述第一折线的所述段的长度是否小于所述第一阈值。
    • 13. 发明授权
    • Method and system to evaluate signal line spacing
    • 评估信号线间距的方法和系统
    • US07100135B2
    • 2006-08-29
    • US10871809
    • 2004-06-18
    • Neal MeyerBrett NealAndrew McRonaldLee GenzPing SunGene Garrison
    • Neal MeyerBrett NealAndrew McRonaldLee GenzPing SunGene Garrison
    • G06F17/50
    • G06F17/5081
    • A system to evaluate a distance between polyline segments includes identification of a first polyline and a second polyline associated with a differential signal, determination of whether a distance between a segment of the first polyline and a segment of the second polyline is within a first tolerance, and, if the distance is not within the first tolerance, determining whether the distance is within a second tolerance. If the distance is not within the first tolerance and is within the second tolerance, it is determined whether the length of the segment of the first polyline is less than a first threshold. If the distance is not within the first tolerance and is within the second tolerance, and if the length of the segment of the first polyline is less than the first threshold, it is indicated that the first polyline and the second polyline are sufficiently spaced. If the distance is not within the second tolerance or if the length of the segment of the first polyline is greater than the first threshold, it is determined whether the segments are located near a device pin, and, if the segments are not located near a device pin, it is indicated that the first polyline and the second polyline are not sufficiently spaced.
    • 用于评估多段线段之间的距离的系统包括识别与差分信号相关联的第一折线和第二折线,确定第一折线的段与第二折线的段之间的距离是否在第一公差内, 并且如果所述距离不在所述第一公差内,则确定所述距离是否在第二公差内。 如果距离不在第一公差范围内且在第二公差内,则确定第一折线段的长度是否小于第一阈值。 如果距离不在第一公差范围内且在第二公差内,并且如果第一折线的段的长度小于第一阈值,则表示第一折线和第二折线充分间隔开。 如果距离不在第二公差内,或者如果第一折线的段的长度大于第一阈值,则确定段是否位于设备引脚附近,并且如果段不位于第 指示第一折线和第二折线没有足够的间隔。
    • 17. 发明申请
    • Multi-Node Synchronous On-Site Test Method
    • 多节点同步现场测试方法
    • US20150019156A1
    • 2015-01-15
    • US14378954
    • 2012-05-02
    • Maolin PeiPing SunChunqiang ZhangJian LiuHaimei HuMing Zhu
    • Maolin PeiPing SunChunqiang ZhangJian LiuHaimei HuMing Zhu
    • G01R31/40G01R21/133
    • G01R31/40G01R21/133H02J13/0079
    • A multi-node synchronous on-site test method, the method comprising: using GPS time as time reference, and conducting synchronous on-site tests on the devices to be tested and systems distributed at different places at an appointed time; controlling the synchronous phase control simulation devices distributed at multiple nodes via a synchronous test control center; within a uniform time section, synchronously outputting secondary side AC simulation signals, and simulating various actual operating conditions, thus achieving the detection of the monitoring and control performances of various dynamic monitoring and control systems, and ensuring the normal functions of the systems. The method of the present invention is able to conduct multi-node dynamic simulation test with synchronized GPS time, and achieves the detection of large-area multi-node monitoring and control systems. The present invention is suitable for the test of a wide area measurement system (WAMS) function, the simulation test of a damping control function, the simulation test of transiently stable state analysis and control functions, the simulation test of voltage stabilization and control functions, the simulation test of an islanding control function, the simulation test of wide area protection system functions and the like.
    • 一种多节点同步现场测试方法,该方法包括:使用GPS时间作为时间参考,并对被测设备进行同步现场测试,并在指定时间内在不同地点分配系统; 通过同步测试控制中心控制分布在多个节点的同步相位控制仿真设备; 在均匀时间段内同步输出二次侧交流仿真信号,模拟各种实际运行状况,实现对各种动态监控系统的监控性能的检测,确保系统的正常功能。 本发明的方法能够进行同步GPS时间的多节点动态模拟测试,实现了大面积多节点监控系统的检测。 本发明适用于广域测量系统(WAMS)功能的测试,阻尼控制功能的仿真测试,瞬态稳态分析和控制功能的仿真测试,稳压控制功能的仿真测试, 孤岛控制功能的仿真测试,广域保护系统功能的仿真测试等。
    • 18. 发明申请
    • ASPHERE MEASUREMENT METHOD AND APPARATUS
    • ASPHERE测量方法和设备
    • US20100309458A1
    • 2010-12-09
    • US12785639
    • 2010-05-24
    • Zongtao GEPing Sun
    • Zongtao GEPing Sun
    • G01B9/00
    • G01M11/0242
    • Disclosed is an asphere measurement method capable of measuring the surface deviations and the surface tilts with high accuracy even when an asphere to be measured does not have the wedge-shaped flat portion.Provided is an asphere measurement method of measuring surface deviations and surface tilts of an asphere having a first detection target surface and a second detection target surface formed as aspheric surfaces which are rotationally symmetric. The method includes, in order of measurement: a first interference fringe acquisition step; a second interference fringe acquisition step; a first shape data acquisition step; a second shape data acquisition step; a first axis data acquisition step; a second axis data acquisition step; and a surface deviation/tilt analysis step.
    • 公开了一种非球面测量方法,即使被测量的非球面不具有楔形平坦部分,也能够以高精度测量表面偏离和表面倾斜。 提供了一种测量具有第一检测目标表面的非球面的表面偏差和表面倾斜的非球面测量方法,以及形成为旋转对称的非球面的第二检测目标表面。 该方法按照测量顺序包括:第一干涉条纹获取步骤; 第二干涉条纹获取步骤; 第一形状数据获取步骤; 第二形状数据获取步骤; 第一轴数据采集步骤; 第二轴数据采集步骤; 和表面偏离/倾斜分析步骤。