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    • 6. 发明授权
    • Method for calibrating a coordinate measuring machine
    • 校准坐标测量机的方法
    • US08825427B2
    • 2014-09-02
    • US12783021
    • 2010-05-19
    • Steffen KunzmannTobias HeldThomas Engel
    • Steffen KunzmannTobias HeldThomas Engel
    • G01C17/38G01B21/04
    • G01B21/042
    • A reference measurement object having known properties is used for the purpose of calibrating a coordinate measuring machine. A plurality of reference measured values are picked up on the reference measurement object. Calibration data are determined using the reference measured values and using the known properties of the reference measurement object. The calibration data comprises a first number of polynomial coefficients that are selected to correct nonlinear measuring errors using at least one polynomial transformation. The first number of polynomial coefficients is reduced in an iterative method to a lesser second number, with a plurality of pairs of polynomial coefficients being formed and with a polynomial coefficient of a pair being eliminated in each case when a statistical dependence between the polynomial coefficients of the pair is greater than a defined threshold value.
    • 具有已知性质的参考测量对象被用于校准坐标测量机的目的。 在参考测量对象上拾取多个参考测量值。 使用参考测量值和使用参考测量对象的已知属性确定校准数据。 校准数据包括第一数量的多项式系数,其被选择以使用至少一个多项式变换来校正非线性测量误差。 第一数量的多项式系数以迭代方法被减少到较小的第二数目,其中形成多对多项式系数,并且在每种情况下消除一对多项式系数,当多项式系数的多项式系数之间的统计相关性 该对大于定义的阈值。
    • 7. 发明申请
    • NETWORK ACCESS CONTROL USING AN ADDITIONAL TRAFFIC CLASS IN A COMMUNICATION NETWORK
    • 使用通信网络中的附加交通类的网络访问控制
    • US20110116372A1
    • 2011-05-19
    • US12294750
    • 2007-03-21
    • Joachim CharzinskiThomas EngelClaus GruberThomas Schwabe
    • Joachim CharzinskiThomas EngelClaus GruberThomas Schwabe
    • H04L12/26
    • H04L47/805H04L45/22H04L45/28H04L45/308H04L47/70H04L47/826
    • The aim of the invention is to provide a method, network control unit and a communication network for optimising the traffic in a communication network that is configured from network components, these entities permitting a degradation of service quality caused by the non-availability of network components to be at least temporarily averted. The solution to said aim is provided by a method for network access control in a communication network configured from network components, said method comprising the following steps: a) introduction of an additional traffic class to supplement a non-prioritising traffic class, more particularly a best effort class, and a traffic class offering a quality of service; b) configuration of a predeterminable bandwidth for the transmission of traffic in the additional traffic class; c) positioning of the additional traffic class above the non-prioritising traffic class and below or on the same level as the traffic class offering a quality of service; and d) authorisation of the use of the predeterminable bandwidth for the transmission of traffic in the additional traffic class for a predeterminable time period.
    • 本发明的目的是提供一种方法,网络控制单元和通信网络,用于优化由网络组件配置的通信网络中的业务,这些实体允许由网络组件的不可用性引起的服务质量的降低 至少暂时避免。 所述目的的解决方案是通过一种由网络组件配置的通信网络中的网络访问控制的方法提供的,所述方法包括以下步骤:a)引入额外的业务类别以补充非优先级的业务类别,更具体地说, 尽力而为,提供服务质量的交通类; b)配置用于在附加业务类中传输业务的可预定带宽; c)将额外的业务类别定位在非优先级的业务类别之上,并且与提供服务质量的流量级别相同的级别上; 以及d)在可预定的时间周期内授权使用可预定带宽用于在附加业务类中传输业务。
    • 9. 发明授权
    • Method for determining the image quality of an optical imaging system
    • 用于确定光学成像系统的图像质量的方法
    • US07831105B2
    • 2010-11-09
    • US10533603
    • 2004-06-11
    • Thomas EngelHerbert Gross
    • Thomas EngelHerbert Gross
    • G06K9/40G06K9/20G01B9/00A61B3/10
    • G01M11/0257
    • The invention is directed to a method for determining the image quality of an optical imaging system and to the use of the method according to the invention for determining the influence of samples on the amplitude distribution and phase front distribution of the illumination light, of which the amplitude distribution is known in particular. The invention comprises the following steps: adjusting the subassemblies relative to one another in such a way that it is possible to project images of a sample on the detection device; recording a plurality of images of the sample from different reference planes near the focus plane; improving the image quality by image processing, particularly to reduce noise, to compensate for local variations in sensitivity of the detection device, and to center the intensity centroids respectively on a predetermined location in the images; computational linking of the spatially resolved image information, of adjustment values and system variables relating to the optical imaging system, and of information concerning the sample with the aim of determining characteristic numbers that are characteristic of the wavefront deformation caused by the imaging system; and outputting the characteristic numbers and associating them with the imaging system for describing the image quality.
    • 本发明涉及一种用于确定光学成像系统的图像质量的方法以及根据本发明的方法用于确定样本对照明光的振幅分布和相位前沿分布的影响的方法,其中 振幅分布特别是已知的。 本发明包括以下步骤:相对于彼此调整子组件,使得可以将样本的图像投影在检测装置上; 从聚焦平面附近的不同参考平面记录样本的多个图像; 通过图像处理改善图像质量,特别是降低噪声,以补偿检测装置的灵敏度的局部变化,并将强度质心分别对准在图像中的预定位置; 空间分辨图像信息的计算连接,与光学成像系统相关的调整值和系统变量的计算连接以及关于样本的信息,目的是确定由成像系统引起的波前变形的特征的特征数; 并输出特征号并将其与用于描述图像质量的成像系统相关联。