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    • 1. 发明申请
    • METHOD, CONTROLLER, AND COMPUTER PROGRAM PRODUCT FOR CONTROLLING A VOLTAGE IN A POWER GRID
    • 用于控制电网电压的方法,控制器和计算机程序产品
    • US20160094031A1
    • 2016-03-31
    • US14871519
    • 2015-09-30
    • Ulrich MünzRudolf Sollacher
    • Ulrich MünzRudolf Sollacher
    • H02J3/12G05B15/02
    • G05B15/02H02J3/06H02J3/382H02J2003/007Y02E10/563Y02E60/76Y04S40/22
    • For controlling a voltage in a power grid including a PV bus and a PQ bus, a first tolerance range for an active power of the PV bus and a second tolerance range for an active power of the PQ bus are received. A first value for a reactive power of the PQ bus is received. With that, a robust optimization process is run for a set of power flow equations. The first and second tolerance ranges and the first reactive power value are input to the robust optimization process using the first and second tolerance ranges as robust optimization uncertainty. With that, the robust optimization process determines a voltage set point for the PV bus so that the set of power flow equations is fulfilled for the first and second tolerance ranges. According to the determined voltage set point, a voltage at the PV bus is controlled.
    • 为了控制包括PV总线和PQ总线的电网中的电压,接收PV总线的有功功率的第一公差范围和用于PQ总线的有功功率的第二公差范围。 接收PQ总线的无功功率的第一个值。 因此,对于一组功率流方程,运行鲁棒的优化过程。 将第一和第二公差范围和第一无功功率值输入到鲁棒优化过程中,使用第一和第二公差范围作为鲁棒优化不确定性。 因此,鲁棒的优化过程确定PV总线的电压设定点,以便在第一和第二公差范围内满足功率流方程组。 根据确定的电压设定点,控制PV总线上的电压。
    • 3. 发明授权
    • Method and device for user-specific parameterization of an x-ray device
    • 用于X射线设备的用户特定参数化的方法和设备
    • US07298823B2
    • 2007-11-20
    • US11170661
    • 2005-06-29
    • Philipp BernhardtMarcus PfisterRudolf SollacherVolker Tresp
    • Philipp BernhardtMarcus PfisterRudolf SollacherVolker Tresp
    • H05G1/30
    • A61B6/481A61B6/4035A61B6/504A61B6/542A61B6/544A61B6/583A61B6/588
    • A method and a suitable x-ray device (1) for carrying out the method are specified for effective and operationally simplified user-specific optimization of a parameter configuration (K) of an x-ray device (1), said configuration comprising at least one recording parameter (U,I,t,F). It is accordingly provided that a user (20) is shown a plurality of reference images (V,V1) for different reference parameter sets (PV) from a reference memory (21) in which are stored a large number of reference images (V,V0) each with an associated reference parameter set (PV), that for each reference image (V,V1) shown the user (20) submits an assessment (BM) of the image quality (V,V1), and that on the basis of the submitted assessments (BM) an optimized parameter configuration (K) is created from the reference parameter sets (PV) of the reference images (V,V1) shown.
    • 指定用于执行该方法的方法和合适的x射线装置(1),用于有效和操作地简化X射线装置(1)的参数配置(K)的用户特定优化,所述配置至少包括 一个记录参数(U,I,t,F)。 因此,用户(20)从参考存储器(21)中显示用于不同参考参数组(PV)的多个参考图像(V,V 1),其中存储了大量参考图像(V ,V 0),每个具有相关联的参考参数集(PV),对于所示的每个参考图像(V,V 1),用户(20)提交图像质量(V,V 1)的评估(BM),以及 根据所提交的评估(BM),根据所示的参考图像(V,V 1)的参考参数组(PV)创建优化参数配置(K)。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR PATTERN RECOGNITION
    • 用于图案识别的方法和装置
    • US20090087084A1
    • 2009-04-02
    • US11862604
    • 2007-09-27
    • Rodion NeigovzenRudolf Sollacher
    • Rodion NeigovzenRudolf Sollacher
    • G06K9/00
    • G06K9/62G06K9/64
    • Methods and apparatuses for pattern recognition involve quantum-mechanical calculations. Pattern recognition can be achieved by considering a quantum system and its Hamiltonian dynamics. The dynamics are calculated on the basis of an initial Hamiltonian indicating an initial quantum state and on the basis of a final Hamiltonian. The final Hamiltonian depends on an input pattern and reference patterns. Transformations according to the Hamiltonian dynamics for the quantum system are applied to generate a final quantum state of said quantum system. Depending on said final quantum state a similarity between said input pattern and said reference patterns is determined.
    • 用于模式识别的方法和装置涉及量子力学计算。 可以通过考虑量子系统及其哈密尔顿动力学来实现模式识别。 基于表示初始量子态的初始哈密尔顿算子,并基于最终的哈密尔顿算子来计算动力学。 最终的哈密顿量取决于输入模式和参考模式。 应用根据量子系统的哈密尔顿算子的变换来产生所述量子系统的最终量子态。 根据所述最终量子状态,确定所述输入图案和所述参考图案之间的相似度。
    • 7. 发明申请
    • Method and device for user-specific parameterization of an x-ray device
    • 用于X射线设备的用户特定参数化的方法和设备
    • US20060002513A1
    • 2006-01-05
    • US11170661
    • 2005-06-29
    • Philipp BernhardtMarcus PfisterRudolf SollacherVolker Tresp
    • Philipp BernhardtMarcus PfisterRudolf SollacherVolker Tresp
    • H05G1/42
    • A61B6/481A61B6/4035A61B6/504A61B6/542A61B6/544A61B6/583A61B6/588
    • A method and a suitable x-ray device (1) for carrying out the method are specified for effective and operationally simplified user-specific optimization of a parameter configuration (K) of an x-ray device (1), said configuration comprising at least one recording parameter (U,I,t,F). It is accordingly provided that a user (20) is shown a plurality of reference images (V, V1) for different reference parameter sets (PV) from a reference memory (21) in which are stored a large number of reference images (V, V0) each with an associated reference parameter set (PV), that for each reference image (V, V1) shown the user (20) submits an assessment (BM) of the image quality (V, V1), and that on the basis of the submitted assessments (BM) an optimized parameter configuration (K) is created from the reference parameter sets (PV) of the reference images (V, V1) shown.
    • 指定用于执行该方法的方法和合适的x射线装置(1),用于有效和操作地简化X射线装置(1)的参数配置(K)的用户特定优化,所述配置至少包括 一个记录参数(U,I,t,F)。 因此,用户(20)从参考存储器(21)中显示用于不同参考参数组(PV)的多个参考图像(V,V 1),其中存储了大量参考图像(V ,V 0),每个具有相关联的参考参数集(PV),对于所示的每个参考图像(V,V 1),用户(20)提交图像质量(V,V 1)的评估(BM),以及 根据所提交的评估(BM),根据所示的参考图像(V,V 1)的参考参数组(PV)创建优化参数配置(K)。
    • 9. 发明授权
    • Method and apparatus for quantum adiabatic pattern recognition
    • 量子绝热模式识别的方法和装置
    • US07895142B2
    • 2011-02-22
    • US11862604
    • 2007-09-27
    • Rodion NeigovzenRudolf Sollacher
    • Rodion NeigovzenRudolf Sollacher
    • G06F17/00G06N5/00
    • G06K9/62G06K9/64
    • Methods and apparatuses for pattern recognition involve quantum-mechanical calculations. Pattern recognition can be achieved by considering a quantum system and its Hamiltonian dynamics. The dynamics are calculated on the basis of an initial Hamiltonian indicating an initial quantum state and on the basis of a final Hamiltonian. The final Hamiltonian depends on an input pattern and reference patterns. Transformations according to the Hamiltonian dynamics for the quantum system are applied to generate a final quantum state of said quantum system. Depending on said final quantum state a similarity between said input pattern and said reference patterns is determined.
    • 用于模式识别的方法和装置涉及量子力学计算。 可以通过考虑量子系统及其哈密尔顿动力学来实现模式识别。 基于表示初始量子态的初始哈密尔顿算子,并基于最终的哈密尔顿算子来计算动力学。 最终的哈密顿量取决于输入模式和参考模式。 应用根据量子系统的哈密尔顿算子的变换来产生所述量子系统的最终量子态。 根据所述最终量子状态,确定所述输入图案和所述参考图案之间的相似度。
    • 10. 发明授权
    • Method for determining positional data
    • 确定位置数据的方法
    • US07589672B2
    • 2009-09-15
    • US11628230
    • 2005-04-11
    • Alexey MalinovskiyRudolf Sollacher
    • Alexey MalinovskiyRudolf Sollacher
    • G01S3/02G01S5/14
    • G01S13/87G01S13/876G01S13/878
    • An aspect of the invention relates to a method for determining positional data of at least one node of a network, said network comprising a number of nodes, whereby the positional data refers to an internal coordinate system. The method comprises the following steps: a) preparation of positional data for a sub-set of nodes, b) determination of separation data for the least one node, c) determination or, on repetition of step c), correction of the positional data for the at least one node, depending on the positional data from step a), the separation data determined in step b) and positional data of the at least one node and d) repetition of steps a) to c), until an interruption condition is fulfilled.
    • 本发明的一个方面涉及一种用于确定网络的至少一个节点的位置数据的方法,所述网络包括多个节点,由此所述位置数据是指内部坐标系。 该方法包括以下步骤:a)准备一组节点的位置数据,b)确定最少一个节点的分离数据,c)确定,或重复步骤c),校正位置数据 对于至少一个节点,取决于步骤a)中的位置数据,在步骤b)中确定的分离数据和至少一个节点的位置数据,以及d)重复步骤a)至c),直到中断条件 实现了。