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    • 1. 发明申请
    • METHOD FOR DETERMINING A PROPERTY MAP OF AN OBJECT, PARTICULARLY OF A LIVING BEING, BASED ON AT LEAST A FIRST IMAGE, PARTICULARLY A MAGNETIC RESONANCE IMAGE
    • 一种用于确定物体的特征的方法,特别是生命之源,基于至少第一图像,特别是磁共振图像
    • US20100049032A1
    • 2010-02-25
    • US12351429
    • 2009-01-09
    • Florian SteinkeBernd PichlerMatthias HofmannBernhard ScholkopfFlorian Steinke
    • Florian SteinkeBernd PichlerMatthias HofmannBernhard ScholkopfFlorian Steinke
    • A61B5/055G06K9/00
    • G01R33/481A61B6/037G06T7/33G06T2207/10088G06T2207/30004G06T2207/30196
    • It is disclosed a system and method (12) for determining a property map (82) of an object, particularly a human being, based on at least a first image (84), particularly an magnetic resonance (MR) image, of the object. In the method (12), a structure of reference pairs is defined in a first step (96), wherein each reference pair (16-26) comprises at least two entries (62). The first entry represents a property value, particularly an attenuation value. The second entry (62) preferably represents a group of image points (67) belonging together, which is extracted particularly from MR images (28) and comprises an interesting image point corresponding to the property value. In another step (98) of the method (12) a plurality of training pairs (16-26) is provided. A structure of the training pairs (16-26) corresponds to the structure of reference pairs, and the entries of respective training pairs (16-26) are known. In another step (100) of the method (12), an assignment between the first entries and the other entries (62-66) of the training pairs (16-26) is determined by machine learning, thus allowing prediction of a property value (88) corresponding to an arbitrary point (90) of the first image (84).
    • 公开了一种用于基于至少第一图像(84),特别是磁共振(MR)图像来确定对象,特别是人类的属性图(82)的系统和方法(12) 。 在方法(12)中,在第一步骤(96)中定义参考对的结构,其中每个参考对(16-26)包括至少两个条目(62)。 第一项表示属性值,特别是衰减值。 第二条目(62)优选地表示属于一组的一组图像点(67),其特别是从MR图像(28)提取并包括与该属性值对应的有趣图像点。 在方法(12)的另一步骤(98)中,提供了多个训练对(16-26)。 训练对(16-26)的结构对应于参考对的结构,并且各训练对(16-26)的条目是已知的。 在方法(12)的另一步骤(100)中,训练对(16-26)的第一条目和其他条目(62-66)之间的分配由机器学习确定,从而允许预测属性值 (88)对应于第一图像(84)的任意点(90)。
    • 3. 发明申请
    • Assembly, Operating Method and Circuit for a Mill Driven by a Ring Motor
    • 由电机驱动的磨机的组装,操作方法和电路
    • US20130214069A1
    • 2013-08-22
    • US13811881
    • 2011-06-30
    • Harald HeldMichael MetzgerFlorian Steinke
    • Harald HeldMichael MetzgerFlorian Steinke
    • B02C11/00B02C17/18G05B11/01
    • B02C11/00B02C17/18B02C17/1805B02C25/00G05B11/01
    • An assembly is provided for receiving characteristic data of a mill including a rotating mill sleeve having rotor coils and a stator having stator coils, wherein oscillations of the mill sleeve are transmitted to stator coils and/or measurement coils on the stator. The assembly may include stator coil(s) configured to tap power supply induction voltages to detect oscillations of the mill sleeve, wherein the stator coil(s) and/or measurement coil(s) designed to tap induction voltages are positioned in a sector of the mill sleeve in which large oscillations are expected based on the scale of the mill sleeve. Further, a method includes determining the induction voltage induced on stator coil(s) and/or measurement coil(s) by tapping at least one stator coil power supply and/or by tapping at least one measurement coil, and deriving status variable(s) of a milling method that reflect the fill level status in the sector of the respective coil.
    • 提供一种用于接收包括具有转子线圈的旋转磨套和具有定子线圈的定子的轧机的特性数据的组件,其中轧机套筒的振荡传递到定子上的定子线圈和/或测量线圈。 组件可以包括被配置为分接电源感应电压以检测轧机套筒的振荡的定子线圈,其中设计成用于分接感应电压的定子线圈和/或测量线圈定位在 基于轧机套筒规模的预期会产生大的振荡的轧机套筒。 此外,一种方法包括通过点击至少一个定子线圈电源和/或通过敲击至少一个测量线圈来确定在定子线圈和/或测量线圈上感应的感应电压,以及导出状态变量 )反映各个线圈的扇区中的填充水平状态的铣削方法。
    • 4. 发明申请
    • METHOD FOR OPERATING A MILL
    • 一种操作模具的方法
    • US20130008985A1
    • 2013-01-10
    • US13635572
    • 2011-03-08
    • Harald HeldMichael MetzgerFlorian Steinke
    • Harald HeldMichael MetzgerFlorian Steinke
    • B02C25/00B02C17/00
    • B02C17/24B02C17/1805B02C25/00
    • The rotational speed of the drum of an ore mill may be controlled variably over time. By rotating the drum during a first time interval at high speed, especially hard or dense particles are broken up by tumbling. At the same time, the discharge characteristics of the mill are adversely affected. In a subsequent second time interval, the drum is rotated at a slower speed, and the material is discharged more effectively, whereas the tumbling movement inside the mill is not achieved. The combination of said different modes of operation within short time periods in continuous operation may improve both the comminution as a result of a tumbling motion of the material and also the discharge of the ground material. By regulating the rotational speed with different target values within short time windows, different requirements for the movement behavior of the material to be ground and for the discharge characteristics of the ground material can be simultaneously optimised. This may allow a higher throughput for the mill.
    • 矿磨机的转筒的转速可以随时间变化地控制。 通过在第一时间间隔期间高速旋转滚筒,特别是硬或致密的颗粒通过滚动而分解。 同时,磨机的排出特性受到不利影响。 在随后的第二时间间隔中,鼓以较慢的速度旋转,并且材料被更有效地排出,而磨机内部的翻滚运动没有实现。 在短时间内连续操作中所述不同操作模式的组合可以改善由于材料的翻滚运动和粉碎材料的排出造成的粉碎。 通过在短时间窗内以不同的目标值调节旋转速度,可以同时优化对待研磨材料的移动行为和研磨材料的放电特性的不同要求。 这可能允许磨机的更高的生产量。
    • 8. 发明授权
    • Assembly, operating method and circuit for a mill driven by a ring motor
    • 用于由环形电动机驱动的轧机的组装,操作方法和电路
    • US09321054B2
    • 2016-04-26
    • US13811881
    • 2011-06-30
    • Harald HeldMichael MetzgerFlorian Steinke
    • Harald HeldMichael MetzgerFlorian Steinke
    • B02C25/00B02C11/00B02C17/18G05B11/01
    • B02C11/00B02C17/18B02C17/1805B02C25/00G05B11/01
    • An assembly is provided for receiving characteristic data of a mill including a rotating mill sleeve having rotor coils and a stator having stator coils, wherein oscillations of the mill sleeve are transmitted to stator coils and/or measurement coils on the stator. The assembly may include stator coil(s) configured to tap power supply induction voltages to detect oscillations of the mill sleeve, wherein the stator coil(s) and/or measurement coil(s) designed to tap induction voltages are positioned in a sector of the mill sleeve in which large oscillations are expected based on the scale of the mill sleeve. Further, a method includes determining the induction voltage induced on stator coil(s) and/or measurement coil(s) by tapping at least one stator coil power supply and/or by tapping at least one measurement coil, and deriving status variable(s) of a milling method that reflect the fill level status in the sector of the respective coil.
    • 提供一种用于接收包括具有转子线圈的旋转磨套和具有定子线圈的定子的轧机的特性数据的组件,其中轧机套筒的振荡传递到定子上的定子线圈和/或测量线圈。 组件可以包括被配置为分接电源感应电压以检测轧机套筒的振荡的定子线圈,其中设计成用于分接感应电压的定子线圈和/或测量线圈定位在 基于轧机套筒规模的预期会产生大的振荡的轧机套筒。 此外,一种方法包括通过点击至少一个定子线圈电源和/或通过敲击至少一个测量线圈来确定在定子线圈和/或测量线圈上感应的感应电压,以及导出状态变量 )反映各个线圈的扇区中的填充水平状态的铣削方法。