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    • 1. 发明授权
    • Tunable optical parametric oscillator
    • 可调光参量振荡器
    • US5999547A
    • 1999-12-07
    • US17964
    • 1998-02-02
    • Klaus SchneiderStephan SchillerJurgen MlynekPatrick Kramper
    • Klaus SchneiderStephan SchillerJurgen MlynekPatrick Kramper
    • G02F1/35G02F1/39H01S3/108
    • G02F1/39G02F2001/3546
    • An optical parameter oscillator system is proposed for use in a continuous wave pump laser system having a single-frequency pump source. The system comprises a single-resonance resonator having a nonlinear medium to produce a first and second parametrically generated wave in response to the pump wave from the single-frequency pump source. The system includes means for controlling the cavity length of the resonator, means for controlling the pump frequency of the pump source and means for controlling the temperature of the nonlinear medium. The system provides for a reliable singly-resonant optical parametric oscillator capable of emitting laser light with high spectral purity and frequency stability over a wide spectral range and is resistant to mode hopping.
    • 提出了一种用于具有单频泵浦源的连续波泵激光系统中的光参数振荡器系统。 该系统包括具有非线性介质的单谐振谐振器,以响应于来自单频泵浦源的泵浦波而产生第一和第二参数产生的波。 该系统包括用于控制谐振器的腔体长度的装置,用于控制泵浦源的泵浦频率的装置和用于控制非线性介质的温度的装置。 该系统提供了一种可靠的单谐振光学参量振荡器,能够在宽光谱范围内发射具有高光谱纯度和频率稳定性的激光,并且能够抵抗模式跳变。
    • 4. 发明授权
    • Control method for producing ground markings, and reference beam generator
    • 生产地面标记的控制方法和参考光束发生器
    • US08404301B2
    • 2013-03-26
    • US12597026
    • 2008-04-29
    • Klaus Schneider
    • Klaus Schneider
    • B05C1/16G01C3/00
    • G01B11/00A63C19/06A63C2019/067
    • The invention relates to a control method for producing ground markings (M), with a reference beam generator (4) for determining a reference plane, a reception of the reference beams by means of an optical detector (3), wherein the position of an application unit (2) for the marking substance can be derived relative to the reference plane by using the received reference beams, a derivation of the orientation relative to the reference plane, and a control of an application of the marking substance to produce ground markings (M) according to the orientation. According to the method, the intensity in the solid angle covered by the reference beam is varied in time during the production of the marking.
    • 本发明涉及一种用于产生接地标记(M)的控制方法,具有用于确定参考平面的参考光束发生器(4),借助于光学检测器(3)接收参考光束,其中, 用于标记物质的应用单元(2)可以通过使用接收到的参考光束相对于参考平面导出,相对于参考平面的取向的推导,以及用于产生地面标记的标记物质的应用的控制( M)根据方向。 根据该方法,在制作标记期间,参考光束所覆盖的立体角的强度随时间而变化。
    • 5. 发明授权
    • Crane control, crane and method
    • 起重机控制,起重机和方法
    • US08025167B2
    • 2011-09-27
    • US12152717
    • 2008-05-16
    • Klaus SchneiderOliver SawodnyJörg Neupert
    • Klaus SchneiderOliver SawodnyJörg Neupert
    • B66C13/06
    • B66C13/46B66C13/063B66C13/085
    • The present invention shows a crane control of a crane which includes at least one cable for lifting a load, wherein at least one sensor unit is provided for determining a cable angle relative to the direction of gravitational force. Furthermore, there is shown a crane control for driving the positioners of a crane which includes at least one first and one second strand of cables for lifting the load, with a load oscillation damping for damping spherical pendular oscillations of the load, wherein first and second sensor units are provided, which are associated to the first and second strands of cables, in order to determine the respective cable angles and/or cable angular velocities, and the load oscillation damping includes a control in which the cable angles and/or cable angular velocities determined by the first and second sensor units are considered. Furthermore, a corresponding crane and a method are shown.
    • 本发明示出了起重机的起重机控制装置,其包括用于提升负载的至少一个电缆,其中提供至少一个传感器单元以确定相对于重力方向的电缆角度。 此外,示出了用于驱动起重机的定位器的起重机控制器,其包括用于提升负载的至少一个第一和第二绳索,用于阻尼负载的球形摆振荡的负载振荡阻尼,其中第一和第二 提供传感器单元,其与第一和第二股线束相关联,以便确定相应的电缆角度和/或电缆角速度,并且负载振荡阻尼包括其中电缆角度和/或电缆角度 考虑由第一和第二传感器单元确定的速度。 此外,示出了相应的起重机和方法。
    • 9. 发明申请
    • METHODS FOR CONTROLLING A DRIVE OF A CRANE
    • 控制起重机驱动的方法
    • US20110006023A1
    • 2011-01-13
    • US12832475
    • 2010-07-08
    • Klaus SchneiderOliver SawodnySebastian Kuechler
    • Klaus SchneiderOliver SawodnySebastian Kuechler
    • B66C13/18G06F19/00B66C15/00
    • B66C13/063
    • The present invention comprises a method for the control of a drive of a crane, in particular of a slewing gear and/or of a luffing mechanism, wherein a desired movement of the boom tip serves as an input value on the basis of which a control parameter for the control of the drive is calculated, characterized in that the oscillation dynamics of the system comprising the drive and the crane structure are taken into account in the calculation of the control parameter to reduce natural oscillations. The present invention furthermore comprises a method for the control of a hoisting gear of a crane, wherein a desired hoisting movement of the load serves as an input value on the basis of which a control parameter for the control of the drive is calculated.
    • 本发明包括一种用于控制起重机,特别是起重机和/或变幅机构的驱动的方法,其中,所述起重臂末端的期望运动用作输入值,基于该输入值,控制器 计算驱动控制的参数,其特征在于在计算控制参数时考虑包括驱动装置和起重机结构的系统的振荡动态,以减少自然振荡。 本发明还包括一种用于控制起重机的提升齿轮的方法,其中所述负载的期望的提升运动用作输入值,基于该输入值计算用于驱动的​​控制的控制参数。
    • 10. 发明申请
    • METHOD FOR DETERMINING POSITION, LASER BEAM DETECTOR AND DETECTOR-REFLECTOR DEVICE FOR A SYSTEM FOR DETERMINING POSITION
    • 用于确定位置的方法,用于确定位置的系统的激光束检测器和检测器反射器装置
    • US20100302557A1
    • 2010-12-02
    • US12599483
    • 2008-05-05
    • Hansjoerg PetschkoKlaus Schneider
    • Hansjoerg PetschkoKlaus Schneider
    • G01B11/14
    • G01S3/784G01C15/006G01S3/781G01S17/42
    • The invention relates to a system for determining a position by emitting a first laser beam (7) by a laser source (6) positioned in a reference system onto a detector (1) and simultaneously detecting the first laser beam (7) by the detector (1), thus defining an emission direction of the laser source (7). The detector (1) has a segmented detection area comprising a plurality of discrete partial detection areas (17), each having a defined partial detection direction and at least two partial detection directions thereof being different. When detecting the first laser beam (7), an impingement point (9) of the first laser beam (7) on the detector (1) is detected by means of at least one partial detection area (17), and when determining the incidence direction (10), said direction is derived from the at least one partial detection direction. The location of the detector (1) relative to the laser source (6) and the reference system is then determined using the emission direction and the incidence direction (10).
    • 本发明涉及一种用于通过位于基准系统中的激光源(6)将第一激光束(7)发射到检测器(1)上并同时由检测器(7)检测第一激光束(7)来确定位置的系统 (1),从而限定激光源(7)的发射方向。 检测器(1)具有包括多个离散部分检测区域(17)的分割检测区域,每个部分检测区域具有限定的部分检测方向,并且其至少两个部分检测方向不同。 当检测到第一激光束(7)时,通过至少一个部分检测区域(17)检测检测器(1)上的第一激光束(7)的冲击点(9),并且当确定入射 方向(10),所述方向从所述至少一个部分检测方向导出。 然后使用发射方向和入射方向(10)确定检测器(1)相对于激光源(6)和参考系的位置。