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    • 5. 发明授权
    • Controller for actuating a micromechanical actuator, actuating system for actuating a micromechanical actuator, micro-mirror system and method for actuating a micromechanical actuator
    • 用于致动微机械致动器的控制器,用于致动微机械致动器的致动系统,微镜系统和用于致动微机械致动器的方法
    • US09310606B2
    • 2016-04-12
    • US14471765
    • 2014-08-28
    • Axel WenzlerMohamad Iyad Al Dibs
    • Axel WenzlerMohamad Iyad Al Dibs
    • G02B26/08
    • G02B26/0841
    • A controller for actuating a micromechanical actuator, including a first signal input which is designed to receive a reference signal, a second signal input which is designed to receive a measuring signal which denotes a recorded response by the micromechanical actuator to a control signal, a first controller element which is designed to filter and/or to attenuate predefined frequency modes and/or predefined frequency components in the received reference signal and to output a filtered and/or attenuated reference signal, a second controller element which is designed to modify the received measuring signal in order to minimize the quality of the first mode of the received measuring signal and to output a modified measuring signal, a third controller element which is designed to minimize the deviation between the filtered and/or attenuated reference signal and the received measuring signal and to output a minimized reference signal, a fourth controller element which is designed to modify the bandwidth of the received measuring signal and to subtract it from the minimized reference signal, which makes up the control signal. Furthermore, a corresponding actuating system, a corresponding micro-mirror system and a corresponding method are described.
    • 一种用于致动微机械致动器的控制器,包括被设计为接收参考信号的第一信号输入,被设计为接收表示由微机械致动器对控制信号的记录响应的测量信号的第二信号输入端,第一 控制器元件,其被设计为过滤和/或衰减所接收的参考信号中的预定频率模式和/或预定义的频率分量,并输出滤波和/或衰减的参考信号;第二控制器元件,被设计为修改所接收的测量 信号,以便最小化所接收的测量信号的第一模式的质量并输出修改的测量信号;第三控制器元件,其被设计为最小化滤波和/或衰减的参考信号与接收的测量信号之间的偏差;以及 以输出最小化的参考信号,被设计为修改的第四控制器元件 接收到的测量信号的带宽,并将其从构成控制信号的最小化参考信号中减去。 此外,描述了相应的致动系统,相应的微镜系统和相应的方法。
    • 7. 发明申请
    • METHOD AND DEVICE FOR THE ROBUST AND EFFICIENT DETERMINATION OF THE ROTATIONAL DIRECTION AND/OR ROTATIONAL SPEED OF A WHEEL OR A SHAFT
    • 用于稳定和有效地确定轮子或轴的旋转方向和/或旋转速度的方法和装置
    • US20110054832A1
    • 2011-03-03
    • US12674529
    • 2008-09-19
    • Axel Wenzler
    • Axel Wenzler
    • G06F15/00G01P3/00
    • G01P3/44G01D5/24409G01P3/22G01P13/04G01P13/045
    • A method and a device are described for determining the rotational direction and/or rotational speed of a rotatable body on the basis of a sine signal and cosine signal, which is assignable to the rotational direction and/or rotational speed of the rotatable body and are output by a sensor, having at least one of the following steps: recording a sine signal and cosine signal, which is assignable to the rotational direction and/or rotational speed, at a point in time; determining a phase value from the sine signal and cosine signal; recording sine signals and cosine signals, which is assignable to the rotational direction and/or rotational speed, at points in time; determining phase values from the corresponding sine signals and cosine signals; calculating phase differences from the phase values and the phase value; and determining the rotational direction and/or rotational speed from the phase differences on the basis of a Vernier method.
    • 描述了一种基于正弦信号和余弦信号来确定可旋转体的旋转方向和/或转速的方法和装置,该信号和余弦信号可分配给旋转体的旋转方向和/或转速,并且分别是 由传感器输出,具有以下步骤中的至少一个:在一个时间点记录可分配给旋转方向和/或转速的正弦信号和余弦信号; 从正弦信号和余弦信号确定相位值; 在时间点记录可分配给旋转方向和/或转速的正弦信号和余弦信号; 从相应的正弦信号和余弦信号确定相位值; 从相位值和相位值计算相位差; 并且基于游标法从相位差确定旋转方向和/或转速。
    • 9. 发明授权
    • Method for determining a rotation angle and/or an angle differential from phase signals
    • 用于确定与相位信号的旋转角度和/或角度差的方法
    • US06761075B2
    • 2004-07-13
    • US10363099
    • 2003-06-26
    • Siegbert SteinlechnerLutz DorfmuellerAxel WenzlerRalf Noltemeyer
    • Siegbert SteinlechnerLutz DorfmuellerAxel WenzlerRalf Noltemeyer
    • G01L302
    • G01L3/109G01L3/12
    • The invention proposes a method for determining a rotation angle (&PHgr;) and/or an angular difference (&dgr;) in a divided shaft (3), which has a number of phase tracks (1a, 1b, 2a, and 2b) disposed on it, which are provided with codes. Via an evaluation unit, each group of tracks (1a, 1b, 2a, and 2b) supplies a phase signal (&agr;1, &agr;2), which is respectively ambiguous with regard to a rotation of the shaft (3). The at least two phase signals (&agr;1, &agr;2) are added up in a weighted fashion to produce a signal S from which the integer portion and the non-integer portion are calculated. The non-integer portion is proportional to the angular difference (&dgr;) between the two track groups. The torque (M) is determined through multiplication with the spring rate of an interposed torque rod. The unambiguous torque (&PHgr;) is determined from the integer portion of the signal (S) and a phase value (&agr;1) or (&agr;2) with the aid of a weighted addition.
    • 本发明提出了一种用于确定分离轴(3)中的旋转角(Phi)和/或角度差(delta)的方法,其具有设置在其上的多个相位轨迹(1a,1b,2a和2b) ,其中提供了代码。 通过评估单元,每组轨道(1a,1b,2a和2b)提供相对于轴(3)的旋转分别不明确的相位信号(α1,α2)。 至少两个相位信号(α1,α2)以加权方式相加以产生一个信号S,从该信号S计算整数部分和非整数部分。 非整数部分与两个磁道组之间的角度差(delta)成比例。 扭矩(M)通过与插入的扭矩杆的弹簧刚度相乘来确定。 借助于加权相加,从信号(S)的整数部分和相位值(α1)或(α2)确定明确转矩(Phi)。