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    • 2. 发明申请
    • Actuating drive having an electric motor and a control device for controlling the speed of the electric motor
    • 具有电动机的驱动驱动器和用于控制电动机的速度的控制装置
    • US20060279240A1
    • 2006-12-14
    • US11441783
    • 2006-05-26
    • Dominic Lendi
    • Dominic Lendi
    • H02P7/00
    • H02P7/29
    • An actuating drive, which can be remotely controlled in a wireless fashion and is fed by a battery, for operating an actuator (5) between two final positions has a control device for controlling the speed of an electric motor (1). The actuating drive (60) has a changeover device (81) with the aid of which it can optionally be operated either in a first operating mode or in a second operating mode. The control device controls the speed to a first setpoint (ωSN) in the first operating mode, and to a second setpoint (ωSL) in the second operating mode. The first setpoint (ωSN) is fixed in such a way that the energy consumption during operation of the actuator (5) is minimal, while the second setpoint (ωSL) is fixed in such a way that the noise level (L) generated by the actuating drive in the second operating mode is lower than in the first operating mode. By programming a time controller (84) in a fashion appropriate to the application, the actuating drive (60) operates whenever possible in an optimum fashion in terms of energy and, when actually necessary, at the low noise level (L). The actuating drive (60) can therefore be used in a fashion saving battery energy even in the domestic sector.
    • 可以以无线方式远程控制并由电池馈送用于在两个最终位置之间操作致动器(5)的致动驱动器具有用于控制电动机(1)的速度的控制装置。 致动驱动器(60)具有转换装置(81),借助于该装置可以选择性地在第一操作模式或第二操作模式下操作。 控制装置在第二操作模式中将速度控制在第一操作模式中的第一设定点(ω-SUB>)和第二设定点(ω-SL>)。 固定第一设定点(ωga),使致动器(5)的操作期间的能量消耗最小,而第二设定点(ω,SL) 以使得由第二操作模式中的致动驱动器产生的噪声水平(L)低于第一操作模式的方式固定。 通过以适合于应用的方式对时间控制器(84)进行编程,致动驱动器(60)在能量方面以最佳方式尽可能地操作,并且当实际需要时,以低噪声电平(L)运行。 因此,致动驱动器(60)可以以节省电池的能量的方式使用,即使在国内部门中也是如此。
    • 3. 发明申请
    • Method and device for operating an actuating element
    • 用于操作致动元件的方法和装置
    • US20060267534A1
    • 2006-11-30
    • US11441872
    • 2006-05-26
    • Dominic Lendi
    • Dominic Lendi
    • H02P3/00
    • G05B19/231
    • A method for operating an actuating element (30) comprises the following method steps: controlling the rotational frequency of an electric motor (1) to a constant value, calculating an estimate (FE) for the actuating force (F) acting on the actuating element, comparing the estimate (FE) with a predetermined limiting value, and detecting a current position of the actuating element (30) for the predetermined limiting value and assigning the detected position to a final position stored in a travel model. An actuating drive under the control of force and operating according to this method is low in noise and energy-efficient and can therefore be used, in particular, even to operate a battery-fed radiator valve driven in a wireless fashion.
    • 一种用于操作致动元件(30)的方法包括以下方法步骤:将电动机(1)的旋转频率控制为恒定值,计算用于致动力的估计(F E E) (F)作用在所述致动元件上,将所述估计(F SUB)与预定极限值进行比较,并且检测所述致动元件(30)的当前位置达到所述预定极限值并分配所检测到的 位置到存储在旅行模型中的最终位置。 在这种方法的作用下,驱动驱动器的力量控制和操作性能低,噪音低,能够高效率地使用,特别是甚至可以使用以无线方式驱动的电池供电的散热器阀。
    • 4. 发明授权
    • Method and device for operating an actuating element
    • 用于操作致动元件的方法和装置
    • US07834570B2
    • 2010-11-16
    • US11441872
    • 2006-05-26
    • Dominic Lendi
    • Dominic Lendi
    • H02P3/00
    • G05B19/231
    • A method for operating an actuating element (30) comprises the following method steps: controlling the rotational frequency of an electric motor (1) to a constant value, calculating an estimate (FE) for the actuating force (F) acting on the actuating element, comparing the estimate (FE) with a predetermined limiting value, and detecting a current position of the actuating element (30) for the predetermined limiting value and assigning the detected position to a final position stored in a travel model. An actuating drive under the control of force and operating according to this method is low in noise and energy-efficient and can therefore be used, in particular, even to operate a battery-fed radiator valve driven in a wireless fashion.
    • 一种用于操作致动元件(30)的方法包括以下方法步骤:将电动机(1)的旋转频率控制到恒定值,计算作用在致动元件(F)上的致动力(F)的估计(FE) 将所述估计值(FE)与预定极限值进行比较,以及根据所述预定极限值检测所述致动元件(30)的当前位置,并将所述检测到的位置分配给存储在行驶模型中的最终位置。 在这种方法的作用下,驱动驱动器的力量控制和操作性能低,噪音低,能够高效率地使用,特别是甚至可以使用以无线方式驱动的电池供电的散热器阀。