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    • 1. 发明申请
    • MAGNETIC BEARING CONTROL DEVICE COMPRISING A THREE-PHASE CONVERTER, AND USE OF A THREE-PHASE CONVERTER FOR CONTROLLING A MAGNETIC BEARING
    • 与三阶段转换磁存储控制设备,以及三相驱动用于控制磁轴承使用
    • WO2008154962A3
    • 2009-03-19
    • PCT/EP2007060413
    • 2007-10-02
    • SIEMENS AGDENK JOACHIMKOEPKEN HANS-GEORGSTOIBER DIETMARWEDEL BERND
    • DENK JOACHIMKOEPKEN HANS-GEORGSTOIBER DIETMARWEDEL BERND
    • F16C32/04
    • F16C32/0457
    • The invention relates to a magnetic bearing control device and the use of a three-phase converter for controlling a magnetic bearing. According to the invention, a three-phase converter (70) is used for controlling a magnetic bearing (10, 66, 68), all three phase currents (40, 42, 44) of the converter (70) being used for controlling the magnetic bearing (10, 66, 68). A first solenoid of a couple of solenoids (10) of the magnetic bearing (10, 66, 68) is connected to a first (U) and a third (W) phase current output of the converter (70) while a second solenoid of the couple of solenoids (10) is connected to the first (U) and a second (V) phase current output of the converter such that the couple of solenoids (10) can be differently controlled by means of said one converter (70). The converter (70) can also be connected to magnetic bearings that already have a bias winding, which is advantageous for retrofitting such existing magnetic bearings, for example.
    • 本发明涉及一种磁轴承控制器和使用三相逆变器的用于控制一个磁轴承。 它提出了一种用于控制磁轴承(10,66,68)使用,所述转换器(70)的所有三个相电流(40,42,44),用于控制磁性轴承(10,66,68的三相逆变器(70) 使用)。 这里,连接到第一(U)的磁性轴承(10,66,68)和所述转换器(70)和所述磁体线圈对的第二磁体线圈(10)的三分之一(W)相电流输出的螺线管线圈对(10)的第一电磁线圈被施加到 连接的第一(U)和所述逆变器的第二(V)输出相电流,以使驱动磁铁线圈对(10)的差被反相器(70)来实现。 所述逆变器(70)也可以连接到现有磁性轴承有偏置绕组。 这是例如 在现有的磁轴承的优点的改造。
    • 3. 发明专利
    • Method for supporting body
    • 支持身体的方法
    • JP2009293800A
    • 2009-12-17
    • JP2009130430
    • 2009-05-29
    • Siemens Agシーメンス アクチエンゲゼルシヤフトSiemens Aktiengesellschaft
    • DENK JOACHIMKOEPKEN HANS-GEORGSTOIBER DIETMARWEDEL BERND
    • F16C32/04
    • F16C32/0448F16C32/0457
    • PROBLEM TO BE SOLVED: To provide a simple measuring method for positioning a body capable of using a compactly configured and easily mountable magnetic bearing arrangement. SOLUTION: In the magnetic bearing arrangement, support coils are connected in series and can be fed with a current. By coupling a point 18 connecting the two support coils 14, 14' to a voltage source, the support coils can be used as actuating elements and, by feeding the support coils 14, 14' with voltage pulses, the inductance of the support coils 14, 14' can be inferred which is an indirect indication of the position of the body 10 to be supported. This enables position control. Using the same support coils 14, 14', a stably controlled load-bearing capacity can thus be produced and at the same time a position sensor can be replaced. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用于定位能够使用紧凑构造且易于安装的磁轴承装置的主体的简单测量方法。

      解决方案:在磁轴承装置中,支撑线圈串联连接,并可馈入电流。 通过将连接两个支撑线圈14,14'的点18耦合到电压源,支撑线圈可以用作致动元件,并且通过将支撑线圈14,14'馈送到电压脉冲,支撑线圈14的电感 ,14'可以被推断为哪个是待被支撑的身体10的位置的间接指示。 这使位置控制。 因此,通过使用相同的支撑线圈14,14',可以产生稳定的受力承载能力,同时可以更换位置传感器。 版权所有(C)2010,JPO&INPIT

    • 4. 发明专利
    • Arrangement comprising two elements which can be rotatably displaced in respect of one another
    • DLL时钟信号发生电路,能够纠正失真的占空比
    • JP2009147944A
    • 2009-07-02
    • JP2008319666
    • 2008-12-16
    • Siemens Agシーメンス アクチエンゲゼルシヤフトSiemens Aktiengesellschaft
    • DENK JOACHIMSCHIERLING HUBERT
    • H04B10/00
    • H04B10/801G02B6/3604
    • PROBLEM TO BE SOLVED: To reduce manufacturing costs and to save energy during operation by enabling data to be exchanged between a rotatable element and a further element, the rotating element being rotated by way of a hollow shaft and, in that case, enabling data to be easily transmitted in place of a scheme for giving light to a point-shaped receiver by way of a perfect ring, like the prior arts. SOLUTION: On the basis of the present invention, light (28) is made incident into torus halves, namely, is made incident by way of an opening (24) in one torus half (10) and is reflected on torus inner walls so often until it exits at the opening (24) of another torus half (12). In a first embodiment, a torus-shaped optical conductor is divided into two torus halves. In another embodiment, hollow tori are used, which are filled with a fluid, namely either with a liquid or with air. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了降低制造成本并通过使数据在可旋转元件和另一元件之间交换而节省能量,旋转元件通过空心轴旋转,并且在这种情况下, 如现有技术那样,能够容易地发送数据以代替通过完美环对点状接收器发光的方案。 解决方案:在本发明的基础上,光(28)入射到二极环,即通过在一个环面(10)内的开口(24)入射并被反射在环面内 壁经常直到其在另一个环面半部(12)的开口(24)处离开。 在第一实施例中,环形光导体被分成两个环形半导体。 在另一个实施例中,使用空心圆环,其填充有流体,即用液体或空气填充。 版权所有(C)2009,JPO&INPIT
    • 9. 发明专利
    • СПОСОБ ДЛЯ КОНТРОЛЯ УСТРОЙСТВА МАГНИТНОГО ПОДШИПНИКА
    • RU2714354C1
    • 2020-02-14
    • RU2019100035
    • 2019-01-09
    • SIEMENS AG
    • DENK JOACHIMKOEHLER BERT-UWESTOIBER DIETMARVIERING FRANK
    • F16C32/04G01B7/14G01D5/20H02K7/09
    • Группаизобретенийотноситсяк магнитнымподшипникам. Способдляконтроляустройствамагнитногоподшипникадляэлектрическойвращающейсямашины, содержащегопервуюпарупосуществудиаметральнопротиволежащихдатчикови вторуюпарупосуществудиаметральнопротиволежащихдатчиков, которыерасположенысосмещениемотносительнопервойпарыдатчиковнаугол (α), заключаетсяв следующем. Измеряютрасстояниеотдатчиковдотелавращения, котороерасположенов пределахпардатчиков. Определяютпервоесреднеерасстояниеиззначенийрасстоянияпервойпарыдатчикови второесреднеерасстояниеиззначенийрасстояниявторойпарыдатчиков. Регистрируютпервоеизменениепервогосреднегорасстоянияи второеизменениевторогосреднегорасстояния. Изменениясреднихрасстоянийсравнивают, приэтом, кактолькоразностьсреднихизмененийрасстоянияпревышаетпредельноезначение, выдаютпредупредительныйсигнал. Такжезаявленыблокуправленияи сенсорноеутсройстводляосуществленияспособа, устройствомагнитногоподшипникаи электрическаявращающаясямашинас устройсвтомподшипника. Техническийрезультатзаключаетсяв усовершенствованииконтроляопределенияположениятелавращенияв активноммагнитномподшипнике. 5 н. и 8 з.п. ф-лы, 4 ил.