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    • 2. 发明申请
    • TRANSVERSAL FLOW MACHINE WITH AN IMPROVED ROTOR
    • 具有改进的转子横向磁通
    • WO2014076064A2
    • 2014-05-22
    • PCT/EP2013073590
    • 2013-11-12
    • BOSCH GMBH ROBERT
    • BRAUN MARTINREUTLINGER KURT
    • H02K21/24
    • H02K21/24H02K1/2793H02K2201/12H02K2213/03
    • The invention relates to a transversal flow machine (2) comprising a rotor element (4); said rotor element comprises a rotational axis; said rotor element comprises several magnetic elements (8) comprising magnetic poles (10a, b), said magnetic elements being distributed over the periphery of the rotor element; said magnetic poles of the magnetic elements are aligned in the peripheral direction; said magnetic elements (8) with alternating magnetic pole orientation are arranged such that respectively adjacent magnetic poles of two adjacent magnetic elements have identical polarity; a spacer (18, 18a, 18b) is arranged between two adjacent magnetic poles with identical polarity; and two stationary elements (6), the rotor element (4) is arranged between the two stationary elements (6) and at a defined distance therefrom; said stationary elements (6) being designed to ensure the magnetic circuit of a magnetic element (8) closes; the invention being characterised in that the spacers (18, a8a, 18b) are magnetically conductive.
    • 包括转子元件的横向通量机(2)(4); 其中,所述转子元件包括旋转事项; 其中,所述转子构件具有多个磁铁元件(8)包括磁极(10A,B),所述磁性元件被布置成分布在转子元件的圆周; 其中,所述磁性元件的磁极被定向在圆周方向上; 并且其中,所述磁性元件(8)被布置成具有交替Magnetpolorientierung,使得两个相邻的磁部件的相邻磁极形成polgleich; 其中两个相邻的磁极各polgleichen间隔元件(18,18A,18B)之间设置; 和两个定子元件(6),所述两个定子元件(6)和转子之间元件(4)通过这些间隔开的定义; 其中,所述定子元件(6)被布置成提供一个磁性元件(8)的磁回路的闭合; 其特征在于,所述间隔元件(18,18A,18B)被形成导磁。
    • 3. 发明申请
    • DETERMINATION OF THE ROTOR POSITION OF A SYNCHRONOUS MACHINE
    • 确定同步电机的转子位置
    • WO2012175243A3
    • 2013-08-01
    • PCT/EP2012057750
    • 2012-04-27
    • BOSCH GMBH ROBERTBRAUN MARTIN
    • BRAUN MARTIN
    • H02P6/18H02P21/00
    • H02P6/185H02P21/24H02P25/024H02P25/06
    • During the determination of the rotor position of a synchronous machine, the following steps are carried out: subjecting the synchronous machine (12) to a first voltage pulse; measuring a first measured stator current at a first point in time t2; calculating a first calculated stator current im ph# using a machine model (20) that comprises a model (38) of the synchronous machine (12); calculating a first differential current space vector Delta im ph# on the basis of the first measured stator current and the first calculated stator current; measuring a second measured stator current im ph at a second point in time t5; calculating a second calculated stator current (im ph#) using the machine model (20); calculating a second differential current space vector Deltaim ph# on the basis of the second measured stator current and the second calculated stator current; determining the rotor position on the basis of the first differential current space vector and the second differential current space vector. The machine model comprises a model of a device mounted upstream of the synchronous machine (12).
    • 在确定同步电机的转子位置(12)执行以下步骤:使具有第一电压脉冲的同步机(12); 测量在第一时间t 2时测量的第一定子电流; #与机器模型(20)包括所述同步机的模型(38)(12)包括:计算在所述pH值的第一计算出的定子电流; 计算在从所述第一定子和所述第一计算的定子电流测量的pH值#第一差动电流空间矢量增量; 测量在pH值在第二时间t5测量的第二定子电流; 计算第二计算定子电流(在pH值#)到机器模型(20); 计算第二差动电流空间矢量Deltaim pH值从第二定子和计算出的第二定子电流测量#; 确定从第一差分电流空间矢量和第二差动电流空间矢量的转子位置。 机器模型从而包括所述同步电机(12)的上游设备的模型。