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    • 1. 发明授权
    • Method for fabricating a stator for a permanent magnet machine and stator thereof
    • 永久磁铁定子及其定子的制造方法
    • US08878415B2
    • 2014-11-04
    • US13379136
    • 2010-06-18
    • Alex Van Den BosschePeter Sergeant
    • Alex Van Den BosschePeter Sergeant
    • H02K1/06H02K15/02H02K1/14H02K21/24
    • H02K1/14H02K15/022H02K21/24Y02B10/30Y02E10/725Y10T29/49009Y10T29/49078
    • Permanent magnet synchronous machines (100) are described having good efficiency, as well as corresponding methods for making a stator (110) or stator teeth (114) for such machines. A method for fabricating a stator (110) for an axial flux permanent magnet synchronous machine is for example described comprising obtaining several sets of substantially identical laminates (302), and stacking the sets of substantially identical laminates (302) so that a subsequent laminate has a part overlapping (304) the previous laminate and a part not overlapping (306) the previous laminate. Alternatively, a method of manufacturing a stator (110) is described wherein the method comprises obtaining a set of laminates (302) connected to each other with a thin strip (402) of material and creating a stack by folding the laminates (302) along the thin strip (402) of material. The stator teeth (114) can furthermore be fabricated such that the air gap (602) that is formed between the stator tooth and the permanent magnets changes along the radial direction.
    • 描述了具有良好效率的永磁同步电机(100)以及用于制造这种机器的定子(110)或定子齿(114)的相应方法。 例如,描述了一种用于制造用于轴向磁通永磁同步电机的定子(110)的方法,其包括获得几组基本上相同的层压板(302),并且堆叠基本上相同的层压板(302)的组,使得随后的层压板 与先前的层压体重叠(304)的部分和不重叠(306)先前层压体的部分。 或者,描述了一种制造定子(110)的方法,其中所述方法包括获得一组层叠体(302),其通过材料的薄带(402)彼此连接并通过沿着所述层叠体(302)折叠来形成堆叠 材料的薄条(402)。 此外可以制造定子齿(114),使得形成在定子齿和永磁体之间的气隙(602)沿径向方向变化。
    • 2. 发明授权
    • Method and device for the verification and identification of a measuring device
    • 用于验证和识别测量装置的方法和装置
    • US07268892B2
    • 2007-09-11
    • US10475812
    • 2002-04-24
    • Alex Van Den Bossche
    • Alex Van Den Bossche
    • G01B11/24
    • G01B11/002
    • The invention concerns a method and a reference object for the verification and identification of a measuring device for measuring the spatial position of one or several points situated in the measuring volume (9) of the measuring device, whereby the measuring device is calibrated, according to which calibration a mathematical model is calculated which makes it possible to determine the spatial position of a point perceived by the measuring device, whereby a reference object (1) with predetermined dimensions is provided in the measuring volume (9), and, next, the position of several points of this reference object (1) is determined by means of the measuring device, whereby the mutual situation of the thus determined position of the points of the reference object (1) is calculated and compared to the actual dimensions of the reference object (1) and, on the basis of the thus established deviations between the measured mutual position of the points of the reference object (1) and the actual dimensions of the reference object (1), said model is adjusted.
    • 本发明涉及一种用于验证和识别用于测量位于测量装置的测量体积(9)中的一个或多个点的空间位置的测量装置的方法和参考对象,由此测量装置根据 计算该校正数学模型,使得可以确定由测量装置感知的点的空间位置,由此在测量体积(9)中提供具有预定尺寸的参考对象(1),接下来, 通过测量装置确定该参考对象(1)的几个点的位置,由此计算参考对象(1)的点的如此确定的位置的相互情况并将其与参考的实际尺寸进行比较 并且基于所测量的参考物体的点的相互位置之间的这样确定的偏差(1, )和参考对象(1)的实际尺寸,所述模型被调整。
    • 3. 发明申请
    • Method and device for enlarging the measurement volume of an optical measurement system
    • 用于扩大光学测量系统的测量体积的方法和装置
    • US20050062983A1
    • 2005-03-24
    • US10496576
    • 2002-11-22
    • Alex Van Den Bossche
    • Alex Van Den Bossche
    • G01B11/00G01B11/03G01C11/02G01B11/24
    • G01B11/002G01C11/02
    • The invention concerns a method for enlarging the measuring volume of an optical measuring system and, on such a measuring system, at least one camera (2,3,4) to determine the position of at least one object (1) in relation to a base co-ordinate system, whereby, in order to measure the position of a point which is not situated within the field of vision of said camera (2,3,4), this camera (2,3,4) is moved in relation to a reference (7) having a fixed position in relation to said base co-ordinate system towards a measuring position, so that said point is situated within the field of vision of the camera (2,3,4), whereby the movement of the camera (2,3,4) in relation to said reference (7) is determined and the position of said point is perceived with said camera (2,3,4) in order to determine its position in relation to said base co-ordinate system, taking into account the movement of the camera (2,3,4).
    • 本发明涉及一种用于扩大光学测量系统的测量体积的方法,并且在这种测量系统上,至少一个照相机(2,3,4)用于确定至少一个物体(1)相对于 基座坐标系,其中为了测量不位于所述摄像机(2,3,4)的视野范围内的点的位置,该相机(2,3,4)相互移动 涉及到相对于所述基座坐标系统相对于测量位置具有固定位置的参考(7),使得所述点位于相机(2,3,4)的视野范围内,由此, 确定相对于所述参考(7)的相机(2,3,4),并且利用所述相机(2,3,4)感知所述点的位置,以便确定其相对于所述基准共享的位置, 考虑到摄像机的运动(2,3,4)。
    • 4. 发明授权
    • Device and method for determining the position of a point
    • 用于确定点位置的装置和方法
    • US06279246B1
    • 2001-08-28
    • US09403386
    • 1999-10-21
    • Alex van den Bossche
    • Alex van den Bossche
    • G01B1103
    • G01B11/24G01B11/00G01B11/002G01C15/00G01S5/163
    • The invention concerns a method for determining the position of a point, in which use is made of a holder (1) with a measuring point (6) and at least three reference points (2, 3, 4), where said measuring point (6) is placed against the point which it is wished to measure, the position of said reference points (2, 3, 4) is measured and the position of said point is calculated, in which use is made of a holder (1) on which the position of said measuring point (6) is determined by holding the latter at a fixed point, rotating the holder (1) in various relative positions, then measuring the positions of the reference points (2, 3, 4) for at least two different positions of the holder (1), and calculating the relative position of the measuring point (6) with respect to the reference points (2, 3, 4).
    • 本发明涉及一种用于确定点的位置的方法,其中使用具有测量点(6)的保持器(1)和至少三个参考点(2,3,4),其中所述测量点 6)被放置在其希望测量的点上,测量所述参考点(2,3,4)的位置,并且计算所述点的位置,其中使用保持器(1) 所述测量点(6)的位置通过将所述测量点(6)的位置保持在固定点来确定,使所述保持器(1)在各种相对位置旋转,然后至少测量所述参考点(2,3,4)的位置 保持器(1)的两个不同位置,并且计算测量点(6)相对于参考点(2,3,4)的相对位置。
    • 5. 发明申请
    • COMBINED HEAT POWER SYSTEM
    • 组合式热力系统
    • US20100194111A1
    • 2010-08-05
    • US12668351
    • 2008-07-09
    • Alex Van Den BosscheBart Meersman
    • Alex Van Den BosscheBart Meersman
    • F01K27/02F01K25/06F01K25/08F24D1/00H02J3/38F01K17/02
    • F01K25/06F01K3/247F01K13/00F01K17/02F01K25/04F01K25/08F24H2240/02H02M5/4585H02M7/5388Y02E20/12Y02E20/14
    • A combined heat power system comprises a Rankine cycle, optionally an organic Rankine cycle, using a fluid both in gaseous phase and liquid phase. The Rankine cycle comprises —an evaporator for evaporating the fluid from liquid phase to gaseous phase, an expander for expanding the fluid in gaseous phase provided by the evaporator. The expander is suitable to transform energy from the expansion of the fluid in gaseous phase into mechanical energy, —a condenser for condensing the fluid from gaseous phase from the expander to liquid phase and —a liquid pump for pumping the fluid in liquid phase provided by the condenser to the evaporator. The system comprises a heat source providing exhaust gas. The exhaust gas provides thermal energy for evaporating the fluid from liquid phase to gaseous phase by the evaporator. The system further comprises a generator unit for converting mechanical energy from expander to electrical energy. The expander is a volumetric expander.
    • 组合的热力系统包括兰金循环,任选地是有机兰金循环,其使用在气相和液相中的流体。 兰金循环包括 - 用于将流体从液相蒸发到气相的蒸发器,用于使由蒸发器提供的气相中的流体膨胀的膨胀器。 膨胀机适用于将能量从气相中的流体的膨胀转变为机械能, - 用于将来自膨胀器的气相的流体冷凝至液相的冷凝器,以及用于泵送液相的液体的液体泵, 冷凝器到蒸发器。 该系统包括提供废气的热源。 排气提供热能,用于通过蒸发器将流体从液相蒸发到气相。 该系统还包括用于将来自膨胀器的机械能转换成电能的发电机单元。 膨胀机是容积膨胀机。
    • 6. 发明申请
    • METHOD AND DEVICE FOR ENLARGING THE MEASUREMENT VOLUME OF AN OPTICAL MEASUREMENT SYSTEM
    • 用于扩大光学测量系统的测量量的方法和装置
    • US20070291282A1
    • 2007-12-20
    • US11848463
    • 2007-08-31
    • Alex VAN DEN BOSSCHE
    • Alex VAN DEN BOSSCHE
    • G01B11/14
    • G01B11/002G01C11/02
    • A method is provided for enlarging the measuring volume of an optical measuring system and, on such a measuring system, at least one camera (2,3,4) to determine the position of at least one object (1) in relation to a base co-ordinate system, whereby, in order to measure the position of a point which is not situated within the field of vision of said camera (2,3,4), this camera (2,3,4) is moved in relation to a reference (7) having a fixed position in relation to said base co-ordinate system towards a measuring position, so that said point is situated within the field of vision of the camera (2,3,4), whereby the movement of the camera (2,3,4) in relation to said reference (7) is determined and the position of said point is perceived with said camera (2,3,4) in order to determine its position in relation to said base co-ordinate system, taking into account the movement of the camera (2,3,4).
    • 提供了一种用于扩大光学测量系统的测量体积的方法,并且在这种测量系统上,至少一个照相机(2,3,4)用于确定至少一个物体(1)相对于基座的位置 坐标系统,其中为了测量不位于所述摄像机(2,3,4)的视野范围内的点的位置,该照相机(2,3,4)相对于 具有相对于所述基座坐标系统朝向测量位置的固定位置的参考(7),使得所述点位于相机(2,3,4)的视场范围内,由此, 确定相对于所述参考(7)的相机(2,3,4),并且利用所述相机(2,3,4)感知所述点的位置,以便确定其相对于所述基准坐标的位置 系统,考虑到相机的移动(2,3,4)。
    • 7. 发明申请
    • Method for dynamic measuring the position and the orientation of a wheel
    • 用于动态测量车轮位置和方向的方法
    • US20050094135A1
    • 2005-05-05
    • US10503466
    • 2003-02-05
    • Alex Van Den Bossche
    • Alex Van Den Bossche
    • G01B11/00G01B11/26G01B11/275G01M17/04G01C1/00
    • G01B11/2755
    • The invention concerns a device and a method for measuring the position and/or orientation of a first element (3) with respect toga second element (2) of a vehicle, on which this first element (3) is mounted in a movable manner, with the aid of an optical measuring system with at least one camera unit (1), whereby at least three references (4,5,6), not laying on a strait line, are provided on one of these elements (3) such that these references (4,5,6), can be perceived by the camera unit (1). Said camera unit (1) is mounted fixed with respect to the other element (4) and the position of said references (4,5,6) is measured with said optical measuring system for successive positions and/or orientations of the element (3) on which these references (4,5,6) are provided.
    • 本发明涉及一种用于测量相对于车辆的第二元件(2)的第一元件(3)的位置和/或方位的装置和方法,在该第一元件(3)上以可移动的方式安装该第一元件(3) 借助于具有至少一个照相机单元(1)的光学测量系统,由此在这些元件(3)之一上提供不设置在海峡线上的至少三个参考(4,5,6),使得 这些参考文献(4,5,6)可以由相机单元(1)感知。 所述相机单元(1)相对于另一元件(4)固定安装,并且所述参考物(4,5,6)的位置用所述光学测量系统测量,用于元件(3)的连续位置和/或取向 )提供了这些参考文献(4,5,6)。
    • 8. 发明申请
    • AXIAL FLUX PERMANENT MAGNET MACHINE
    • 轴流永磁磁铁机
    • US20120104894A1
    • 2012-05-03
    • US13379136
    • 2010-06-18
    • Alex Van Den BosschePeter Sergeant
    • Alex Van Den BosschePeter Sergeant
    • H02K21/24H02K15/02
    • H02K1/14H02K15/022H02K21/24Y02B10/30Y02E10/725Y10T29/49009Y10T29/49078
    • Permanent magnet synchronous machines (100) are described having good efficiency, as well as corresponding methods for making a stator (110) or stator teeth (114) for such machines. A method for fabricating a stator (110) for an axial flux permanent magnet synchronous machine is for example described comprising obtaining several sets of substantially identical laminates (302), and stacking the sets of substantially identical laminates (302) so that a subsequent laminate has a part overlapping (304) the previous laminate and a part not overlapping (306) the previous laminate. Alternatively, a method of manufacturing a stator (110) is described wherein the method comprises obtaining a set of laminates (302) connected to each other with a thin strip (402) of material and creating a stack by folding the laminates (302) along the thin strip (402) of material. The stator teeth (114) can furthermore be fabricated such that the air gap (602) that is formed between the stator tooth and the permanent magnets changes along the radial direction.
    • 描述了具有良好效率的永磁同步电机(100)以及用于制造这种机器的定子(110)或定子齿(114)的相应方法。 例如,描述了一种用于制造用于轴向磁通永磁同步电机的定子(110)的方法,其包括获得几组基本上相同的层压板(302),并且堆叠基本上相同的层压板(302)的组,使得随后的层压板 与先前的层压体重叠(304)的部分和不重叠(306)先前层压体的部分。 或者,描述了一种制造定子(110)的方法,其中所述方法包括获得一组层叠体(302),其通过材料的薄带(402)彼此连接并通过沿着所述层叠体(302)折叠来形成堆叠 材料的薄条(402)。 此外可以制造定子齿(114),使得形成在定子齿和永磁体之间的气隙(602)沿径向方向变化。
    • 10. 发明授权
    • Method and device for enlarging the measurement volume of an optical measurement system
    • 用于扩大光学测量系统的测量体积的方法和装置
    • US07280226B2
    • 2007-10-09
    • US10496576
    • 2002-11-22
    • Alex Van Den Bossche
    • Alex Van Den Bossche
    • G01B11/24
    • G01B11/002G01C11/02
    • The invention concerns a method for enlarging the measuring volume of an optical measuring system and, on such a measuring system, at least one camera (2, 3, 4) to determine the position of at least one object (1) in relation to a base co-ordinate system, whereby, in order to measure the position of a point which is not situated within the field of vision of said camera (2, 3, 4), this camera (2, 3, 4) is moved in relation to a reference (7) having a fixed position in relation to said base co-ordinate system towards a measuring position, so that said point is situated within the field of vision of the camera (2, 3, 4), whereby the movement of the camera (2, 3, 4) in relation to said reference (7) is determined and the position of said point is perceived with said camera (2, 3, 4) in order to determine its position in relation to said base co-ordinate system, taking into account the movement of the camera (2, 3, 4).
    • 本发明涉及一种用于扩大光学测量系统的测量体积的方法,并且在这种测量系统上,至少一个照相机(2,3,4)确定至少一个物体(1)相对于 基座坐标系,由此,为了测量不位于所述相机(2,3,4)的视野范围内的点的位置,该相机(2,3,4)相互移动 涉及到相对于所述基座坐标系统相对于测量位置具有固定位置的参考(7),使得所述点位于相机(2,3,4)的视场范围内,由此, 确定相对于所述参考(7)的摄像机(2,3,4),并且利用所述摄像机(2,3,4)感知所述点的位置,以便确定其相对于所述基本共享的位置, 考虑到相机的移动(2,3,4)的纵坐标系。