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    • 1. 发明申请
    • BRIDLE AND HALTER
    • BRIDLE和HALTER
    • WO2008004938A1
    • 2008-01-10
    • PCT/SE2007/000630
    • 2007-06-28
    • EQUALITY LINE ABWILHELMSSON, Tomas
    • WILHELMSSON, Tomas
    • B68B1/04B68B1/02
    • B68B1/02B68B1/04
    • Bridle or the like which comprises a crownpiece (2), two cheekpieces (8, 10), and a browband (1). The browband (1) and crownpiece (2) form an encircling crown (3), and the cheekpieces (8, 10) are connected to the crown so that an imagined extension of the longitudinal axis of each cheekpiece in the direction towards the crown crosses an encircling centre line on the crown in a transitional part between the browband (1) and the crownpiece (2) in such a direction that the tangent of the centre line in each crossing point in a direction towards the crownpiece forms an acute angle α with the extension and that the tangent of the centre line in each crossing point in the direction towards the browband (1 ) forms an obtuse angle β. Traction forces from the bit will be taken up by the crownpiece (2) of the crown (3). The crown forms a continuous encircling track with an upper (4) and a lower (5) limiting edge. The lower limiting edge (5) has a circumference that is greater than the circumference of the upper limiting edge (4).
    • 桥梁等,其包括冠状物(2),两个颊部(8,10)和眉带(1)。 眉毛带(1)和冠状物(2)形成环绕冠(3),并且颊部(8,10)连接到冠部,使得每个颊部在朝向冠部的方向上的纵向轴线的想象延伸越过 在眉毛带(1)和冠状物(2)之间的过渡部分中的冠部上的环绕中心线沿着朝向冠状物的方向的每个交叉点中的中心线的切线形成锐角α的方向, 延伸部分,并且在朝向眉带(1)的方向上的每个交叉点中心线的切线形成钝角β。 来自该位的牵引力将被冠(3)的冠状物(2)占据。 冠部形成具有上部(4)和下部(5)限制边缘的连续环绕轨道。 下限界限(5)具有大于上限制边缘(4)周长的圆周。
    • 2. 发明申请
    • ANTENNA SYSTEM AND METHOD FOR CHANGING A RESULTING POLARISATION OF AN ANTENNA BEAM
    • 天线系统和方法改变天线的结果极化
    • WO2006110026A1
    • 2006-10-19
    • PCT/NL2005/000281
    • 2005-04-14
    • STICHTING ASTRONWILHELMSSON, Tomas, Carl
    • WILHELMSSON, Tomas, Carl
    • H04B7/10H01Q21/24H01Q3/26H01Q3/38
    • H01Q3/36H01Q3/38H01Q21/245
    • Antenna system (1) and method for changing a resulting polarisation of an antenna beam generated by an antenna system (1) of the phased array type including a first antenna group (2) of at least two first antenna units (6.1-6.3) connected to a first time or phase shifting circuit (9), for creating a first sub-beam with a first polarisation a second antenna group (4) of at least two second antenna units (8) connected to a second time or phase shifting circuit (11), for creating a second sub-beam with a second polarisation which second polarisation is different from the first polarisation, which first and second polarisation are non-linear, and which first and second sub-beam combine into a third beam with a third polarisation, the orientation of the third polarisation being at least partially dependent on the phase of the first sub-beam relative to the second sub-beam, and a control unit (16) which, for controlling both a direction of the first and/or second sub-beam and the orientation of the third polarisation, is connected to the first and second time or phase shifting circuit (9, 11).
    • 天线系统(1)和用于改变包括连接在至少两个第一天线单元(6.1-6.3)的第一天线组(2))的相控阵列型天线系统(1)产生的天线波束产生的极化的方法, 用于产生具有第一极化的第一子光束的第一时间或相移电路(9),连接到第二时间或相移电路的至少两个第二天线单元(8)的第二天线组(4) 用于产生具有第二极化的第二子束的第二子束,其中第二偏振与第一偏振不同,该第一偏振与第一偏振不同,该第一和第二偏振是非线性的,以及哪个第一和第二子光束组合成具有第三偏振光的第三光束 偏振,第三偏振的取向至少部分取决于第一子光束相对于第二子光束的相位;以及控制单元(16),其用于控制​​第一和第二子光束的第一和/ 第二子光束和方向 连接到第一和第二时间或移相电路(9,11)。
    • 3. 发明申请
    • LEVEL MEASUREMENTS IN METALLURGICAL VESSELS
    • 冶金船舶水平测量
    • WO2013039446A1
    • 2013-03-21
    • PCT/SE2012/050956
    • 2012-09-11
    • AGELLIS GROUP ABWILHELMSSON, Tomas
    • WILHELMSSON, Tomas
    • G01F23/26B22D2/00F27D21/00
    • G01F23/284B22D2/003B22D46/00F27D21/0028G01F23/26
    • The vertical filling level of electrically conductive material in a cavity (3) of a metallurgical vessel is measured by a system comprising a transmitting conductor (5) for generating an electromagnetic field when connected to an alternating power source, and a receiving conductor (6) which is arranged to sense the electromagnetic field for generation of an output signal. The transmitting and receiving conductors (5, 6) are arranged inside a metal casing of the vessel to co-extend with a mutual spacing to define a spacing area (7) that faces the cavity (3) and extends along the periphery of the cavity (3) in an essentially closed loop. The mutual spacing is selected such that changes in the output signal is dominated by changes to the electromagnetic field caused by local changes in the amount of the conductive material adjacent to the spacing area (7). At least part of the spacing area (7) defines a vertical measurement region in which the spacing area (7) is slanted along the periphery so as to diverge from the horizontal and vertical directions of the vessel. Thereby, the spacing area (7) may be adapted to any shape of the cavity (3) so as to design the system with any desired transfer function, e.g. linear without turning points outside the extent of the vertical measurement region.
    • 冶金容器的空腔(3)中的导电材料的垂直填充水平由包括用于在连接到交流电源时产生电磁场的发射导体(5)的系统测量,以及接收导体(6) 其布置成感测用于产生输出信号的电磁场。 发射和接收导体(5,6)布置在容器的金属壳体的内部,以相互间隔共同延伸,以限定面向空腔(3)的间隔区域(7)并且沿腔体的周边延伸 (3)基本闭合。 选择相互间隔,使得输出信号的变化由与邻近间隔区域(7)的导电材料的量的局部变化引起的电磁场的变化支配。 间隔区域(7)的至少一部分限定垂直测量区域,其中间隔区域(7)沿着周边倾斜以便从容器的水平和垂直方向发散。 因此,间隔区域(7)可以适于空腔(3)的任何形状,以便设计具有任何期望的传递函数的系统,例如, 线性的,不具有垂直测量区域范围之外的转折点。