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    • 11. 发明申请
    • Optical rotating data transmission device having an unobstructed inner diameter
    • 具有无阻碍内径的光学旋转数据传输装置
    • US20050063709A1
    • 2005-03-24
    • US10918321
    • 2004-08-13
    • Hans PoiselMarkus StarkHarry SchillingMatthias RankGunther Schoppel
    • Hans PoiselMarkus StarkHarry SchillingMatthias RankGunther Schoppel
    • G02B5/18G02B6/35G02B6/36H04B10/00
    • G02B6/3604G02B5/1857
    • In a device of the invention for transmitting modulated optical signals between a first unit and a second unit, the first unit is supported to be rotatable relative to the second unit. The device comprises a light guide along a circular track on the first unit, a first light coupler for coupling light into or out of the light guide, and a second light coupler for coupling light into or out of the light guide and disposed on the second unit and movable relative to the means for guiding light. For an achievement of a high quality of transmission, a regulating means for the position of the coupling elements relative to the light guide, or a hydrodynamic bearing means is provided. An optical light-guiding fiber of the invention for conveying optical signals from an optical transmitter to an optical receiver has a light exit face and means for deflecting light emerging from the fiber in a direction that deviates from a longitudinal axis of the fiber.
    • 在本发明的用于在第一单元和第二单元之间传输调制光信号的装置中,第一单元被支撑为可相对于第二单元旋转。 该装置包括沿着第一单元上的圆形轨道的光导,用于将光耦合到光导中或从光导中引出的第一光耦合器,以及用于将光耦合到光导中或从光导中排出的第二光耦合器, 单元和相对于用于引导光的装置可移动。 为了实现高质量的传动,提供了一种用于联接元件相对于光导的位置的调节装置或流体动力轴承装置。 本发明的用于将光信号从光发送器传送到光接收器的光引导光纤具有光出射面和用于使偏离光纤的纵向轴线的方向偏转从光纤出射的光的装置。
    • 12. 发明授权
    • Device for transmitting optical signals between two dynamically decoupled systems
    • 用于在两个动态解耦系统之间传输光信号的装置
    • US06278815B1
    • 2001-08-21
    • US09446953
    • 2000-03-13
    • Hans Poisel
    • Hans Poisel
    • G02B626
    • G02F1/011G02F2201/302
    • What is described here is a device for optical signal transmission between two dynamically decoupled systems, preferably two systems moving relative to each other, comprising at least one emitter means including a first source of light, which is mounted on said first system, as well as a receiver means including at least one fiber optical wave guide, which is mounted on said second system and along which said light source is moved and into which the light of said light source can be injected. The invention is characterized by the provisions that a photo refractive layer is applied at least on that surface of said fiber optical wave guide which is immediately opposite to said first light source, and that at least one source of coherent light is mounted on said first system, which emits light which dynamically imprints an optical grating into said photo refractive layer due to beam superimposition at the site where the light is injected, which grating presents refractive properties for the light of said first source of light so that the light can be injected into said optical fiber
    • 这里描述的是用于在两个动态解耦系统之间的光信号传输的装置,优选两个相对于彼此移动的系统,包括安装在所述第一系统上的至少一个包括第一光源的发射器​​装置,以及 接收机装置,包括至少一个光纤波导,其安装在所述第二系统上,所述光源沿着所述第二光学系统移动,并且所述光源的光可以被注入。 本发明的特征在于,至少在与所述第一光源相对的所述光纤波导的表面上施加光折射层,并且至少一个相干光源安装在所述第一系统上 ,其发射由于光注入的位置处的光束叠加而将光栅动态地印记到所述光折射层中的光,该光栅对于所述第一光源的光呈现折射性,使得光可以被注入 所述光纤
    • 16. 发明授权
    • Process and an apparatus for correcting the measuring signals of a fiber
optic gyro
    • 用于校正光纤陀螺仪的测量信号的方法和装置
    • US5430544A
    • 1995-07-04
    • US184103
    • 1994-01-21
    • Hans PoiselGert Trommer
    • Hans PoiselGert Trommer
    • G01C19/72G01P9/00
    • G01C19/725
    • In the case of a fiber optic gyro having a 4.times.4-coupler, the two arms of the coupler which are not connected with the fiber coil are each connected with a monitoring detector. From the output signals of these monitoring detectors, in the case of a desired wavelength, a reference or desired quotient is formed. During the operation of the fiber optic gyro, an actual quotient is in each case formed from these output signals and is compared with the stored desired quotient. The wavelength of a semiconductor laser is controlled by controlling the operating current and/or the temperature of the light source (L) such that the two quotients are identical. The measuring signals will then be error free.
    • 在具有4×4耦合器的光纤陀螺的情况下,耦合器的不与光纤线圈连接的两个臂各自与监视检测器连接。 从这些监视检测器的输出信号,在所需波长的情况下,形成参考或期望的商。 在光纤陀螺仪的操作期间,每种情况下,由这些输出信号形成实际商,并将其与所存储的商品进行比较。 通过控制光源(L)的工作电流和/或温度使两个商相同来控制半导体激光器的波长。 测量信号将无错误。
    • 20. 发明申请
    • Device for determining the position of a signal source
    • 用于确定信号源的位置的装置
    • US20150153168A1
    • 2015-06-04
    • US14446571
    • 2014-07-30
    • Hans PoiselOlaf ZiemannAlexander BachmannMichael Luber
    • Hans PoiselOlaf ZiemannAlexander BachmannMichael Luber
    • G01B21/16
    • G01B21/16G01D5/247
    • The invention relates to a device for determining the position of a signal source configured to emit signals modulated by a modulation frequency, comprising: a conductor arranged in such a way that it receives the modulated signals at various positions along the conductor and configured to conduct the modulated signal, respectively in opposite directions, to a first conductor end and to a second conductor end when a modulated signal is received; a detector configured to acquire the modulated signal at the first conductor end and at the second conductor end; and a determination apparatus configured to: determine a phase difference between the modulated signal acquired at the first conductor end and the modulated signal acquired at the second conductor end, and determine the position of the signal source in relation to the conductor on the basis of the phase difference.
    • 本发明涉及一种用于确定被配置为发射由调制频率调制的信号的信号源的位置的装置,包括:导体,其布置成使得其沿着导体的各个位置接收调制信号, 当接收到调制信号时,分别在相反方向上的第一导体端和第二导体端的调制信号; 检测器,被配置为在第一导体端和第二导体端获取调制信号; 以及确定装置,被配置为:确定在第一导体端获取的调制信号与在第二导体端获得的调制信号之间的相位差,并基于该导体确定信号源相对于导体的位置 相位差。