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    • 4. 发明申请
    • High-resolution fiber laser sensor
    • US20060013534A1
    • 2006-01-19
    • US10512574
    • 2003-04-29
    • Klaus BohnertKarim HaroudAndreas FrankHubert Brandle
    • Klaus BohnertKarim HaroudAndreas FrankHubert Brandle
    • G02B6/34
    • H01S3/0675G01D5/344G01L1/246G01L9/0079G01L11/025H01S3/06712H01S3/08031H01S3/1053
    • A high-resolution fiber laser sensor for measuring a quantity to be measured M has a pumping light source (2), a fiber laser (1) and a detection/evaluating unit (3). The fiber laser (1) has: a birefringent first end reflector (11), a second end reflector (12), a laser-amplifying fiber (13), a sensor fiber (14) and a means for mode coupling (15). The laser-amplifying fiber (13), the sensor fiber (14) and the means for mode coupling (15) are arranged between the end reflectors (11, 12). In the fiber laser (1), light is capable of propagating in two optical states (x, y; LP′01, LP′11) which are orthogonal to one another due to their polarization and/or their transversal space structure. The orthogonal optical states (x, y; LP′01, LP′11) can be coupled to one another by the means for mode coupling (15). In the fiber laser (1), a number of longitudinal modes (LMxp, LMxp+1 . . . , LMyq, LMyq+1 . . . ; LM01p, LM01p+1 . . . , LM11q, LM11q+1 . . . ) are capable of oscillating in each of the two optical states (x, y; LP′01, LP′11). In the sensor fiber (14) a change in the birefringence for the two orthogonal optical states (x, y; LP′01, LP′11) can be achieved by interaction of the quantity to be measured (M) with the sensor fiber (14). The change in the birefringence results in a change in the beat frequencies in the laser emission. Due to the fact that the first end reflector (11) is detuned with respect to the second end reflector (12), it is possible to detect individual polarization mode beat signals instead of one beat signal which consists of a number of degenerated PMB signals and is, therefore, broadened. A high sensor resolution is achieved.
    • 6. 发明申请
    • Temperature-stabilized sensor coil and current sensor
    • 温度稳定的传感器线圈和电流传感器
    • US20050088662A1
    • 2005-04-28
    • US10922944
    • 2004-08-23
    • Klaus BohnertPhilippe GabusHubert Brandle
    • Klaus BohnertPhilippe GabusHubert Brandle
    • G01R15/24G01R33/032G01B9/02
    • G01R15/246G01R33/032
    • The fiber-optic sensor head (2) for a current or magnetic field sensor comprises an optical fiber which contains a magnetooptically active sensor fiber (3) and at least one polarization-maintaining supply fiber (5), which are optically connected, with the sensor fiber (3) having its fiber protective sheath removed. The sensor head (2) furthermore contains a capillary (6), in which at least the sensor fiber (3) is arranged. Furthermore, the sensor head (2) can be bent in the area of the sensor fiber (3), and a friction reducing means (7) is provided in the capillary (6), in order to reduce the friction between the sensor fiber (3) and the capillary (6). The friction reducing means (7) is advantageously an oil or a dry lubricating means (7). The capillary (6) is advantageously encased by a capillary casing (8). The sensor (2) allows very largely temperature-dependent measurements, is easy to install and allows measurements on large cross-section conductors.
    • 用于电流或磁场传感器的光纤传感器头(2)包括光纤,该光纤包含磁光有源传感器光纤(3)和至少一个光学连接的偏振保持光纤(5) 传感器光纤(3),其光纤保护套被去除。 传感器头(2)还包含毛细管(6),其中布置有至少传感器光纤(3)。 此外,传感器头(2)可以在传感器光纤(3)的区域中弯曲,并且在毛细管(6)中设置有摩擦减小装置(7),以便减少传感器光纤( 3)和毛细管(6)。 减摩装置(7)有利地是油或干式润滑装置(7)。 毛细管(6)有利地由毛细管壳体(8)包围。 传感器(2)允许很大程度上依赖于温度的测量,易于安装并允许在大横截面导体上进行测量。
    • 7. 发明授权
    • Fiber-optic voltage sensor for outdoor high-voltage installations
    • 户外高压安装用光纤电压传感器
    • US6140810A
    • 2000-10-31
    • US165648
    • 1998-10-02
    • Klaus BohnertHubert BrandlePhilippe GabusJadran KostovicJiri Talir
    • Klaus BohnertHubert BrandlePhilippe GabusJadran KostovicJiri Talir
    • G01R15/24G01R29/12
    • G01R15/241
    • The subject matter of the present invention is a fiber-optic outdoor high-voltage sensor 1. The known sensor principle is based on the fact that a piezoelectric quartz cylinder 3 wound with a glass fiber 4a effects a voltage-proportional fiber strain which is measured interferometrically. According to the invention, a 420 kV outdoor sensor 1 is created by virtue of the fact that several quartz cylinders 3 and electrically conductive spacing elements 5 are arranged in an alternating fashion one behind another and are sealed in a silicone-shielded 17 insulating tube 16 by means of polyurethane 18 or silicone 21. Dividing the high voltage between several spaced, E-field integrating sensor elements 2 permits simple field control and a very high measuring accuracy. In addition, the fiber-optic voltage sensor 1 is distinguished by a low outlay on insulation, compactness and low weight, and can easily be scaled to other voltage levels and be effectively combined with optical current sensors 38.
    • 本发明的主题是光纤室外高压传感器1.已知的传感器原理是基于以下事实:卷绕有玻璃纤维4a的压电石英气缸3实现测量的电压 - 比例纤维应变 干涉式 根据本发明,由于几个石英气缸3和导电间隔元件5以交替的方式彼此排列并被密封在硅树脂屏蔽17绝缘管16中的事实而产生420kV室外传感器1 通过聚氨酯18或硅树脂21.在几个间隔的E场积分传感器元件2之间划分高电压允许简单的场控制和非常高的测量精度。 此外,光纤电压传感器1的特征在于绝缘性,紧凑性和重量轻的低成本,并且可以容易地缩放到其他电压电平并且与光电流传感器38有效地组合。
    • 8. 发明授权
    • Fiber laser pressure sensor
    • 光纤激光压力传感器
    • US06630658B1
    • 2003-10-07
    • US09623048
    • 2000-11-20
    • Klaus BohnertHubert Brandle
    • Klaus BohnertHubert Brandle
    • G01J104
    • G02B6/022G01D5/35316G01D5/3538G01L11/025G02B6/02085G02B6/105
    • The invention relates to a frequency-coded fiber laser pressure sensor (1) which is especially suitable for measuring isotropic pressures in oil wells. The sensor principle provided for in the invention is based on the fact that in a fiber laser (2) doped with Er3+ a monomode or bimodal sensor fiber (5, 5a, 5b) is positioned whose pressure-related birefraction results in a frequency shift and beat frequencies between the orthogonal linear polarisation modes x, y or the spatial modes LP01 and LP11straight line. The beat frequencies are easily measured using a frequency counter (19). Temperature-related variations in birefraction are compensated in a differential arrangement of two sensor fiber segments (5a, 5b). Fiber-integrated Bragg gratings (4a, 4b) with low bandwidths (0.2 nm) are especially suitable as laser end reflectors. The pressure sensor (1) is characterized by a large measurement range (100 Mpa) and a high triggering capacity , (kPa), is readily multiplexed and can be housed in a very compact, light-weight and robust pressure-resistant housing (25).
    • 本发明涉及一种频率编码的光纤激光压力传感器(1),其特别适合于测量油井中的各向同性压力。 在本发明中提供的传感器原理基于以下事实:在掺杂有Er 3+的单模或双峰传感器光纤(5,5a,5b)的光纤激光器(2)中定位其压力相关双折射结果 正交线性偏振模x,y或空间模式LP01和LP11 <直线之间的频移和拍频。 使用频率计数器(19)容易地测量拍频。 温度相关的双折射变化在两个传感器光纤段(5a,5b)的差分布置中被补偿。 具有低带宽(0.2nm)的光纤集成布拉格光栅(4a,4b)特别适用于激光端反射器。 压力传感器(1)的特征在于测量范围大(100Mpa)和高触发能力(kPa)容易复用,并且可以容纳在非常紧凑,重量轻且耐用的耐压外壳(25 )。
    • 10. 发明授权
    • Magneto-optic current sensor having a mechanically stress-free
.lambda./4 element
    • 具有机械无应力的λ/ 4元件的磁光电流传感器
    • US5953121A
    • 1999-09-14
    • US986191
    • 1997-12-05
    • Klaus BohnertHubert BrandleTone Schanke
    • Klaus BohnertHubert BrandleTone Schanke
    • G01R15/24G01B9/02
    • G01R15/246
    • Without special measures, a fiber-optic current sensor coil (11) and fiber-optic .lambda./4 time delay elements (9, 9'), which are connected in series with the current sensor coil (11), are temperature-dependent with respect to a relative phase lag of light passing through. In order to avoid a temperature correction or temperature compensation, the current sensor coils (11) and, if appropriate, also the .lambda./4 time delay elements (9, 9') are annealed, so that virtually no mechanical stresses remain in the optical fibers. The current sensor coil (11) is preferably mounted unrestrained in a capillary (20) filled with a protective gas. The capillary (20) is embedded in a gastight fashion in a potting compound (22) made from polyurethane, and is thus also mechanically protected.
    • 没有特殊措施,与电流传感器线圈(11)串联连接的光纤电流传感器线圈(11)和光纤λ/ 4时间延迟元件(9,9')与温度有关 尊重光通过的相对相位滞后。 为了避免温度校正或温度补偿,电流传感器线圈(11)和(如果适用的话)λ/ 4时间延迟元件(9,9')也被退火,使得实际上没有机械应力残留在光学 纤维。 电流传感器线圈(11)优选地安装在填充有保护气体的毛细管(20)中。 毛细管(20)以气密的方式嵌入由聚氨酯制成的灌封化合物(22)中,因此也被机械地保护。