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    • 2. 发明授权
    • Compression-tuned grating-based optical add/drop multiplexer
    • 压缩调谐光栅光分插复用器
    • US06633695B2
    • 2003-10-14
    • US09800918
    • 2001-03-06
    • Timothy J. BaileyMark R. FernaldAlan D. KerseyTrevor W. MacDougallMartin A. PutnamPaul E. Sanders
    • Timothy J. BaileyMark R. FernaldAlan D. KerseyTrevor W. MacDougallMartin A. PutnamPaul E. Sanders
    • G02B628
    • G02B6/2932G02B6/022G02B6/29322G02B6/29383G02B6/29395G02B6/29398H04J14/021
    • A compression-tuned fiber Bragg grating based reconfigurable wavelength add/drop module has a compression force assembly and an all-glass Bragg grating compression unit having gratings spaced along an axis of compression. The compression force assembly responds to a control electronics signal containing information about a selected wavelength of a channel to be added to or dropped from an optical traffic signal, for providing a compression force applied along the axis of compression. The compression unit responds to the optical traffic signal and the compression force, for providing an all-glass Bragg grating compression unit optical signal having the selected wavelength of the channel to be added to or dropped from the optical traffic signal. The compression unit optical signal may include either the traffic with an added reflected channel(s), or a dropped reflected channel(s). The compression unit is a “dogbone” structure having either a glass tube with an optical fiber fused therein, or a single large diameter waveguide having a core. The core of the optical fiber or waveguide has the gratings spaced therein. The axis of compression is parallel with the longitudinal axis of the dogbone structure.
    • 基于压缩调谐光纤布拉格光栅的可重构波长加/减模块具有压缩组件和全玻璃布拉格光栅压缩单元,其具有沿压缩轴间隔开的光栅。 压缩力组件响应于控制电子信号,该控制电子信号包含关于要添加到或从光学交通信号中掉落的信道的选定波长的信息,以提供沿着压缩轴施加的压缩力。 压缩单元响应于光学交通信号和压缩力,用于提供具有要被添加到或从光学交通信号中掉落的信道的所选波长的全玻璃布拉格光栅压缩单元光信号。 压缩单元光信号可以包括具有附加反射信道的业务或者丢弃的反射信道。 压缩单元是具有熔合在其中的光纤的玻璃管或具有芯的单个大直径波导的“狗骨”结构。 光纤或波导的核心具有间隔开的光栅。 压缩轴线与狗骨架结构的纵向轴线平行
    • 6. 发明授权
    • Strain-isolated Bragg grating temperature sensor
    • 应变隔离布拉格光栅温度传感器
    • US06865194B1
    • 2005-03-08
    • US09455866
    • 1999-12-06
    • Christopher J. WrightMark R. FernaldTimothy J. BaileyJames M. SullivanJames R. DunphyMichael A. DavisAlan D. KerseyMartin A. PutnamRobert N. BrucatoPaul E. Sanders
    • Christopher J. WrightMark R. FernaldTimothy J. BaileyJames M. SullivanJames R. DunphyMichael A. DavisAlan D. KerseyMartin A. PutnamRobert N. BrucatoPaul E. Sanders
    • G01K11/32H01S3/30G01N21/00
    • G01K11/32
    • A strain-isolated bragg grating temperature sensor includes an optical sensing element 20,600 which includes an optical fiber 10 having at least one Bragg grating 12 disposed therein which is encased within and fused to at least a portion of a glass capillary tube 20 and/or a large diameter waveguide grating 600 having a core and a wide cladding and having the grating 12 disposed therein, which senses temperature changes but is substantially not sensitive to strains on the element caused by the fiber or other effects. Light 14 is incident on the grating 12 and light 16 is reflected at a reflection wavelength λ1. The shape of the sensing element 20,600 may be other geometries and/or more than one concentric tube may be used or more than one grating or pair of gratings may be used or more than one fiber or optical core may be used. At least a portion of the element 20,600 may be doped between a pair of gratings 150,152, disposed therein to form a temperature tunable laser or the grating 12 or gratings 150,152 may be constructed as a temperature tunable DFB laser disposed in the element. Also, the element may have an inner or outer tapered regions 22,27, respectively, to provide strain relief and/or added pull strength for the fiber 10. Further, the fiber 10 and the tube 20 may be made of different coefficients of thermal expansion for increased sensitivity.
    • 应变隔离布拉格光栅温度传感器包括光学传感元件20,600,光学传感元件20,600包括光纤10,该光纤10具有布置在其中的至少一个布拉格光栅12,该布拉格光栅12被封装在玻璃毛细管20的至少一部分内并且熔合到玻璃毛细管20和/ 大直径波导光栅600具有芯和宽包层并且其中布置有光栅12,其感测温度变化,但对由纤维或其它效应引起的元件上的应变基本上不敏感。 光14入射在光栅12上,光16以反射波长λ1反射。 感测元件20,600的形状可以是其他几何形状,和/或可以使用多于一个的同心管,或者可以使用多于一个的光栅或一对光栅,或者可以使用多于一个的光纤或光纤。 元件20,600的至少一部分可以被掺杂在放置在其中的一对光栅150,152之间以形成温度可调激光器,或者光栅12或光栅150,152可以被构造为设置在元件中的温度可调谐DFB激光器。 此外,元件可以分别具有内部或外部锥形区域22,27,以为纤维10提供应变消除和/或增加的拉伸强度。此外,纤维10和管子20可以由不同的热系数 扩大灵敏度提高。
    • 10. 发明授权
    • Bragg grating pressure sensor
    • 布拉格光栅压力传感器
    • US06422084B1
    • 2002-07-23
    • US09455867
    • 1999-12-06
    • Mark R. FernaldTimothy J. BaileyMatthew B. MillerJames M. SullivanJames R. DunphyMichael A. DavisChristopher J. WrightAlan D. KerseyMartin A. PutnamRobert N. BrucatoPaul E. Sanders
    • Mark R. FernaldTimothy J. BaileyMatthew B. MillerJames M. SullivanJames R. DunphyMichael A. DavisChristopher J. WrightAlan D. KerseyMartin A. PutnamRobert N. BrucatoPaul E. Sanders
    • G01L900
    • G01L11/025
    • A fiber grating pressure sensor includes an optical sensing element 20, 600 which includes an optical fiber 10 having a Bragg grating 12 impressed therein which is encased within and fused to at least a portion of a glass capillary tube 20 and/or a large diameter waveguide grating 600 having a core and a wide cladding and which has an outer transverse dimension of at least 0.3 mm. Light 14 is incident on the grating 12 and light 16 is reflected from the grating 12 at a reflection wavelength &lgr;1. The sensing element 20, 600 may be used by itself as a sensor or located within a housing 48, 60, 90, 270, 300. When external pressure P increases, the grating 12 is compressed and the reflection wavelength &lgr;1 changes. The shape of the sensing element 20, 600 may have other geometries, e.g., a “dogbone” shape, so as to enhance the sensitivity of shift in &lgr;1 due to applied external pressure and may be fused to an outer shell 50. At least a portion of the sensing element may be doped between a pair of gratings 150, 152, to form a compression-tuned laser or the grating 12 or gratings 150, 152 may be constructed as a tunable DFB laser. Also, the axial ends of element 20, 600 where the fiber 10 exits the tube 20 may have an inner tapered region 22 and/or a protruding tapered (or fluted) axial section 27 to provide strain relief or improved pull strength for the fiber 10. A temperature grating 270 may be used to measure temperature and allow for a temperature-corrected pressure measurement. The sensor may be suspended within an outer housing 112, by a fluid, spacers, or other means. The invention may also be used as a force transducer.
    • 光纤光栅压力传感器包括光学感测元件20,600,光学传感元件20,600包括光纤10,该光纤10具有印刷在其中的布拉格光栅12,该光纤10包围玻璃毛细管20和/或大直径波导的至少一部分 光栅600具有芯和宽包层,并且具有至少0.3mm的外横向尺寸。 光14入射到光栅12上,光16以反射波长lambd1从光栅12反射。 感测元件20,600可以自身用作传感器或位于壳体48,60,90,270,3300内。当外部压力P增加时,光栅12被压缩并且反射波长lambd1改变。 感测元件20,600的形状可以具有其他几何形状,例如“狗骨”形状,以便增强由于施加的外部压力而导致的羔羊皮1偏移的灵敏度,并且可以将其熔合到外壳50上。至少 感测元件的一部分可以掺杂在一对光栅150,152之间以形成压缩调谐的激光器,或者光栅12或光栅150,152可被构造为可调DFB激光器。 此外,纤维10离开管20的元件20,600的轴向端部可以具有内锥形区域22和/或突出的锥形(或槽纹)轴向部分27,以提供应变消除或改进的纤维10的拉伸强度 可以使用温度光栅270来测量温度并允许进行温度校正的压力测量。 传感器可以通过流体,间隔件或其他装置悬挂在外壳体112内。 本发明也可以用作力传感器。