WO2015000194A1 - 一种无源可视光跳线追踪器、光跳线及光跳线追踪的方法 - Google Patents

一种无源可视光跳线追踪器、光跳线及光跳线追踪的方法 Download PDF

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Publication number
WO2015000194A1
WO2015000194A1 PCT/CN2013/079399 CN2013079399W WO2015000194A1 WO 2015000194 A1 WO2015000194 A1 WO 2015000194A1 CN 2013079399 W CN2013079399 W CN 2013079399W WO 2015000194 A1 WO2015000194 A1 WO 2015000194A1
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Prior art keywords
tracker
tracer
visible light
patch cord
light
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PCT/CN2013/079399
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English (en)
French (fr)
Inventor
郭建民
沙和鸣
张启武
郭兆程
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深圳市特发信息光网科技股份有限公司
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Publication of WO2015000194A1 publication Critical patent/WO2015000194A1/zh

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    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/44Mechanical structures for providing tensile strength and external protection for fibres, e.g. optical transmission cables
    • G02B6/4401Optical cables
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q1/00Details of selecting apparatus or arrangements
    • H04Q1/02Constructional details
    • H04Q1/13Patch panels for monitoring, interconnecting or testing circuits, e.g. patch bay, patch field or jack field; Patching modules
    • H04Q1/135Patch panels for monitoring, interconnecting or testing circuits, e.g. patch bay, patch field or jack field; Patching modules characterized by patch cord details
    • H04Q1/136Patch panels for monitoring, interconnecting or testing circuits, e.g. patch bay, patch field or jack field; Patching modules characterized by patch cord details having patch field management or physical layer management arrangements

Definitions

  • the present invention relates to the field of optical communications, and in particular to a passive visible light jumper tracker and a tracking method. Background technique
  • FTTH Fiber To The Home
  • the fiber optic connector when the fiber optic connector is in the construction of the machine room, it is responsible for the construction department and is not responsible for maintenance.
  • the maintenance department when there is a problem at one end of the fiber optic connector, it is difficult for maintenance personnel to quickly find the fiber optic connector at the other end.
  • the method is to confirm according to the identification on the fiber optic connector, which is very time consuming, especially when different cabinets, different machine rooms, different floors, etc., the work becomes more prominent, plus construction The construction personnel of the Ministry and the maintenance staff of the maintenance department lack effective communication, and the difficulty of this work will increase again.
  • the present invention provides a fast-tracking optical fiber active connector, which is convenient and quick for the operator to quickly find the problem during maintenance.
  • the present invention provides a visible light jumper tracker, including a first tracker and a second tracker, wherein the first tracker and the second tracker are connected by an optical fiber,
  • the first tracker and the second tracker are light transmissive ferrules, and when any one of the first tracker and the second tracker passes visible light, the other tracker also emits visible light.
  • the light-transmissive ferrule is a ceramic ferrule or a plastic ferrule or a glass ferrule.
  • An optical jumper with a visible light tracker comprising the passive visible light jumper tracker described above, wherein the first tracker and the second tracker are disposed at two ends of the optical jumper, the light Jumper tracker
  • the fiber is placed inside the cable.
  • the first connector and the second connector disposed at both ends of the optical jumper are further included.
  • a light source is further included, the light source being coupled to the first tracker or the second tracker.
  • the light source is provided with a switch and an operation indicator.
  • a method for performing optical jumper tracking using the above optical jumper tracker step 1: setting a first tracker and a second tracker respectively at two ends of the optical jumper; the first tracker and the second tracker pass The fiber optic connection, the fiber connecting the first tracker and the second tracker is disposed in the fiber optic cable; Step 2: providing the first tracker with a visible light source; Step 3: finding the illuminated second tracker.
  • the first connector and the second connector disposed at both ends of the optical jumper are further included.
  • the light source is infrared visible light.
  • the first connector and the second connector are respectively connected to two ends of the optical jumper, the first tracker and the second tracker are respectively fixed on the optical jump line, the light source is used to pass the first tracker, and the second tracker is The light signal is emitted to attract attention and achieve tracking effect.
  • the optical jumper tracker, the optical jumper, and the optical jumper tracking method of the invention the two ends of the optical jumper can be quickly found, which is convenient for handling the problem optical jumper, especially the two ends of the optical jumper are in different spaces. In case. Fast tracking of fiber optic patch connectors that meet the performance of conventional fiber optic patch cords for easy wiring and ease of operation.
  • the invention uses optical fiber to connect two trackers, does not need electricity, is safe and reliable, is suitable for outdoor, or coal mine, etc., needs special equipment place, all non-metal structure, non-conductive, no lightning, high degree of visualization, easy to identify, soft, easy Curved extension. Easy to use in a narrow space, can be done by one person, without the need for auxiliary and other special tools, easy to use, saves effort.
  • FIG. 1 is a schematic structural view of an optical jumper of the present invention
  • FIG. 2 is a schematic view showing the structure of an optical jumper with a light source according to the present invention.
  • First connector 1. First connector 2. First tracker 3. Fiber optic cable 4. Second tracker 5. Second connector 6. Light source.
  • Fast Tracking Fiber Optic Active Connector Increases the fast tracking of fiber optic patch cords without changing the optical performance, mechanical properties, environmental performance, combustion performance, and lifetime of existing fiber optic connectors
  • the concept of tracking is to add light signals to the connector of the fiber optic connector to attract attention and satisfy the tracking effect. Quickly and accurately locate the anomalous end of the fiber optic patch connector when the problem is discovered.
  • Embodiment 1 A passive visible light jumper tracker, including a first tracker and a second tracker, the first tracker and the second tracker being connected by an optical fiber, the first tracker and the second tracker Translucent plug Core, when any one of the first tracker and the second tracker passes light, the other tracker also emits light.
  • the light transmissive ferrule is a ceramic ferrule or a plastic ferrule or a glass ferrule.
  • Embodiment 2 An optical jumper comprising the passive visible light jumper tracker described above, the first tracker and the second tracker being disposed at two ends of the optical jumper, the optical jumper tracking The fiber of the device is placed inside the cable. Also included are a first connector and a second connector disposed at both ends of the optical jumper. A light source is also included, the light source being coupled to the first tracker or the second tracker. The light source is provided with a switch and a work indicator.
  • Embodiment 3 A method for performing optical jumper tracking using the above optical jumper tracker, Step 1: setting the first tracker and the second tracker at both ends of the optical jumper; the first tracker and the first The second tracker is connected through the optical fiber, and the optical fiber connecting the first tracker and the second tracker is disposed in the optical cable; Step 2: providing the first tracker with the light source; Step 3: finding the illuminated second tracker. Also included are a first connector and a second connector disposed at both ends of the optical jumper.
  • the light source is infrared visible light.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Switches Operated By Changes In Physical Conditions (AREA)
  • Optical Couplings Of Light Guides (AREA)

Abstract

一种带可视光追踪器便于追踪的无源光跳线、便于追踪的光跳线及光跳线查找的方法,追踪器包括第一追踪器(2)、第二追踪器(4),第一追踪器(2)和第二追踪器(4)通过光纤连接,所述第一追踪器(2)和第二追踪器(4)为透光插芯,当第一追踪器(2)和第二追踪器(4)中的任意一个通可视光时,另一个追踪器也发可视光。光跳线包括上述光跳线追踪器,第一追踪器(2)和第二追踪器(4)设置在光跳线的两端,所述带可视光追踪器的光跳线追踪器的光纤设置在光缆(3)内。方法,步骤1:将第一追踪器(2)和第二追踪器(4)分别设置在光跳线的两端;步骤2:给第一追踪器(2)提供可视光源(6);步骤3:找到发可视光的第二追踪器(4)。使用光纤连接两个追踪器(2,4),无需通电,安全可靠,适合室内外、特别是煤矿或者易燃易爆环境等特殊装备场所使用。

Description

一种无源可视光跳线追踪器、 光跳线及光跳线追踪的方法 技术领域
本发明涉及光通信领域,尤其涉及无源可视光跳线追踪器及追踪方法。 背景技术
目前随著 FTTH (FTTH (Fiber To The Home) , 顾名思义就是一根光纤 直接到家庭) 在中国的快速发展, 运营商每年在机房、 线缆上的投入正以 30%的速度在增长, 但运营商在产品的品质、 成本、 施工方便、 维护快捷等 方面有更高的要求, 面对运营商快速增长的机房建设, 在施工、 维护等方 面的压力及投入越来越大, 特别是运营商在管理上分工明确, 分开监管的 模式上, 对后期的维护的成本将必须投入更多的精力。
如: 光纤活动连接器在机房施工时, 负责施工部门, 不负责维护, 在 维护部维护时, 光纤活动连接器一端发生问题时, 维护人员很难快速找到 另一端的光纤活动连接器, 目前采用的方法是, 依据光纤活动连接器上的 标识来进行确认, 这样做非常的费时, 特别是不同机柜、 不同机房、 不同 楼层等不同区域时, 该项工作就变得尤为突出, 再加上施工部的施工人员 与维护部的维护人员缺乏有效的沟通, 该项工作的难度将再次增加。
在施工、 维护方面凸显的问题上, 为解决运营商在维护上的麻烦, 本 发明提供快速追踪的光纤活动连接器, 为运营商在维护时快速找到问题提 供方便、 快捷。
发明内容 为了解决现有技术中问题, 本发明提供了一种可视光跳线追踪器, 包 括第一追踪器和第二追踪器, 第一追踪器和第二追踪器通过光纤连接, 所 述第一追踪器和第二追踪器为透光插芯, 当第一追踪器和第二追踪器中的 任意一个通可视光时, 另一个追踪器也发可视光。 作为本发明的进一步改进, 所述透光插芯为陶瓷插芯或塑料插芯或玻 璃插芯。 一种带可视光追踪器的光跳线, 其包括上述所述的无源可视光跳线追 踪器, 第一追踪器和第二追踪器设置在光跳线的两端, 所述光跳线追踪器 的光纤设置在光缆内。 作为本发明的进一步改进, 还包括设置在光跳线两端的第一连接器和 第二连接器。 作为本发明的进一步改进, 还包括光源, 所述光源与第一追踪器或第 二追踪器连接。 作为本发明的进一步改进, 所述光源设有开关和工作指示灯。 一种使用上述光跳线追踪器进行光跳线追踪的方法, 步骤 1 :将第一追踪器和第二追踪器分别设置在光跳线的两端;第一追 踪器和第二追踪器通过光纤连接, 连接第一追踪器和第二追踪器的光纤设 置在光缆内; 步骤 2 : 给第一追踪器提供可视光源; 步骤 3 : 找到发光的第二追踪器。 作为本发明的进一步改进, 还包括设置在光跳线两端的第一连接器和 第二连接器。 作为本发明的进一步改进, 所述光源为红外可视光。 第一连接器与第二连接器分别连接在光跳线的两端, 第一追踪器与第 二追踪器分别固定在光跳线上, 光源给第一追踪器通光, 第二追踪器会发 出光信号引起人员注意, 达到追踪效果。 使用本发明的光跳线追踪器、 光跳线 、 及光跳线追踪的方法可以快速 找到光跳线的两端, 方便处理问题光跳线, 特别是光跳线的两端处于不同 空间的情况下。 快速追踪光纤活动连接器,它满足常规光纤活动连接器的性能的同时, 方便布线、 操作简便。 同时在使用追踪功能时, 操作简便, 设备维护技能 易掌握, 操作人员只要使用追踪器, 就可完成追踪要求。 本发明使用光纤连接两个追踪器, 无需通电, 安全可靠, 适合室外、 或者煤矿等需要特殊装备场所使用, 全非金属结构, 不导电、 不引雷, 可 视化程度高、 易识别, 柔软, 易弯曲延伸。 容易在狭窄的空间使用, 可一个人操作完成, 不需要辅助和其它特别 工具, 方便易用, 省事省力。
附图说明
图 1是本发明光跳线结构示意图;
图 2是本发明带有光源的光跳线结构示意图。
图中各部件名称如下:
1.第一连接器 2.第一追踪器 3.光缆 4.第二追踪器 5. 第二连接器 6.光源。
具体实施方式 下面结合附图对本发明做进一步说明。
快速追踪光纤活动连接器的原理: 在不改变目前现有的光纤活动连接 器的光学性能、 机械性能、 环境性能、 燃烧性能、 使用寿命等性能的基础 上, 增加光纤活动连接器的快速追踪功能, 它的追踪的理念为, 在光纤活 动连接器的连接器上增加光信号引起人员注意, 满足追踪效果。 达到发现 问题时, 快速、 准确的定位光纤活动连接器的异常端。
快速追踪光纤活动连接器,它满足常规光纤活动连接器的性能的同时, 方便布线、 操作简便。 同时在使用追踪功能时, 操作简便, 设备维护技能 易掌握, 操作人员只要使用追踪器, 就可完成追踪要求。
机房维护人员普遍反应问题为, 很难快速找到异常光纤活动连接器的 两端, 解决此难题, 能使他们的维护成本有非常大的降低, 再从市场需求 分析, 目前三大运营商每年招标公示的光纤活动连接器的量分析, 如有三 分之一的量用在机房中,最少有 1亿的光纤活动连接器需要用到此类技术。
综上所述, 快速追踪光纤活动连接器从技术、 原理、 市场分析, 将是 光纤活动连接器的一场革命。
实施例子 1 : 一种无源可视光跳线追踪器, 包括第一追踪器和第二追踪器, 第一追 踪器和第二追踪器通过光纤连接, 所述第一追踪器和第二追踪器为透光插 芯, 当第一追踪器和第二追踪器中的任意一个通光时, 另一个追踪器也发 光。 所述透光插芯为陶瓷插芯或塑料插芯或玻璃插芯。
实施例子 2 : 一种光跳线, 其包括上述所述的无源可视光跳线追踪器, 第一追踪器 和第二追踪器设置在光跳线的两端, 所述光跳线追踪器的光纤设置在光缆 内。 还包括设置在光跳线两端的第一连接器和第二连接器。 还包括光源, 所述光源与第一追踪器或第二追踪器连接。 所述光源设有开关和工作指示 灯。 实施例子 3 : 一种使用上述光跳线追踪器进行光跳线追踪的方法, 步骤 1 :将第一追踪器和第二追踪器分别设置在光跳线的两端;第一追 踪器和第二追踪器通过光纤连接, 连接第一追踪器和第二追踪器的光纤设 置在光缆内; 步骤 2 : 给第一追踪器提供光源; 步骤 3 :找到发光的第二追踪器。还包括设置在光跳线两端的第一连接 器和第二连接器。 所述光源为红外可视光。 以上内容是结合具体的优选实施方式对本发明所作的进一步详细说明, 不能认定本发明的具体实施只局限于这些说明。 对于本发明所属技术领域 的普通技术人员来说, 在不脱离本发明构思的前提下, 还可以做出若干简 单推演或替换, 都应当视为属于本发明的保护范围。

Claims

权利要求书
1. 一种带可视光的光跳线追踪器, 其特征在于: 包括第一追踪器和第二追 踪器, 第一追踪器和第二追踪器通过光纤连接, 所述第一追踪器和第二 追踪器为透光插芯, 当第一追踪器和第二追踪器中的任意一个通可视光 时, 另一个追踪器也发可视光。
2. 根据权利要求 1所述的带可视光的光跳线追踪器, 其特征在于: 所述透 光插芯为陶瓷插芯或塑料插芯或玻璃插芯。
3. 一种带可视光追踪器的光跳线, 其特征在于: 其包括权利要求 1或 2所 述的光跳线追踪器, 第一追踪器和第二追踪器设置在光跳线的两端, 所 述光跳线追踪器的光纤设置在光缆内。
4. 根据权利要求 3所述的带可视光追踪器的光跳线, 其特征在于: 还包括 设置在光跳线两端的第一连接器和第二连接器。
5. 根据权利要求 3所述的带可视光追踪器的光跳线, 其特征在于: 还包括 光源, 所述光源与第一追踪器或第二追踪器连接。
6. 根据权利要求 5所述的带可视光追踪器的光跳线, 其特征在于: 所述光 源设有开关和工作指示灯。
7. 一种使用权利要求 1或 2的带可视光追踪器的光跳线追踪器进行光跳线 追踪的方法, 其特征在于: 步骤 1 : 将第一追踪器和第二追踪器分别设 置在光跳线的两端; 第一追踪器和第二追踪器通过光纤连接, 连接第一 追踪器和第二追踪器的光纤设置在光缆内; 步骤 2 : 给第一追踪器提供 光源; 步骤 3 : 找到发光的第二追踪器。
8. 根据权利要求 7所述的方法, 其特征在于: 还包括设置在带可视光追踪 器的光跳线两端的第一连接器和第二连接器。
9. 根据权利要求 7所述的方法, 其特征在于: 所述光源为红外可视光。
PCT/CN2013/079399 2013-07-01 2013-07-15 一种无源可视光跳线追踪器、光跳线及光跳线追踪的方法 WO2015000194A1 (zh)

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