JP2008249917A - Distribution line cable disposed between columns and method of retaining cable - Google Patents

Distribution line cable disposed between columns and method of retaining cable Download PDF

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JP2008249917A
JP2008249917A JP2007090019A JP2007090019A JP2008249917A JP 2008249917 A JP2008249917 A JP 2008249917A JP 2007090019 A JP2007090019 A JP 2007090019A JP 2007090019 A JP2007090019 A JP 2007090019A JP 2008249917 A JP2008249917 A JP 2008249917A
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Prior art keywords
cable
wire
optical fiber
steel pipe
messenger wire
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Yasuo Kojima
泰雄 小島
Kimio Asano
公生 浅野
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Fujikura Line Tech Ltd
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Fujikura Line Tech Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To solve a problem that the conventional method by which a messenger wire is preliminarily disposed on which an optical cable is supported by using cable hangers is very inconvenient and a problem arising in the work of the conventional method by which the messenger wire is disposed, and to provide, after elaboration to find a means for low cost, a new optical cable wire with messenger wire which eliminates the existing stereotype that the conventional messenger wire and the cable must be coated by a common plastic material. <P>SOLUTION: The distribution line cable disposed between columns is characterized in that a high tensile strength wire composing the messenger wire and a steel pipe containing the optical fiber have the same diameter, and at least one or two steel pipes containing the optical fiber stay in surrounding twisted structure without neighboring other steel wires. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

本発明は、配電柱間に配線される光ファイバケーブル入りのメッセンジャーワイヤで、ハンガー不要なケーブル及びケーブルの引留め方法に関するものである。   The present invention relates to a messenger wire containing an optical fiber cable wired between distribution poles, a hanger-free cable, and a cable retaining method.

配電柱間にケーブルを架設するには、従来から予め配電柱間に架設したメッセンジャーワイヤに沿わせてケーブルを掛け渡し、ハンガーと呼ばれる吊具を用いてメッセンジャーワイヤにケーブルをハンガーで吊り下げるか、予め配電柱間に架設したメッセンジャーワイヤに一方向の螺旋コイルを外挿し、コイルの内側にケーブルを挿入し、ケーブルを一束化することが行われている。前者は高所作業で面倒であり、後者は例えば特公昭52―4033号公報に見られるように、ケーブルの挿入が面倒である。   In order to install cables between distribution poles, the cables are conventionally routed along the messenger wires previously installed between the distribution poles, and the cables are hung on the messenger wires using hangers called hangers, One-way spiral coil is extrapolated to a messenger wire previously installed between distribution poles, a cable is inserted inside the coil, and the cables are bundled. The former is troublesome at a high place, and the latter is troublesome to insert a cable, as shown in, for example, Japanese Patent Publication No. 52-4033.

この改良案として左右交互螺旋を用いる特開2005−168284号公報が知られている。しかし、左右交互螺旋のコイルの引き伸ばしや、メッセンジャーワイヤとケーブルを別途架設する作業は、配電柱間の高所作業であることと、落雷や強風により、線路に断線や光ケーブルの場合通信障害を引き起こすなどの問題が懸念される。   Japanese Patent Laid-Open No. 2005-168284 using an alternate left and right spiral is known as an improvement plan. However, the extension of the left and right alternating spiral coils and the work of installing the messenger wires and cables separately are high work between the distribution poles, and lightning strikes and strong winds cause disconnections in the lines and optical communication failures. We are concerned about such problems.

一方、メッセンジャーワイヤと光ファイバケーブルとを共通プラスチックシースの首部で連結した自己支持型ケーブルがある。例えば特開平10−133071号公報参照がある。このようなケーブルは、側方からの横風を受けた場合、揚力がおき、ケーブルに低周波振動であるダンシングを発生しやすいため、ケーブルコア内に収納される光ファイバや配電ケーブルが劣化しやすいという問題がある。   On the other hand, there is a self-supporting cable in which a messenger wire and an optical fiber cable are connected by a common plastic sheath neck. For example, see Japanese Patent Application Laid-Open No. 10-133301. When such a cable is subjected to a crosswind from the side, lift occurs and the cable is susceptible to low-frequency vibration dancing, so the optical fiber and distribution cable stored in the cable core are likely to deteriorate. There is a problem.

特公昭52−4033号公報Japanese Patent Publication No.52-4033 特開2005−168284号公報JP 2005-168284 A 特開平10−133071号公報Japanese Patent Laid-Open No. 10-133301

本発明はこのような問題を生じない配電電柱間に架設する光ケーブルを提供することを目的とするものである。
すなわち、配電電柱は30m〜50mの間隔で設けられており、ここに架設する光ケーブルはあまり大サイズで重量の大きいものは適用されていない。
従って、従来メッセンジャーワイヤを予め架設し、これに光ケーブルをケーブルハンガーを用いて支持させる従来の方法は、極めて面倒であり、また螺旋コイルを用いる方法もハンガーのように多数のハンガーを取り付ける作業が無く、低コストで済む手段について鋭意検討した。
すなわち、従来メッセンジャーワイヤを予め架設するときの作業上の問題点を解決し、しかも、従来メッセンジャーワイヤとケーブルとは共通のプラスチック被覆でなければ、ならないという既成概念の束縛から解放された、新しい光ケーブル付きメッセンジャーワイヤを生み出し、かつ新しいケーブル支持工法を生み出したものである。
本発明によれば、比較的簡単な構造で、予めメッセンジャーワイヤを架設することや、ハンガーが必要でなく、所望のケーブルにあるメッセンジャーワイヤを電柱の箇所で引き留めればよいので、ケーブルの構造が簡単で、電柱間に架設することも容易で、低コストで安全に架設作業を達成できるものである。
An object of the present invention is to provide an optical cable installed between distribution poles that does not cause such a problem.
That is, the power distribution poles are provided at intervals of 30 m to 50 m, and optical cables installed here are not so large and heavy in weight.
Therefore, the conventional method of installing a conventional messenger wire in advance and supporting the optical cable with a cable hanger is very troublesome, and the method using a spiral coil does not require the work of attaching a large number of hangers like a hanger. Therefore, we studied earnestly on the low cost method.
In other words, a new optical cable that solves the problem of work when the conventional messenger wire is installed in advance and is free from the constraint of the existing concept that the conventional messenger wire and cable must be a common plastic coating. A messenger wire with a wire and a new cable support method.
According to the present invention, a messenger wire is installed in advance with a relatively simple structure, a hanger is not necessary, and the messenger wire in a desired cable may be retained at the location of the utility pole, so that the structure of the cable is It is simple, can be easily installed between utility poles, and can be safely installed at low cost.

本発明は、メッセンジャーワイヤを構成する高抗張力線と、光ファイバを収納した鋼パイプとが同径であって、少なくとも光ファイバを収納した鋼パイプの1条ないし3条を隣接することなく周囲の撚り構成中に存在させたことを特徴とする配電柱間架設用ケーブルであり(請求項1)、ここには外周の撚り構造中に光ファイバを収納した鋼パイプが1条でもよいし、光ファイバを収納した鋼パイプ2条を用い、高抗張力線の2条を介して1条あて配列した場合や、光ファイバを収納した鋼パイプ3条を用い、請求項2に記載のように中心を鋼線とし、その周囲に高抗張力線と光ファイバを収納した鋼パイプとを交互に撚り合わせてなるものであってもよい。この場合は光りファイバを最も多く収納したケーブルを提供できる。
また、本発明は、光ファイバを収納した鋼パイプとして実績のあるステンレス鋼パイプを用いたことを特徴とする請求項1もしくは2に記載の配電柱間架設用ケーブルであり(請求項3)、
請求項1乃至3いずれかに記載の配電柱間架設用ケーブルを配電電柱間に架設し、該ケーブに於ける高張力線を纏めて引留め金具で引き留めるようにしたことを特徴とする配電柱間架設用ケーブルの引留め方法である(請求項4)。
In the present invention, the high tensile strength wire constituting the messenger wire and the steel pipe containing the optical fiber have the same diameter, and at least one or three of the steel pipe containing the optical fiber are not adjacent to each other. A cable for installing between distribution poles characterized in that it is present in a twisted structure (Claim 1), wherein there may be one steel pipe housing an optical fiber in the outer twisted structure, The center of the steel pipe according to claim 2 is used, when two steel pipes containing fibers are used and one steel wire is arranged via two high tensile strength wires, or three steel pipes containing optical fibers are used. The steel wire may be formed by alternately twisting a high tensile strength wire and a steel pipe containing an optical fiber around the steel wire. In this case, a cable containing the most optical fibers can be provided.
Further, the present invention is the cable for installing between distribution poles according to claim 1 or 2, wherein a proven stainless steel pipe is used as a steel pipe housing an optical fiber (Claim 3).
A distribution pole comprising the distribution pole installation cable according to any one of claims 1 to 3, wherein the cable is installed between the distribution poles, and the high-tensile wires in the cable are gathered together and secured by a retaining bracket. This is a method of retaining an intermediary cable (claim 4).

本発明の電柱間架設用ケーブルは、特にメッセンジャーワイヤを別途架設し、螺旋状支持具を用いることなしに、簡単に架設することができ、しかも、光ケーブルを管路内に挿入してあるので、外部の気象条件に影響されず、微振動による通信不良や、塩害に基づく問題を発生せず、
さらに中心部の高抗張力線及び外周より線層中の高抗張力線は、電柱の引留め部で全て集合してメッセンジャーワイヤとして引留めるので、特別なハンガーを必要とせず、ケーブルの架設にあたり必要な機材がすくなくなり、かつ高所での作業が容易となる等の効果
を奏する。
さらに、光ファイバを収納した鋼パイプは高抗張力線と同径で全体的にバランスよく撚り合わされ、全体的撚り線構造であるから、ケーブルはどの方向を上にしてもよい。
The cable for installing the utility pole of the present invention, in particular, a messenger wire is installed separately, and can be installed easily without using a spiral support, and the optical cable is inserted into the conduit, Without being affected by external weather conditions, it does not cause communication failures due to micro vibrations or problems due to salt damage,
In addition, the high strength wire in the center and the high strength wire in the wire layer from the outer periphery are gathered together at the retaining portion of the utility pole and retained as a messenger wire. There are effects such as less equipment and easier work in high places.
Furthermore, the steel pipe containing the optical fiber has the same diameter as the high-strength wire and is twisted in a balanced manner as a whole, and has an overall twisted wire structure. Therefore, the cable may be oriented in any direction.

図1は、本発明により得られた配電柱間架設用ケーブルの構造例を示す断面図で、中心部及びその周囲に1条おきに高抗張力線1が設けられ,光ファイバを収納した鋼パイプ2と交互に撚り合せて構成されている。
なお、図示していないが、光ファイバを収納した鋼パイプ2は1条でもよいし、2条を高抗張力線1の2条おきに介して配列してもよい。
図では全ての高抗張力線1と、光ファイバを収納した鋼パイプ2の外径は同一であり、その引張り荷重より、公称断面積及び外径が計算されるが、一部に光ファイバを収納した鋼パイプが用いられていても、全体的には抗張力より線すなわち、メッセンジャーワイヤの設計値を近似値として判断して設計することができる。例えば断面積22mmでは直径が6.0mmであり、断面積が55mmでは直径が9.6mmであり、断面積が135mmでは直径が15.0mmである。通常外径が6.0mm〜15.0mm程度のものが実用可能である。
FIG. 1 is a cross-sectional view showing a structural example of a cable for installing between distribution poles obtained by the present invention. A steel pipe in which a high tensile strength wire 1 is provided in the center portion and around the center portion and an optical fiber is accommodated. 2 and twisted alternately.
In addition, although not shown in figure, the steel pipe 2 which accommodated the optical fiber may be 1 line | wire, and 2 line | wires may be arranged through every 2 line | wire of the high tensile strength wire 1. FIG.
In the figure, the outer diameters of all the high tensile strength wires 1 and the steel pipes 2 containing the optical fibers are the same, and the nominal cross-sectional area and outer diameter are calculated from the tensile load. Even when the steel pipe is used, the overall design can be made by judging the stranded wire, that is, the design value of the messenger wire as an approximate value. For example, when the cross-sectional area is 22 mm 2 , the diameter is 6.0 mm, when the cross-sectional area is 55 mm 2 , the diameter is 9.6 mm, and when the cross-sectional area is 135 mm 2 , the diameter is 15.0 mm. Usually, an outer diameter of about 6.0 mm to 15.0 mm is practical.

光ファイバを収納した鋼パイプ2のパイプの材質は通常実績のあるSUSが強度と、雰囲気による腐食防止の観点から、有利に用いられ、高抗張力線1は、亜鉛メッキ鋼線が廉価であり、使用される。
勿論アルミ被覆鋼線を用いても良い。この場合、塩害にも強いので好ましい。
図1では高抗張力線の一本を中心にして、その周囲に同径の高抗張力線1と金属管収納光ファイバ2とが交互にされて全体として6条が撚り合わされている。
高抗張力線1と光ファイバを収納した鋼パイプ2とが交互に位置して撚り合わされているが、先に述べたように、必要に応じて光ファイバを収納した鋼パイプ2は1条、又は2条でも差し支えない。すなわち、光ファイバを収納した鋼パイプを隣接しないことが強度保持や光ファイバへの影響を考えると好ましい。
なお、光ファイバを収納した鋼パイプ2は一層であるが、中に収納される光ファイバの数を考えると、これで十分であり、2層以上とする必要はない。
The material of the steel pipe 2 containing the optical fiber is normally used from the standpoint of strength of SUS, which has a proven track record, and corrosion prevention by the atmosphere, and the galvanized steel wire is inexpensive for the high tensile strength wire 1, used.
Of course, an aluminum-coated steel wire may be used. This is preferable because it is resistant to salt damage.
In FIG. 1, a high tensile strength wire 1 and a metal tube housing optical fiber 2 having the same diameter are alternately arranged around one high tensile strength wire, and six strands are twisted as a whole.
Although the high tensile strength wire 1 and the steel pipe 2 containing the optical fiber are alternately positioned and twisted together, as described above, the steel pipe 2 containing the optical fiber is required to be one strip or as required. Even two are acceptable. That is, it is preferable not to adjoin the steel pipe containing the optical fiber in view of strength retention and influence on the optical fiber.
In addition, although the steel pipe 2 which accommodated the optical fiber is one layer, when considering the number of optical fibers accommodated therein, this is sufficient, and it is not necessary to have two or more layers.

また、図示していないが、外周の鋼線と光ファイバを収納した鋼パイプとを、それぞれ偏って集合状態、外周の鋼線3条と光ファイバを収納した鋼パイプ3条とはグループ別にして撚り合わせた場合は、一見電柱に於ける引留めが簡単に思えるが、ケーブル自体の強度が円周方向で一様でないので、好ましくない。要は鋼線と光ファイバを収納した鋼パイプとがバランスよく撚り合わされることが製造上も、製品としても好ましい。
なお、中心の高抗張力線の存在は、周囲の光ファイバのマイクロベンドの防止に効果ががある。
Although not shown, the outer peripheral steel wires and the steel pipes containing the optical fibers are biased in an assembled state, and the outer peripheral steel wires 3 and the steel pipes 3 containing the optical fibers are grouped into groups. In the case of twisting together, it seems that retaining at the power pole seems simple, but it is not preferable because the strength of the cable itself is not uniform in the circumferential direction. In short, it is preferable that the steel wire and the steel pipe containing the optical fiber are twisted in a well-balanced manner in terms of production and product.
The presence of the center high tensile strength line is effective in preventing microbending of the surrounding optical fiber.

本発明は、配電電柱間に光ファイバを架設するに際して、ケーブル構造中の高抗張力線を利用して引留めので、別途メッセンジャーワイヤの架設や、ハンガあるいはラッシングロッドを必要としないで容易に架線できる。   In the present invention, when an optical fiber is installed between distribution poles, it is retained using a high tensile strength wire in the cable structure, so that it can be easily installed without requiring a separate messenger wire, a hanger, or a lashing rod. .

本発明の架空ケーブルの一例の断面図である。It is sectional drawing of an example of the aerial cable of this invention.

符号の説明Explanation of symbols

1 高抗張力線
2 光ファイバを収納した鋼パイプ
1 High tensile strength wire 2 Steel pipe containing optical fiber

Claims (4)

メッセンジャーワイヤを構成する高抗張力線と、光ファイバを収納した鋼パイプとが同
径であって、少なくとも光ファイバを収納した鋼パイプの1条ないし3条を隣接することなく周囲の撚り構成中に存在させたことを特徴とする配電柱間架設用ケーブル。
The high tensile strength wire constituting the messenger wire and the steel pipe containing the optical fiber have the same diameter, and at least one or three of the steel pipe containing the optical fiber are not adjacent to each other in the surrounding twisted configuration. A cable for installation between distribution poles, characterized by the existence.
中心を高抗張力線とし、その周囲に高抗張力線と光ファイバを収納した鋼パイプとを交互に配列して撚り合わせてなることを特徴とする請求項1に記載の配電柱間架設用ケーブル。   The cable for installing distribution poles according to claim 1, wherein the cable is constructed by alternately arranging and twisting high tensile strength wires at the center and steel pipes containing optical fibers around them. 光ファイバを収納した鋼パイプとしてステンレス鋼パイプを用いたことを特徴とする請求項1もしくは2に記載の電柱間架設用ケーブル。   The cable for installing a utility pole according to claim 1 or 2, wherein a stainless steel pipe is used as the steel pipe containing the optical fiber. 請求項1乃至3いずれかに記載の配電柱間架設用ケーブルを配電電柱間に架設し、該ケーブに於ける高張力線を纏めて引留め金具で引き留めるようにしたことを特徴とする電柱間架設用ケーブルの引留め方法。   A cable for laying between distribution poles according to any one of claims 1 to 3, wherein the cable for laying between distribution poles is laid between the distribution poles, and the high tension wires in the cable are gathered together and fastened with a fastening bracket. Retention method for erection cable.
JP2007090019A 2007-03-30 2007-03-30 Distribution line cable disposed between columns and method of retaining cable Pending JP2008249917A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102629508A (en) * 2012-04-20 2012-08-08 安徽天星光纤通信设备有限公司 Photoelectric composite load bearing detection cable
CN104810102A (en) * 2014-01-23 2015-07-29 广东夏野日用电器有限公司 Photoelectric composite cable

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0727955A (en) * 1993-07-14 1995-01-31 Sumitomo Electric Ind Ltd Optical fiber cable for measuring temperature of geothermal well
JPH07302518A (en) * 1994-05-09 1995-11-14 Hitachi Cable Ltd Optical-fiber-compounded overhead wire and its manufacture
US20010032730A1 (en) * 2000-02-15 2001-10-25 Gregor Carsten M. Metallic optical aerial cable
JP2006317731A (en) * 2005-05-13 2006-11-24 Chubu Electric Power Co Inc Self-supporting optical cable

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0727955A (en) * 1993-07-14 1995-01-31 Sumitomo Electric Ind Ltd Optical fiber cable for measuring temperature of geothermal well
JPH07302518A (en) * 1994-05-09 1995-11-14 Hitachi Cable Ltd Optical-fiber-compounded overhead wire and its manufacture
US20010032730A1 (en) * 2000-02-15 2001-10-25 Gregor Carsten M. Metallic optical aerial cable
JP2006317731A (en) * 2005-05-13 2006-11-24 Chubu Electric Power Co Inc Self-supporting optical cable

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102629508A (en) * 2012-04-20 2012-08-08 安徽天星光纤通信设备有限公司 Photoelectric composite load bearing detection cable
CN104810102A (en) * 2014-01-23 2015-07-29 广东夏野日用电器有限公司 Photoelectric composite cable

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