JP2016511576A - 光波長分割多重化(wdm)ネットワークにおけるネットワークフラグメンテーション測定 - Google Patents
光波長分割多重化(wdm)ネットワークにおけるネットワークフラグメンテーション測定 Download PDFInfo
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04J—MULTIPLEX COMMUNICATION
- H04J14/00—Optical multiplex systems
- H04J14/02—Wavelength-division multiplex systems
- H04J14/0201—Add-and-drop multiplexing
- H04J14/0202—Arrangements therefor
- H04J14/021—Reconfigurable arrangements, e.g. reconfigurable optical add/drop multiplexers [ROADM] or tunable optical add/drop multiplexers [TOADM]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04J—MULTIPLEX COMMUNICATION
- H04J14/00—Optical multiplex systems
- H04J14/02—Wavelength-division multiplex systems
- H04J14/0224—Irregular wavelength spacing, e.g. to accommodate interference to all wavelengths
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04J—MULTIPLEX COMMUNICATION
- H04J14/00—Optical multiplex systems
- H04J14/02—Wavelength-division multiplex systems
- H04J14/0227—Operation, administration, maintenance or provisioning [OAMP] of WDM networks, e.g. media access, routing or wavelength allocation
- H04J14/0254—Optical medium access
- H04J14/0256—Optical medium access at the optical channel layer
- H04J14/0257—Wavelength assignment algorithms
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L45/00—Routing or path finding of packets in data switching networks
- H04L45/12—Shortest path evaluation
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Abstract
Description
[1]ITU−T G.694.1,「Spectral grids for WDM applications:DWDM frequency grid」,May 2002.
[2]A.N.Patel,P.N.Ji,J.P.Jue,and T.Wang,「Defragmentation of Transparent Flexible Optical WDM (FWDM) Networks」,Proceeding of OFCNFOEC,no.OTuI8,Mar 2011.
[3]F.Cugini,M.Secondini,N.Sambo,G.Bottari,G.Bruno,P.Iovanna,and P.Castoldi,「Push−Pull Technique for Defragmentation in Flexible Optical Networks」,Proceeding of OFCNFOEC,no.JTh2A.40,Mar.2012.
[4]K.Wen,Y.Yin,D.Geisler,S.Chang,and S.J.Ben Yoo,「Dynamic On−demand Lightpath Provisioning Using Spectral Defragmentation in Flexible Bandwidth Networks」,Proc.of ECOC,no.Mo.2.K.4,2011.
[5]X.Yu,J.Zhang,Y.Zhao,T.Peng,Y.Bai,D.Wang,and X.Lin,「Spectrum Compactness based Defragmentation in Flexible Bandwidth Optical Networks」,Proc.of OFCNFOEC,no.JTh2A.35,2012.
[6]X.Wang,Q.Zhang,I.Kim,P.Palacharla,and M.Sekiya,「Utilization Entropy for Assessing Resource Fragmentation in Optical Networks」,Proc.of OFCNFOEC,no.OTh1A.2,2012.
ステップ101で、手順は、各ペアのノード(s,d)間のK個の最短経路を求める(s,d∈Vかつ|V|≦Kである)。
(2)手順を使用して、スペクトルリソースを効率よく提供する方法を評価し、設計する。
(3)手順は、経路計算サーバ(PCE)、OpenFlowコントローラ、及びノードでの分散コントローラなどの光制御プレーンに適用できる。
(4)手順は、適時のネットワークデフラグメンテーションの判断に適用できる。
(5)この手順を適用すると、より高いスペクトル効率及びより低い接続遮断に関してネットワーク性能を向上させることができる。
Claims (15)
- 波長分割多重化(WDM)光ネットワークで使用されるネットワーク装置内で実行する方法であって、
(a)各ノードペア(s,d)間のK個の最短経路を求める(s,d∈Vかつ|V|≦Kであり、Vは1組の構成変更可能な光アドドロップマルチプレクサ(ROADM)ノードである)ステップと、
(b)未検討ノードペア(s,d)を選択するステップと、
(c)ノードsとdとの間の未検討経路kを前記K個の最短経路のうちから選択するステップと、
(d)前記経路kに沿ったファイバーのビットベクトルに対してビット単位論理AND演算を実行することによって前記経路kのビットマップを求めるステップと、
(e)提供された回線速度の組Lから未検討回線速度lを選択するステップと、
(f)回線速度lの接続を提供する確率αls,d,kを求めるステップと、を含む、方法。 - (g)提供された組Lの全ての回線速度が検討されるまで、ステップ(e)及び(f)を繰り返すステップ、を更に含む、請求項1に記載の方法。
- (h)ノードペア(s,d)間の前記K個の最短経路全てが検討されるまで、ステップ(c)〜(g)を繰り返すステップ、を更に含む、請求項2に記載の方法。
- (i)全てのノードペアが検討されるまで、ステップ(b)〜(h)を繰り返すステップ、を更に含む、請求項3に記載の方法。
- 波長分割多重化(WDM)光ネットワークで使用されるネットワーク装置であって、
(a)各ノードペア(s,d)間のK個の最短経路を求める(s,d∈Vかつ|V|≦Kであり、Vは1組の構成変更可能な光アドドロップマルチプレクサ(ROADM)ノードである)第1の求出手段と、
(b)未検討ノードペア(s,d)を選択する第1の選択手段と、
(c)ノードsとdとの間の未検討経路kを前記K個の最短経路のうちから選択する第2の選択手段と、
(d)経路kに沿ったファイバーのビットベクトルに対してビット単位論理AND演算を実行することによって経路kのビットマップを求める第2の求出手段と、
(e)提供された回線速度の組Lから未検討回線速度lを選択する第3の選択手段と、
(f)回線速度lの接続を提供する確率αls,d,kを求める第3の求出手段と、を含む、ネットワーク装置。 - (g)提供された組Lの全ての回線速度が検討されるまで、ステップ(e)〜(f)を繰り返す第1の反復手段、を更に含む、請求項6に記載のネットワーク装置。
- (h)ノードペア(s,d)間の前記K個の最短経路全てが検討されるまで、ステップ(c)〜(g)を繰り返す第2の反復手段、を更に含む、請求項7に記載のネットワーク装置。
- (i)全てのノードペアが検討されるまで、ステップ(b)〜(h)を繰り返す第3の反復手段、を更に含む、請求項8に記載のネットワーク装置。
- ネットワーク装置を含み、
前記ネットワーク装置が、
(a)各ノードペア(s,d)間のK個の最短経路を求め(s,d∈Vかつ|V|≦Kであり、Vは1組の構成変更可能な光アドドロップマルチプレクサ(ROADM)ノードである)、
(b)未検討ノードペア(s,d)を選択し、
(c)ノードsとdとの間の未検討経路kを前記K個の最短経路のうちから選択し、
(d)経路kに沿ったファイバーのビットベクトルに対してビット単位論理AND演算を実行することによって経路kのビットマップを求め、
(e)提供された回線速度の組Lから未検討回線速度lを選択し、
(f)回線速度lの接続を提供する確率αls,d,kを求める、波長分割多重化(WDM)光ネットワーク。 - 前記ネットワーク装置が、
(g)提供された組Lの全ての回線速度が検討されるまで、ステップ(e)及び(f)を繰り返す、請求項11に記載のWDM光ネットワーク。 - 前記ネットワーク装置が、
(h)ノードペア(s,d)間の前記K個の最短経路全てが検討されるまで、ステップ(c)〜(g)を繰り返す、請求項12に記載のWDM光ネットワーク。 - 前記ネットワーク装置が、
(i)全てのノードペアが検討されるまで、ステップ(b)〜(h)を繰り返す、請求項13に記載のWDM光ネットワーク。
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US61/764,568 | 2013-02-14 | ||
US14/177,654 US9166723B2 (en) | 2013-02-14 | 2014-02-11 | Network fragmentation measurement in an optical wavelength division multiplexing (WDM) network |
US14/177,654 | 2014-02-11 | ||
PCT/US2014/015971 WO2014126976A1 (en) | 2013-02-14 | 2014-02-12 | Network fragmentation measurement in an optical wavelength division multiplexing (wdm) network |
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