Skip to main content
Weiter zur Homepage der Europäischen Kommission (öffnet in neuem Fenster)
Deutsch Deutsch
CORDIS - Forschungsergebnisse der EU
CORDIS
Inhalt archiviert am 2024-06-10

Advanced photonic experimental x-connect

Ziel

Main Objective

Transparent photonic networks impose high cross-talk requirements on the components used, whereas the integrated devices which can provide the functionality required in these networks in a compact and cost-effective way usually suffer from relatively high cross-talk figures. The main objectives are therefore:

-Development and experimental testing of an easy-to-implement phase-scrambling technique which will lead to a considerable reduction of cross-talk requirements on advanced components.

-Development and experimental testing of advanced semiconductor-based photonic integrated circuits (PICs): an 8-wavelength cross-connect, a 4-channel multi-wavelength laser and a 4-channel multi-wavelength receiver. These devices cover the key functions in the physical network infrastructure: signal generation, detection and switching.

Technical Approach

A small cross-connect test bed with bit-rate transparency will be developed; the network will support four 2.5 Gbit/s Direct Detection WDM-channels and four 622 Mbit/s channels, the latter being generated with an integrated multi-wavelength laser and detected with an integrated multi-wavelength detector.

A phase scrambling technique will be developed and tested experimentally. The application of phase-scrambling in order to avoid coherent accumulation of cross-talk is considered as a major breakthrough in order to close the gap between actual performance of advanced components and system requirements. With this technique present state-of-the-art (cross-talk values in the order of -20 dB) is sufficient to cascade at least 5 cross-connects without running into cross-talk problems. Research will be focused on finding an optimal scrambling format yielding the required reduction in coherent cross-talk levels with a restricted amount of spectral broadening which will degrade BER-performance through pulse broadening.

Advanced semiconductor-based photonic integrated circuits (PICs) will be developed and tested, including: an 8-wavelength cross-connect, a 4-channel multi-wavelength laser and a 4-channel multi-wavelength receiver. These devices cover the key functions in the physical network infrastructure: signal generation, detection, and switching.

The application of an integrated 8-wavelength cross-connect, as compared to a cross-connect assembled from discrete components, leads to a huge reduction of the number of fibre connections (four instead of more than fifty) and the cross-connect volume, and improves the reliability. Integrated multi-wavelength lasers and detectors are expected to become cost-competitive with non-integrated versions because of their inherent channel spacing accuracy in combination with a small device size.

Summary of Trial

There is no large scale trial in the project, but a test-bed will be set up for evaluation of integrated optical cross-connects, multi-wavelength components and the use of phase scrambling. This includes the use of a loop-back configuration which makes it possible to study aspects of cascadability.
Expected Achievements

The expected achievements of the project include:

-Establishing a test bed for testing advanced photonic cross-connects and multi-wavelength components.

-Establishing the use of phase scrambling to reduce cross-talk impairments in optical cross-connects.

-Development of a cross-connect simulation tool.

-Design, fabrication and testing of an 8-wavelength integrated cross-connect.

-Design, fabrication and testing of multi-wavelength lasers and receivers.

-Development of an 8-wavelength demultiplexer.

-Progress on polarisation independent semiconductor optical amplifiers.

Expected Impact

The project aims at bridging the gap between current system requirements on component cross-talk and present state-of-the-art performance of advanced integrated devices. It addresses research on improvement of advanced Photonic Integrated Circuits and on a novel cross-talk reducing scrambling method, and their testing in an experimental cross-connect test bed, which will support different bit-rates.

Main contributions to the programme objectives:
Main deliverables
Developed and tested advanced semiconductor based photonic integrated circuits.
Contribution to the programme
Information on optical networks and advanced photonic devices, particularly the problem of coherent cross-talk.
Key Issues

-Design and fabrication of complex photonic integrated circuits and multi-wavelength components.

-Cross-talk impairments, and reduction of cross-talk impairments in optical cross-connects and systems with cascaded cross-connects.

Wissenschaftliches Gebiet (EuroSciVoc)

CORDIS klassifiziert Projekte mit EuroSciVoc, einer mehrsprachigen Taxonomie der Wissenschaftsbereiche, durch einen halbautomatischen Prozess, der auf Verfahren der Verarbeitung natürlicher Sprache beruht. Siehe: Das European Science Vocabulary.

Sie müssen sich anmelden oder registrieren, um diese Funktion zu nutzen

Programm/Programme

Mehrjährige Finanzierungsprogramme, in denen die Prioritäten der EU für Forschung und Innovation festgelegt sind.

Thema/Themen

Aufforderungen zur Einreichung von Vorschlägen sind nach Themen gegliedert. Ein Thema definiert einen bestimmten Bereich oder ein Gebiet, zu dem Vorschläge eingereicht werden können. Die Beschreibung eines Themas umfasst seinen spezifischen Umfang und die erwarteten Auswirkungen des finanzierten Projekts.

Aufforderung zur Vorschlagseinreichung

Verfahren zur Aufforderung zur Einreichung von Projektvorschlägen mit dem Ziel, eine EU-Finanzierung zu erhalten.

Daten nicht verfügbar

Finanzierungsplan

Finanzierungsregelung (oder „Art der Maßnahme“) innerhalb eines Programms mit gemeinsamen Merkmalen. Sieht folgendes vor: den Umfang der finanzierten Maßnahmen, den Erstattungssatz, spezifische Bewertungskriterien für die Finanzierung und die Verwendung vereinfachter Kostenformen wie Pauschalbeträge.

CSC - Cost-sharing contracts

Koordinator

Eindhoven University of Technology
EU-Beitrag
Keine Daten
Adresse
Baker Stre,6 Baker Street
NN7 3EZ Gayton
Vereinigtes Königreich

Auf der Karte ansehen

Gesamtkosten

Die Gesamtkosten, die dieser Organisation durch die Beteiligung am Projekt entstanden sind, einschließlich der direkten und indirekten Kosten. Dieser Betrag ist Teil des Gesamtbudgets des Projekts.

Keine Daten

Beteiligte (6)

Mein Booklet 0 0