Design and implementation of flexible TWDM-PON with PtP WDM overlay based on WSS for next-generation optical access networks

2016 ◽  
Vol 30 (25) ◽  
pp. 1650324
Author(s):  
Bin Wu ◽  
Hongxi Yin ◽  
Jie Qin ◽  
Chang Liu ◽  
Anliang Liu ◽  
...  

Aiming at the increasing demand of the diversification services and flexible bandwidth allocation of the future access networks, a flexible passive optical network (PON) scheme combining time and wavelength division multiplexing (TWDM) with point-to-point wavelength division multiplexing (PtP WDM) overlay is proposed for the next-generation optical access networks in this paper. A novel software-defined optical distribution network (ODN) structure is designed based on wavelength selective switches (WSS), which can implement wavelength and bandwidth dynamical allocations and suits for the bursty traffic. The experimental results reveal that the TWDM-PON can provide 40 Gb/s downstream and 10 Gb/s upstream data transmission, while the PtP WDM-PON can support 10 GHz point-to-point dedicated bandwidth as the overlay complement system. The wavelengths of the TWDM-PON and PtP WDM-PON are allocated dynamically based on WSS, which verifies the feasibility of the proposed structure.

Author(s):  
Rastislav Róka

The wavelength division multiplexing passive optical network (WDM-PON) is a natural path forward to satisfy demands of optical network operators to develop valuable converged optical metropolitan and access networks. For effective utilization of possible transmission capacities, available wavelengths must be carefully designed for their utilization. Therefore, some principles of wavelength allocation and scheduling methods are characterized and specified. For ensuring the network reliability, efficient traffic protection mechanisms must be implemented. Simultaneously, different equipment in remote nodes can be installed. Therefore, different WDM-PON network designs with traffic protection securing are analyzed and compared. Protection possibilities for various network parts and elements are characterized and optical power budgets are evaluated and optimized. Finally, a research of the DWA algorithms can be realized using functionalities of selected wavelength scheduling methods. Moreover, the wavelength transmission capacity characterizing can be simultaneously determined.


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