Integrated Wireless-pon access Network Architectures Milos Milosavljevic


Chapter 5 Interoperability of xPON and WiMAX



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Chapter 5 Interoperability of xPON and WiMAX 
93 
overlapping wireless users and thus maintaining their network capacity. Additionally, in case of 
fibre failure between a distribution node and an ONU only a single wireless channel could be 
available in an overlapping region resulting in lower data rate availability per user. This has 
been accounted for in the proposed architecture by the capability of utilising additional wireless 
channels to failing ONU/BSs. It is also important to mention, however, that the two overlapping 
cells could operate on the same frequency with the application of spatial multiplexing, 
controlled from the OLT, currently defined as a prerequisite in next generation wireless 
standards [6].
Another significant characteristic of the architecture due to the centralised control mechanism 
and the application of FDM is the efficiency by which multiple channels are allocated per 
wireless sector, allowing for on-demand bandwidth allocation across a sector. In contrast in 
traditional WiMAX deployment the base stations are independent and dynamic bandwidth 
allocation cannot be efficiently provided.
An additional feature of the architecture lies in the upstream where wired and wireless users 
share a single optical carrier in the time domain resulting in optical signals from all ONU/BSs 
arriving at different times at the OLT. The overall network upstream transmission would be 
governed by TDMA to conform to the GPON standard, defining each ONU transmission 
window to approximately 150 µs [7]. These transmission window slots would be used by the 
WiMAX MAC unit in the OLT to schedule the transmitting upstream wireless channels, 
interleaved inside each WiMAX uplink map. Due to the synchronization of the former with the 
latter no buffering would be introduced in the ONU or OLT. In addition, since encapsulation of 
WiMAX packets into GPON frames is avoided no modifications in the WiMAX frame format 
would be required. Therefore, the overall network delay and throughput performance will 
conform to the GPON delay and throughput figures and will depend on the TDMA-PON 



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