Title :
A Ring-Based Wireless Optical Network to Reduce the Handover Latency
Author :
Mukhopadhyay, Atri ; Das, Goutam
Author_Institution :
G.S. Sanyal Sch. of Telecommun., Indian Institiute of Technol. Kharagpur, Kharagpur, India
Abstract :
This paper proposes a ring-based integrated wireless optical network architecture and an associated protocol that involves Ethernet passive optical network (EPON) and long term evolution (LTE) wireless network. The architecture along with the proposed protocol is instrumental toward the reduction of handover delay. The proposed ring-based EPON architecture facilitates the implementation of the X2 interface for LTE network by enabling the optical network units of the EPON backhaul to directly communicate with each other. The work further discusses about an open access network architecture where a single EPON can be used by multiple mobile service providers without compromising information security. Extensive simulations have been carried out to evaluate the performance of the proposed network. An analytical model has been introduced to calculate the queuing delay experienced by the X2 interface. The model has been validated with the simulations results.
Keywords :
Long Term Evolution; integrated optoelectronics; mobility management (mobile radio); optical fibre LAN; passive optical networks; radio access networks; EPON backhaul; Ethernet passive optical network; LTE network; Long Term Evolution wireless network; X2 interface; handover latency reduction; multiple mobile service providers; open access network architecture; optical network units; queuing delay; ring-based EPON architecture; ring-based integrated wireless optical network architecture; Delays; EPON; IEEE 802.3 Standards; Passive optical networks; Protocols; Uplink; EPON; Handover; LTE; RPR; X2; handover; mobile backhauling; open access; ring topology; token ring; wireless optical integrated network;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2015.2452260