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Performance Metrics Evaluations for Selected Proactive Routing Protocols in Smart Grid Neighbourhood Area Wireless Mesh Network
Anderson, Enock
The smart grid communication network has improved energy optimization delivery from generation, transmission, and consumption. The introduction of wireless mesh networks in the area of Neighbourhood ad hoc Networks has contributed to the quick and cost-effective way of deployment in the areas where back-haul technology like fiber optic is expensive and challenging and may not be timely. The IEEE 802.11s standard-based wireless mesh network associated with the hybrid wireless mesh protocol is highly recommended due to its extended functionality. However, the hybrid wireless mesh protocol based mesh networks can not guarantee the quality of service in such an environment. The OLSR (Optimised Link State Routing) protocol outperforms the Reactive protocol in ad hoc Networks when transmission quality is required. This paper proposes the adaptation of Extended Transmission Control with OLSR as the optimized protocol for such an environment in neighbourhood ad hoc networks. The simulation study was carried out using the NS3 simulator to evaluate the performance of OLSR and OLSR-ETX (OLSR with Expected Transmission Count). The results confirm the viability of this protocol for neighbourhood ad hoc networks and also outperform similar simulation using NS2. The implementation of OLSR-ETX in the neighbourhood ad hoc networks rural environment will increase reliability and improve Demand Response DR in Smart Grid.

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