Minimum Delay Forwarding in Intermittently Connected Sensor Networks
Md. Majharul Islam Rajib, Asis Nasipuri
Abstract
Md. Majharul Islam Rajib, Asis Nasipuri
Abstract
We consider rechargeable wireless sensor networks that experience intermittent connectivity due to power outages caused by insufficient energy harvesting and limited storage. We present a predictive retransmission strategy that is integrated with opportunistic routing and unicast routing with cooperative relaying to reduce the transmission delay in such networks. Simulation results are presented to demonstrate the effectiveness of the proposed predictive retransmission scheme and the relative performance of opportunistic and cooperative unicast routing under realistic network models.
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We consider rechargeable wireless sensor networks that experience intermittent connectivity due to power outages caused by insufficient energy harvesting and limited storage. We present a predictive retransmission strategy that is integrated with opportunistic routing and unicast routing with cooperative relaying to reduce the transmission delay in such networks. Simulation results are presented to demonstrate the effectiveness of the proposed predictive retransmission scheme and the relative performance of opportunistic and cooperative unicast routing under realistic network models.
Key concepts: Retransmission, Unicast, Computer science, Computer network, Routing (electronic design automation), Wireless sensor network, Routing protocol, Transmission (telecommunications)