Generally, the traditional layered protocol architecture is used to design protocols for wireless sensor networks in which MAC and Routing protocols act independently and this may cause counteraction between them. Cross-layer protocols are known to be more efficient.In this paper, we present MAR-WSN, a MAC-aware Routing protocol for Wireless Sensor Networks, in which the next hop decisions are made based on the TDMA scheduling and the two-hop neighbourhood knowledge. Coherent decisions in space, taken by the routing protocol, with those taken by the MAC protocol, in time, prove to be efficient against several metrics: delay, energy consumption and hop number. The simulation results show good performance of our strategy in medium and high density networks compared to the state of the art.
Protocols for wireless sensor networks are generally designed following the layered protocol stack where layers are independent. Uncorrelated decisions coming from different layers may affect certain metrics such as the latency of communications, the energy consumption, etc. Cross-layer approaches overcome this problem by exploiting the dependencies between the layers. In this article, the authors propose latency and energy mac-aware routing for wireless sensor networks (LEMAR-WSN), a new cross-layer routing approach using information of the TDMA schedule and exploiting the information of the energy consumed by each node in order to optimize the latency of communications and the energy consumption when relaying information to the sink in a wireless sensor network. Simulation results show that the proposed approach improves the average latency of communications up to 20% and the average.
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