An energy-aware data aggregation scheme for grid-based wireless sensor networks
Neng-Chung Wang, Po-Chi Yeh, Yung‐Fa Huang · 2007
Wireless sensor networks (WSNs) are made up of many small and highly sensitive nodes that have the ability to react quickly. In WSNs, sink mobility brings new challenges to large-scale sensor networks. In this paper, we propose an energy-aware data aggregation scheme (EADA) for grid-based wireless sensor networks with a mobile sink. In the proposed scheme, each sensor node with location information and limited energy is considered. Our approach utilizes location information and selects a special gateway in each area of a grid responsible for forwarding messages. We restrict the flooding region to decrease the overhead for route decision by utilizing local information. Simulation results show that the proposed routing scheme outperforms the coordination-based data dissemination scheme (CODE) [11].