Pegasis Routing Protocol
2016-08-23
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this paper, we propose the mobility of a sink in improved energy efficient PEGASIS-based protocol
(IEEPB) to advance the network lifetime of Wireless Sensor Networks (WSNs). The multi-head chain,
multi-chain concept and the sink mobility affects largely in enhancing the network lifetime of wireless sensors.
Thus, we recommend Mobile sink improved energy-efficient PEGASIS-based routing protocol (MIEEPB); a
multi-chain model having a sink mobility, to achieve proficient energy utilization of wireless sensors. As the
motorized movement of mobile sink is steered by petrol or current, there is a need to confine this movement
within boundaries and the trajectory of mobile sink should be fixed. In our technique, the mobile sink moves
along its trajectory and stays for a sojourn time at sojourn location to guarantee complete data collection.
We develop an algorithm for trajectory of mobile sink. We ultimately perform wide-ranging experiments to
asse
(IEEPB) to advance the network lifetime of Wireless Sensor Networks (WSNs). The multi-head chain,
multi-chain concept and the sink mobility affects largely in enhancing the network lifetime of wireless sensors.
Thus, we recommend Mobile sink improved energy-efficient PEGASIS-based routing protocol (MIEEPB); a
multi-chain model having a sink mobility, to achieve proficient energy utilization of wireless sensors. As the
motorized movement of mobile sink is steered by petrol or current, there is a need to confine this movement
within boundaries and the trajectory of mobile sink should be fixed. In our technique, the mobile sink moves
along its trajectory and stays for a sojourn time at sojourn location to guarantee complete data collection.
We develop an algorithm for trajectory of mobile sink. We ultimately perform wide-ranging experiments to
asse
matlab
协议
路由
PEGASIS
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