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Adaptive Forward Error Correction Scheme to Improve Data Reliability in Solar-Powered Wireless Sensor Networks

机译:自适应前向纠错方案可提高太阳能无线传感器网络中数据的可靠性

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摘要

The data-link layer takes charge of reliable inter-node communication in open systems interconnection (OSI) reference model. Generally, in the environment of wireless sensor network (WSN) where errors are frequently occurred, the forward error correction (FEC) method is mainly used at this data-link layer. However, the FEC method requires more amount of energy consumption as it has higher ability of error correction rate, thus reducing the network lifetime seriously. Meanwhile, as the energy is regularly recharged in the solar-powered WSN (in contrast with the battery-based WSN), a greater amount of energy than that required for fundamental operation of nodes might exist in the node. By utilizing this surplus energy efficiently, the proposed energy-aware FEC method can reduce the data loss rate without any decrement of network lifetime. This method uses a trade-off relationship between the energy and data loss rate by adjusting the parity length in the FEC method according to a state of energy in each node. The performance of the proposed scheme is verified through the simulation.
机译:数据链路层负责开放系统互连(OSI)参考模型中的可靠节点间通信。通常,在无线传感器网络(WSN)经常发生错误的环境中,前向纠错(FEC)方法主要用于此数据链路层。然而,由于FEC方法具有更高的纠错率能力,因此需要更多的能量消耗,从而严重缩短了网络寿命。同时,由于能量在太阳能型WSN中定期充电(与基于电池的WSN相比),因此节点中可能存在比节点基本操作所需能量更多的能量。通过有效地利用这种剩余能量,所提出的能量感知FEC方法可以在不降低网络寿命的情况下降低数据丢失率。该方法通过根据每个节点中的能量状态来调整FEC方法中的奇偶校验长度,从而在能量与数据丢失率之间权衡关系。通过仿真验证了所提方案的性能。

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