首页> 外文期刊>Wireless personal communications: An Internaional Journal >EAPOR: A Distributed, Energy-Aware Topology Control Algorithm Based Path-Obstacle-Remove Model for WSN
【24h】

EAPOR: A Distributed, Energy-Aware Topology Control Algorithm Based Path-Obstacle-Remove Model for WSN

机译:EAPOR:基于分布式能量感知拓扑控制算法的WSN路径障碍消除模型

获取原文
获取原文并翻译 | 示例
       

摘要

The obstacles existing in the propagation path cause shadow fading. As a consequence, signal's energy is additionally consumed to overcome the influence incurred by the shadow fading. This situation leads to the unpredictable communication environment in practical application. However, most topology control algorithms ignore the additional energy consumption in the process of appraising links' communication quality. The topologies based on the ideal signal attenuation model are too ideal to meet the requirements of practical application. In order to obtain a more practical description of the real environment, we structure a new model named path-obstacle-remove model. This model aims at erasing the influence of shadow fading. Thus, it transforms the additional attenuation energy into logic distance between nodes. Besides, considering that the excessive energy consumption of lower-energy nodes restricts the network lifetime, a distributed, energy-aware topology control algorithm based on path-obstacle-remove model (EAPOR) is proposed in this paper. The theoretical analysis demonstrates that the topology constructed by EAPOR is connected and bi-directional. Besides, EAPOR can easily construct the topology with a low message complexity of O(n). The simulation result shows that EAPOR has good performance on robustness and sparseness. Moreover, EAPOR reduces the end-to-end delay and prolongs the network lifetime significantly.
机译:传播路径中存在的障碍会导致阴影褪色。结果,信号的能量被额外消耗以克服阴影衰落所引起的影响。这种情况导致实际应用中的通信环境变幻莫测。但是,大多数拓扑控制算法在评估链路的通信质量的过程中会忽略额外的能耗。基于理想信号衰减模型的拓扑太理想,无法满足实际应用的要求。为了获得对实际环境的更实际描述,我们构建了一个名为path-obstacle-remove模型的新模型。该模型旨在消除阴影褪色的影响。因此,它将额外的衰减能量转换为节点之间的逻辑距离。此外,考虑到低能耗节点过多的能耗限制了网络的生命周期,提出了一种基于路径障碍消除模型(EAPOR)的分布式节能感知拓扑控制算法。理论分析表明,EAPOR构造的拓扑是连通的和双向的。此外,EAPOR可以轻松构建消息复杂度为O(n)的拓扑。仿真结果表明,EAPOR具有良好的鲁棒性和稀疏性。此外,EAPOR减少了端到端延迟,并显着延长了网络寿命。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号