首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Empowered Hybrid Parent Selection for Improving Network Lifetime, PDR, and Latency in Smart Grid
【24h】

Empowered Hybrid Parent Selection for Improving Network Lifetime, PDR, and Latency in Smart Grid

机译:支持混合父级选择,以改善智能电网中的网络寿命、PDR 和延迟

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

To support the constraints of smart meters-low power and memory-of AMI network, RPL is considered as the most suitable routing protocol to be implemented in practice. Network lifetime, PDR, and latency are the critical issues to be focused on and addressed. Generally, single parent selection scheme cannot satisfy all expected performance requirements of RPL based on AMI network due to tradeoff between workload balancing and transmission performance, PDR and latency. Moreover, the single parent also suffers from the package size and transmission range. Then, multiparent solution is proposed to overcome these demerits using multipath transmission strategy. Although the existing multiparent solutions, MELT and MAHP, overcome the issue of transmission performance, they present low network lifetime since multiparent solution consumes high energy in data transmission. In this paper, we propose an "empowered hybrid parent selection (EHPS)" that exploits the merits of multiparent solution and the single parent with cognitive radio technology in a hybridizing scheme. To split the data packet efficiently under multipath transmission strategy, a fuzzy AHP (FAHP) is adopted; therefore, EHPS balances the workload effectively and maximizes the network lifetime over long transmission range and large data size. Moreover, by exploiting cognitive radio, EHPS is flexible to the transmission range and data size since it achieves the highest transmission performance, highest PDR, and lowest latency among others, while maintaining high network lifetime.
机译:为了支持智能电表(低功耗和内存)对AMI网络的限制,RPL被认为是最适合在实践中实施的路由协议。网络寿命、PDR 和延迟是需要关注和解决的关键问题。通常,由于工作负载均衡与传输性能、PDR和延迟之间的权衡,单父选择方案无法满足基于AMI网络的RPL的所有预期性能要求。此外,单亲父母还受到包装尺寸和传输范围的影响。然后,提出了一种多亲解决方案,利用多径传输策略克服了这些缺点。虽然现有的多母解决方案MELT和MAHP克服了传输性能的问题,但由于多母解决方案在数据传输中消耗高能量,因此网络寿命较短。在本文中,我们提出了一种“赋能混合亲本选择(EHPS)”,该选择利用了多亲解决方案和认知无线电技术在杂交方案中的单亲的优点。为了在多径传输策略下高效拆分数据包,该文采用模糊AHP(FAHP);因此,EHPS可以有效地平衡工作负载,并在长传输距离和大数据量下最大限度地延长网络寿命。此外,通过利用认知无线电,EHPS可以灵活地适应传输范围和数据大小,因为它实现了最高的传输性能、最高的PDR和最低的延迟,同时保持了较长的网络寿命。

著录项

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