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6RLR-ABC: 6LoWPAN Routing Protocol With Local Repair Using Bio Inspired Artificial Bee Colony
arXiv - CS - Emerging Technologies Pub Date : 2020-06-05 , DOI: arxiv-2006.03379
Nurul Halimatul Asmak Ismail, Samer A. B. Awwad, Rosilah Hassan

In recent years, Micro-Electro-Mechanical System (MEMS) has successfully enabled the development of IPv6 over Low power Wireless Personal Area Network (6LoWPAN). This network is equipped with low-cost, low-power, lightweight and varied functions devices. These devices are capable of amassing, storing, processing environmental information and conversing with neighbouring sensors. These requisites pose a new and interesting challenge for the development of IEEE 802.15.4 together with routing protocol. In this work, 6LoWPAN Routing Protocol with Local Repair Using Bio Inspired Artificial Bee Colony (6RLR-ABC) has been introduced. This protocol supports connection establishment between nodes in an energy-efficient manner while maintaining high packet delivery ratio and throughput and minimizing average end-to-end delay. This protocol has been evaluated based on increasing generated traffic. The performance of the designed 6RLR-ABC routing protocol has been evaluated compared to 6LoWPAN Ad-hoc On-Demand Distance Vector (LOAD) routing protocol. LOAD protocol has been chosen since it is the most relevant existed 6LoWPANrouting protocol. The simulation results show that the introduced 6RLR-ABC protocol achieves lower packet average end-to-end delay and lower energy consumption compared to LOAD protocol.Additionally,the packet delivery ratio of the designed protocol is much higher than LOAD protocol. The proposed 6RLR-ABC achieved about 39% higher packet delivery ratio and about 54.8% higher throughput while simultaneously offering lower average end-to-end delay and lower average energy consumption than LOAD protocol.

中文翻译:

6RLR-ABC:使用仿生人工蜂群进行局部修复的 6LoWPAN 路由协议

近年来,微机电系统 (MEMS) 已成功实现基于低功耗无线个人区域网络 (6LoWPAN) 的 IPv6 的开发。该网络配备了低成本、低功耗、重量轻、功能多样的设备。这些设备能够收集、存储、处理环境信息并与邻近的传感器进行对话。这些要求对 IEEE 802.15.4 和路由协议的开发提出了新的有趣的挑战。在这项工作中,引入了使用仿生人工蜂群 (6RLR-ABC) 进行局部修复的 6LoWPAN 路由协议。该协议支持以节能方式在节点之间建立连接,同时保持高数据包交付率和吞吐量,并最大限度地减少平均端到端延迟。该协议已根据增加的生成流量进行了评估。与 6LoWPAN Ad-hoc On-Demand Distance Vector (LOAD) 路由协议相比,已对设计的 6RLR-ABC 路由协议的性能进行了评估。已选择 LOAD 协议,因为它是最相关的现有 6LoWPAN 路由协议。仿真结果表明,与LOAD协议相比,引入的6RLR-ABC协议实现了更低的包平均端到端延迟和更低的能耗。此外,所设计的协议的包投递率远高于LOAD协议。提议的 6RLR-ABC 实现了约 39% 的数据包交付率和约 54.8% 的吞吐量,同时比 LOAD 协议提供更低的平均端到端延迟和更低的平均能耗。与 6LoWPAN Ad-hoc On-Demand Distance Vector (LOAD) 路由协议相比,已对设计的 6RLR-ABC 路由协议的性能进行了评估。已选择 LOAD 协议,因为它是最相关的现有 6LoWPAN 路由协议。仿真结果表明,与LOAD协议相比,引入的6RLR-ABC协议实现了更低的包平均端到端延迟和更低的能耗。此外,所设计的协议的包投递率远高于LOAD协议。提议的 6RLR-ABC 实现了约 39% 的数据包交付率和约 54.8% 的吞吐量,同时比 LOAD 协议提供更低的平均端到端延迟和更低的平均能耗。与 6LoWPAN Ad-hoc On-Demand Distance Vector (LOAD) 路由协议相比,已对设计的 6RLR-ABC 路由协议的性能进行了评估。已选择 LOAD 协议,因为它是最相关的现有 6LoWPAN 路由协议。仿真结果表明,与LOAD协议相比,引入的6RLR-ABC协议实现了更低的包平均端到端延迟和更低的能耗。此外,所设计的协议的包投递率远高于LOAD协议。提议的 6RLR-ABC 实现了约 39% 的数据包交付率和约 54.8% 的吞吐量,同时比 LOAD 协议提供更低的平均端到端延迟和更低的平均能耗。仿真结果表明,与LOAD协议相比,引入的6RLR-ABC协议实现了更低的包平均端到端延迟和更低的能耗。此外,所设计的协议的包投递率远高于LOAD协议。提议的 6RLR-ABC 实现了约 39% 的数据包交付率和约 54.8% 的吞吐量,同时比 LOAD 协议提供更低的平均端到端延迟和更低的平均能耗。仿真结果表明,与LOAD协议相比,引入的6RLR-ABC协议实现了更低的包平均端到端延迟和更低的能耗。此外,所设计的协议的包投递率远高于LOAD协议。提议的 6RLR-ABC 实现了约 39% 的数据包交付率和约 54.8% 的吞吐量,同时比 LOAD 协议提供更低的平均端到端延迟和更低的平均能耗。
更新日期:2020-06-08
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