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Energy-Efficient Reliable Routing Considering Residual Energy in Wireless Ad Hoc Networks

机译:无线自组网中考虑剩余能量的高效节能可靠路由

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We propose two novel energy-aware routing algorithms for wireless ad hoc networks, called reliable minimum energy cost routing (RMECR) and reliable minimum energy routing (RMER). RMECR addresses three important requirements of ad hoc networks: energy-efficiency, reliability, and prolonging network lifetime. It considers the energy consumption and the remaining battery energy of nodes as well as quality of links to find energy-efficient and reliable routes that increase the operational lifetime of the network. RMER, on the other hand, is an energy-efficient routing algorithm which finds routes minimizing the total energy required for end-to-end packet traversal. RMER and RMECR are proposed for networks in which either hop-by-hop or end-to-end retransmissions ensure reliability. Simulation studies show that RMECR is able to find energy-efficient and reliable routes similar to RMER, while also extending the operational lifetime of the network. This makes RMECR an elegant solution to increase energy-efficiency, reliability, and lifetime of wireless ad hoc networks. In the design of RMECR, we consider minute details such as energy consumed by processing elements of transceivers, limited number of retransmissions allowed per packet, packet sizes, and the impact of acknowledgment packets. This adds to the novelty of this work compared to the existing studies.
机译:我们为无线ad hoc网络提出了两种新颖的能量感知路由算法,分别称为可靠最小能量成本路由(RMECR)和可靠最小能量路由(RMER)。 RMECR满足ad hoc网络的三个重要要求:能效,可靠性和延长网络寿命。它考虑了节点的能耗和剩余电池能量以及链路质量,以找到节能高效且可靠的路由,从而延长了网络的使用寿命。另一方面,RMER是一种节能路由算法,该算法可找到使端到端数据包遍历所需的总能量最小的路由。提出了RMER和RMECR用于逐跳或端到端重传确保可靠性的网络。仿真研究表明,RMECR能够找到类似于RMER的节能高效的路由,同时还能延长网络的使用寿命。这使RMECR成为提高无线自组织网络的能效,可靠性和寿命的绝佳解决方案。在RMECR的设计中,我们考虑了详细的细节,例如收发器处理单元消耗的能量,每个数据包允许的重传数量有限,数据包大小以及确认数据包的影响。与现有研究相比,这增加了这项工作的新颖性。

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