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LACAV: an energy-efficient channel assignment mechanism for vehicular ad hoc networks

机译:LACAV:用于车辆自组织网络的节能通道分配机制

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摘要

Designing an efficient channel assignment system for Vehicular Ad hoc Networks (VANETs), which conserves energy, is a challenging task, primarily because of the high degrees of mobility of nodes in these networks. As the high mobility of nodes in vehicular networks leads to frequent handoffs, channel assignment in VANETs becomes a tedious task. In this paper, we propose a channel assignment mechanism using the concepts of learning automata (LA) and reusability. LA is used to optimize the performance of the proposed system by selecting suitable number of reserved channels for the handoff calls and reusability allows the channel to be reused by the different base stations (BSs) based on the reuse distance. The proposed system is designed to reduce the dropping probability. The proposed system is suitable for network architectures in which it is possible to arrange the BSs with different groups of channels sequentially in a particular order that helps in conserving energy. Our experiments clearly indicate that the system reduces the dropping probability and allows a continuous communication throughout the duration of the call. The performance of proposed algorithm is compared with the Vehicular Fast Handover Scheme (VFHS), and the Cooperative scheme for service channel reservation (CRaSCH) scheme in terms of handoff latency, and it is shown that the proposed algorithm performs better than VFHS and CRaSCH.
机译:设计用于车辆自组织网络(VANET)的高效信道分配系统以节省能源是一项艰巨的任务,这主要是由于这些网络中节点的高度移动性。由于车载网络中节点的高移动性导致频繁的切换,因此VANET中的信道分配变得繁琐。在本文中,我们提出了一种使用学习自动机(LA)和可重用性的概念的信道分配机制。通过为切换呼叫选择合适数量的预留信道,LA用于优化建议系统的性能,可复用性允许该信道根据重用距离被不同的基站(BS)重用。提出的系统旨在减少掉线的可能性。所提出的系统适用于这样的网络架构,在该网络架构中,可以以有助于节省能量的特定顺序将具有不同信道组的BS顺序地布置。我们的实验清楚地表明,该系统降低了掉线概率,并允许在整个通话期间进行连续通信。将该算法的性能与车载快速切换方案(VFHS)和服务信道预留协作方案(CRaSCH)的切换时延进行了比较,结果表明该算法的性能优于VFHS和CRaSCH。

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