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Power Aware Mobility Management of M2M for IoT Communications

机译:用于物联网通信的M2M动力感知移动管理

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摘要

Machine-to-Machine (M2M) communications framework is evolving to sustain faster networks with the potential to connect millions of devices in the following years. M2M is one of the essential competences for implementing Internet of Things (IoT). Therefore, various organizations are now focusing on enhancing improvements into their standards to support M2M communications. Thus, Heterogeneous Mobile Ad Hoc Network (HetMANET) can normally be considered appropriate for M2M challenges. These challenges incorporated when a mobile node (MN) selects a target network in an energy efficient scanning for efficient handover. Therefore, to cope with these constraints, we proposed a vertical handover scheme for handover triggering and selection of an appropriate network. The proposed scheme is composed of two phases. Firstly, the MNs perform handover triggering based on the optimization of the Receive Signal Strength (RSS) from an access point/base station (AP/BS). Secondly, the network selection process is performed by considering the cost and energy consumption of a particular application during handover. Moreover, if there are more networks available, then the MN selects the one provided with the highest quality of service (QoS). The decision regarding the selection of available networks is made on three metrics, that is, cost, energy, and data rate. Furthermore, the selection of an AP/BS of the selected network is made on five parameters: delay, jitter, Bit Error Rate (BER), communication cost, and response time. The numerical and experimental results are compared in the context of energy consumption by an MN, traffic management on an AP/BS, and QoS of the available networks. The proposed scheme efficiently optimizes the handoff related parameters, and it shows significant improvement in the existing models used for similar purpose.
机译:机器到机器(M2M)通信框架正在不断发展,以维持更快的网络,可能在接下来的几年内连接数百万设备。 M2M是实施事物互联网(物联网)的基本竞争之一。因此,各种组织目前侧重于加强改进其标准,以支持M2M通信。因此,异构移动临时网络(HetManet)通常可以被认为适合M2M挑战。当移动节点(MN)在节能扫描中选择目标网络以进行有效切换时,这些挑战结合于此挑战。因此,为了应对这些约束,我们提出了一种用于切换触发和选择适当网络的垂直切换方案。该方案由两个阶段组成。首先,MNS基于从接入点/基站(AP / BS)的接收信号强度(RSS)的优化进行切换触发。其次,通过考虑在切换期间特定应用的成本和能量消耗来执行网络选择过程。此外,如果有更多的网络可用,则MN选择具有最高服务质量(QoS)的网络。关于选择可用网络的决定是在三个指标上进行的,即成本,能量和数据速率。此外,选择所选网络的AP / BS的选择是在五个参数上进行的:延迟,抖动,误码率(BER),通信成本和响应时间。在AP / BS上的MN,交通管理和可用网络的QoS的能量消耗的背景下比较数值和实验结果。该方案有效地优化了切换相关参数,并且它显示出用于类似目的的现有模型的显着改进。

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