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Scalable Route Map for Advanced Metering Infrastructure Based on Optimal Routing of Wireless Heterogeneous Networks

机译:基于无线异构网络最优路由的高级计量基础架构可扩展路由图

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This article presents a scalable route map for the least cost deployment of wireless heterogeneous networks that support traffic from the advance metering infrastructure (AMI). We first explore the performance of a common scenario in which a single technology is employed to connect smart meters sending traffic to the utility. Based on simulations with actual city maps, we study the coverage provided to smart meters by an LTE cellular network. In order to improve the coverage, an optimization model that considers network capacity and range is proposed to determine the optimal location of base stations to achieve a target coverage of smart meters. According to these preliminary results with a single access technology, we propose an evolved network architecture that considers several alternatives of wireless heterogeneous networks to guarantee the coverage to smart meters with the least use of resources. We introduce a heuristic model that involves elements from base stations, universal data aggregation points, number of smart meters, and an optimal routing to achieve the desired connectivity from the group of smart meters. We employ geo-referenced models to consider actual characteristics of cities as well as geographical conditions. Results from the evolved model demonstrate that by combining technologies and employing data aggregation points with optimized localizations, the network is able to achieve a target coverage of smart meters with a reduced cost in terms of technological resources.
机译:本文介绍了一种可扩展的路由图,用于支持成本最低的无线异构网络,该异构网络支持来自高级计量基础结构(AMI)的流量。我们首先探讨一种常见情况的性能,在这种情况下,采用一种技术来连接将电表发送到公用事业的智能电表。基于实际城市地图的模拟,我们研究了LTE蜂窝网络为智能电表提供的覆盖范围。为了提高覆盖范围,提出了一种考虑网络容量和范围的优化模型,以确定基站的最佳位置,以实现智能电表的目标覆盖范围。根据这些采用单一接入技术的初步结果,我们提出了一种演进的网络体系结构,该体系结构考虑了无线异构网络的几种替代方案,以确保以最少的资源使用覆盖智能电表。我们介绍一种启发式模型,该模型涉及基站中的元素,通用数据聚合点,智能电表的数量以及实现智能电表组所需连接性的最佳路由。我们采用地理参考模型来考虑城市的实际特征以及地理条件。演化模型的结果表明,通过结合技术并使用具有最佳化位置的数据聚合点,该网络能够以降低的技术资源成本实现智能电表的目标覆盖范围。

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