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Building an Energy Efficient Linear Sensor (EELS) Infrastructure for Smart Cities

机译:为智能城市构建节能线性传感器(EELS)基础设施

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In smart cities, a network of various sensors, surveillance devices, and data centers creates a critical infrastructure, which enables civic authorities to render faster and more efficient services. Notably, many deployed sensor applications such as road monitoring (smart lighting, road traffic, pedestrians, etc.), railways (tracking, breaking, etc.) and pipeline sensors (leak, pressure, etc.) form in a linear topology. These linear sensors collect data and report them to a central control station via neighbor sensors. However, relaying data through sensors causes critical energy inefficiency and imbalance issues as well as creates data transmission delay, which provokes complex application and service management hassles.In this paper, we propose an Energy-Efficient Linear Sensor (EELS) Infrastructure for Smart Cities. We design and develop an energy-efficient Wake-up Receiving (WuRx) method on sensor nodes by using a dual-channel, an infrared (IR) based WuRx channel over a Wi-Fi data channel, to enhance the duty cycle efficiency. Besides, we build a pipelined relay algorithm to avoid any network performance (delay) degradation. The experimental results show that IR WuRx EELS performed nine times better energy usage per node and achieved a constant network delay regardless of the number of relaying nodes in the network.
机译:在智慧城市中,由各种传感器,监视设备和数据中心组成的网络创建了关键的基础架构,从而使市政当局能够提供更快,更高效的服务。值得注意的是,许多部署的传感器应用程序(例如道路监控(智能照明,道路交通,行人等),铁路(跟踪,中断等)和管道传感器(泄漏,压力等)形成线性拓扑。这些线性传感器收集数据并通过相邻传感器将其报告给中央控制站。然而,通过传感器中继数据会导致严重的能源效率低下和不平衡问题,并造成数据传输延迟,从而引发复杂的应用程序和服务管理麻烦。本文提出了智能城市的节能线性传感器(EELS)基础设施。我们通过在Wi-Fi数据通道上使用双通道,基于红外(WuRx)的WuRx通道,设计并开发了传感器节点上的节能唤醒方法(WuRx),以提高占空比效率。此外,我们构建了流水线中继算法,以避免任何网络性能(延迟)下降。实验结果表明,无论网络中的中继节点数量如何,IR WuRx EELS的每个节点的能源使用效率都提高了9倍,并实现了恒定的网络延迟。

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