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On the Design of Smart Parking Networks in the Smart Cities: An Optimal Sensor Placement Model

机译:智能城市中智能停车网络的设计:最优传感器放置模型

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摘要

Smart parking is a typical IoT application that can benefit from advances in sensor, actuator and RFID technologies to provide many services to its users and parking owners of a smart city. This paper considers a smart parking infrastructure where sensors are laid down on the parking spots to detect car presence and RFID readers are embedded into parking gates to identify cars and help in the billing of the smart parking. Both types of devices are endowed with wired and wireless communication capabilities for reporting to a gateway where the situation recognition is performed. The sensor devices are tasked to play one of the three roles: (1) slave sensor nodes located on the parking spot to detect car presence/absence; (2) master nodes located at one of the edges of a parking lot to detect presence and collect the sensor readings from the slave nodes; and (3) repeater sensor nodes, also called “anchor” nodes, located strategically at specific locations in the parking lot to increase the coverage and connectivity of the wireless sensor network. While slave and master nodes are placed based on geographic constraints, the optimal placement of the relay/anchor sensor nodes in smart parking is an important parameter upon which the cost and efficiency of the parking system depends. We formulate the optimal placement of sensors in smart parking as an integer linear programming multi-objective problem optimizing the sensor network engineering efficiency in terms of coverage and lifetime maximization, as well as its economic gain in terms of the number of sensors deployed for a specific coverage and lifetime. We propose an exact solution to the node placement problem using single-step and two-step solutions implemented in the Mosel language based on the Xpress-MPsuite of libraries. Experimental results reveal the relative efficiency of the single-step compared to the two-step model on different performance parameters. These results are consolidated by simulation results, which reveal that our solution outperforms a random placement in terms of both energy consumption, delay and throughput achieved by a smart parking network.
机译:智能停车是一种典型的物联网应用,可以从传感器,执行器和RFID技术的进步中受益,从而为其智能城市的用户和停车所有者提供许多服务。本文考虑了一种智能停车基础设施,其中将传感器放置在停车位上以检测汽车的存在,并将RFID阅读器嵌入到停车门中以识别汽车并帮助智能停车计费。两种类型的设备都具有有线和无线通信功能,可以向执行情况识别的网关报告。传感器设备的任务是扮演以下三个角色之一:(1)位于停车位的从属传感器节点,用于检测汽车的有无; (2)位于停车场边缘之一的主节点,用于检测存在并从从节点收集传感器读数; (3)中继器传感器节点(也称为“锚定”节点),战略性地位于停车场的特定位置,以增加无线传感器网络的覆盖范围和连接性。虽然从属节点和主节点是根据地理约束来放置的,但智能停车中中继/锚定传感器节点的最佳放置是停车系统的成本和效率所依赖的重要参数。我们将传感器在智能停车场中的最佳位置公式化为整数线性规划多目标问题,从覆盖范围和使用寿命最大化方面优化传感器网络工程效率,并从针对特定部署的传感器数量方面获得经济收益覆盖范围和寿命。我们使用基于Xpress-MPsuite库的Mosel语言实现的单步和两步解决方案,提出了一种精确的节点放置问题解决方案。实验结果表明,在不同的性能参数下,单步法与两步法模型相比具有相对效率。这些结果通过仿真结果得到了巩固,这些仿真结果表明,我们的解决方案在能耗,延迟和智能停车网络的吞吐量方面都优于随机布置。

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