A Practical Evaluation of a Secure and Energy-Efficient Smart Parking System Using the MQTT Protocol

Ali Alqazzaz, Raed Alharthi, Ibrahim Alrashdi, E. Aloufi, M. Zohdy, Ming Hua
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引用次数: 3

Abstract

The smart parking system is a major component of the smart city concept, especially in the age of the Internet of Things (IoT). It attempts to take the stress out of finding a free parking space in crowded places, mostly during peak times. This paper focuses on implementing a secure smart parking solution based on the publish-subscribe communication model for exchanging a huge volume of data with a large number of clients while minimizing the power consumption. The Elliptic Curve Cryptography (ECC) was adopted in this paper as a promising substitution to traditional public key cryptography such as Rivest-Shamir-Adleman (RSA). The implemented system provides several functional services including parking vacancy detection, real-time information for drivers about parking availability, driver guidance, and parking reservation. Moreover, it provides security mechanisms for both network and application layers. Performance and power consumption experiments using a testbed show the efficiency and practicality of the implemented system, essentially with the IoT resource-constrained devices. Our findings demonstrate achieving energy consumption reductions of up to 54% and a CPU usage decrease of up to 55% compared to the existing solutions.
基于MQTT协议的安全节能智能停车系统的实际评估
智能停车系统是智慧城市概念的重要组成部分,特别是在物联网(IoT)时代。它试图减轻人们在拥挤的地方(主要是高峰时段)寻找免费停车位的压力。本文重点研究了一种基于发布-订阅通信模型的安全智能停车解决方案,以实现与大量客户端交换大量数据的同时最小化功耗。本文采用椭圆曲线密码术(ECC)作为传统公钥密码术如RSA (Rivest-Shamir-Adleman)的替代方案。所实现的系统提供了车位空置检测、车位可用性实时信息、驾驶员引导、车位预定等功能服务。此外,它还为网络层和应用层提供了安全机制。使用测试平台的性能和功耗实验显示了所实施系统的效率和实用性,主要是与物联网资源受限的设备。我们的研究结果表明,与现有的解决方案相比,实现了高达54%的能耗降低和高达55%的CPU使用率降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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