利用蓝牙Mesh实现家用电动汽车充电站协同充电的实验分析

S. Rinaldi, A. Flammini, M. Pasetti, A. Depari, Elia Mondini, E. Sisinni, P. Ferrari
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引用次数: 0

摘要

最近的能源政策倾向于采用电动汽车来取代内燃机。然而,由于电动汽车充电对电力的需求不断增加,配电系统运营商(dso)面临着越来越大的挑战。为了解决这个问题,协调充电系统正变得越来越流行:一个监督系统可以控制充电站(CS)为电动汽车供电(EV)提供的电量。实现这种控制方案需要通信系统能够允许所有充电基础设施的参与者之间进行适当的信息交换。这项研究活动的目的是调查使用最近为家庭自动化应用开发的蓝牙Mesh协议的可行性,该协议允许用户、车辆和管理员与CS之间进行信息交换。与传统的蓝牙相比,Mesh解决方案的优势在于无需基础设施,并经过优化以降低能耗(最适合电池供电的系统)。因此,它代表了一个很好的折衷解决方案,允许在国内应用中监督CS的信息交换。实验室的实验表征表明,蓝牙Mesh网络(1跳)的最大端到端延迟约为141 ms,完全符合应用要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using Bluetooth Mesh to Enable Coordinate Charge of Domestic Charging Station for Electric Vehicles: An Experimental Analysis
Recent energy policies have favored the adoption of electric vehicles to replace internal combustion engines. However, the growing presence of electric vehicles causes Distribution System Operators (DSOs) to face ever-increasing challenges due to the ever-increasing demand for electricity for recharging electric vehicles. To address this issue, coordinated charging systems are becoming increasingly popular: a supervision system can control the amount of electricity supplied by a Charging Station (CS) for Electric Vehicle Supply (EV). Implementing this control scheme requires communication systems capable of allowing an appropriate exchange of information between all charging infrastructure's players. The goal of this research activity is to investigate the feasibility of using the recent Bluetooth Mesh protocol, which was developed for home automation applications, to allow information exchange between users, vehicles and supervisor with CS. When compared to traditional Bluetooth, the Mesh solution has the advantage of being infrastructure-less and optimized to reduce energy consumption (optimal for battery-powered systems). As a result, it represents a good compromise solution for allowing information exchange for the supervision of CS in domestic applications. The experimental characterization in laboratory revealed that the maximum end-to-end latency in a Bluetooth Mesh network (1 hop) is around 141 ms, which is completely compliant with application requirements.
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