IMARA Team at INRIA Research Center, Domaine de Voluceau-Rocquencourt, BP 105, 78153 Le Chesnay, France.
Sensors (Basel). 2013 Feb 21;13(2):2645-63. doi: 10.3390/s130202645.
Electric vehicles are progressively introduced in urban areas, because of their ability to reduce air pollution, fuel consumption and noise nuisance. Nowadays, some big cities are launching the first electric car-sharing projects to clear traffic jams and enhance urban mobility, as an alternative to the classic public transportation systems. However, there are still some problems to be solved related to energy storage, electric charging and autonomy. In this paper, we present an autonomous docking system for electric vehicles recharging based on an embarked infrared camera performing infrared beacons detection installed in the infrastructure. A visual servoing system coupled with an automatic controller allows the vehicle to dock accurately to the recharging booth in a street parking area. The results show good behavior of the implemented system, which is currently deployed as a real prototype system in the city of Paris.
电动汽车因其能够减少空气污染、燃料消耗和噪音污染,正在逐步在城市中推广。如今,一些大城市正在推出首个电动汽车共享项目,以缓解交通拥堵,提高城市交通的机动性,作为对传统公共交通系统的一种补充。然而,在能源存储、充电和自主性方面,仍然存在一些需要解决的问题。在本文中,我们提出了一种基于嵌入式红外摄像机的电动汽车自主对接充电系统,该摄像机能够检测基础设施中安装的红外信标。视觉伺服系统与自动控制器相结合,可使车辆在街道停车位上准确停靠在充电亭。实验结果表明,所实现的系统具有良好的性能,该系统目前已作为一个实际的原型系统在巴黎市部署。