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首页> 外文期刊>Intelligent Transportation Systems, IEEE Transactions on >A New Take on Protecting Cyclists in Smart Cities
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A New Take on Protecting Cyclists in Smart Cities

机译:保护智慧城市骑自行车者的新思路

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Pollution in urban centers is becoming a major societal problem. While pollution is a concern for all urban dwellers, cyclists are one of the most exposed groups due to their proximity to vehicle tailpipes. Consequently, new solutions are required to help protect citizens, especially cyclists, from the harmful effects of exhaust-gas emissions. In this context, hybrid vehicles (HVs) offer new actuation possibilities that can be exploited in this direction. More specifically, such vehicles, when working together as a group, have the ability to dynamically lower the emissions in a given area, thus benefiting citizens, whilst still giving the vehicle owner the flexibility of using an internal combustion engine. This paper aims to develop an algorithm that can be deployed in such vehicles, whereby geofences (virtual geographic boundaries) are used to specify areas of low pollution around cyclists. The emissions level inside the geofence is controlled via a coin-tossing algorithm to switch the HV motor into, and out of, electric mode, in a manner that is in some sense optimal. Theoptimalitycriterion is based on how polluting vehicles inside the geofence are, and the expected density of cyclists near each vehicle. The algorithm is triggered once a vehicle detects a cyclist. Implementations are presented both in simulation and in a real vehicle, and the system is tested using a hardware-in-the-loop platform (video provided).
机译:城市中心的污染正在成为一个主要的社会问题。尽管污染是所有城市居民的关注点,但由于骑自行车者靠近车辆的排气管,因此它们是暴露程度最高的群体之一。因此,需要新的解决方案来帮助保护公民,尤其是骑自行车的人免受废气排放的有害影响。在这种情况下,混合动力汽车(HV)提供了新的驱动可能性,可以在这个方向上加以利用。更具体地,当这些车辆作为一个整体一起工作时,具有动态降低给定区域中的排放物的能力,从而使居民受益,同时仍为车辆所有者提供了使用内燃机的灵活性。本文旨在开发一种可在此类车辆中使用的算法,由此地理围栏(虚拟地理边界)可用于指定骑车人周围的低污染区域。通过投币算法控制地理围栏内的排放水平,从而以某种意义上最佳的方式将HV电动机切换为电动模式或从电动模式切换为电动模式。 n <斜体xmlns:mml = “ http://www.w3.org/1998/Math/MathML ” xmlns:xlink = “ http://www.w3.org/1999/xlink ”>最佳化标准是基于地理围栏内车辆的污染程度以及每辆车附近骑自行车者的预期密度。一旦车辆检测到骑自行车的人,就会触发该算法。在仿真和实际车辆中均提供了实现,并且使用硬件在环平台(提供了视频)对系统进行了测试。

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