Reducing the response time of Emergency Vehicles (EVs) has an undoubted advantage in saving life and property. Implementing pre-emption can aid in achieving it. EVs get unobstructed movement via pre-emption, usually by altering traffic signals and giving a green wave throughout the route. This approach of absolute pre-emption effects adversely on regular traffic by imposing unnecessary waiting. In this paper, we propose a novel emergency vehicle pre-emption (EVP) algorithm implemented in the Vehicular Ad-hoc Network (VANET) that can reduce the imposed undesirable waiting time, but still ascertains EVs meet target response time. We introduce mixed-criticality real-time system scheduling concept where different level of emergencies is mapped with different criticality levels and assign certain success assurance level to respective criticality. We implemented the EVP algorithm for an arterial traffic network and leveraged the use of valuable information that gets transmitted via VANET to make critical decisions. The proposed algorithm can significantly reduce the average waiting time of regular traffic. It also ascertains all EVs with different level of criticality meet target response time respective to their assurance level.
翻译:降低紧急车辆(EVs)的反应时间在拯救生命和财产方面具有无可置疑的优势。 实施先发制人可以帮助实现这一目标。 EV通过先发制人,通常通过改变交通信号和在整个路线上发出绿色波波来不受阻碍地移动。 这种通过强加不必要的等待,对正常交通产生绝对的先发制人效应的做法。 在本文中,我们提议在车辆特别热电网(VANET)中实施一种新的紧急车辆先发制人算法,可以减少强加的不受欢迎的等待时间,但仍能确定EVs达到目标响应时间。 我们引入了混合临界实时系统调度概念,在不同程度的紧急情况下绘制不同的临界度,并给各自的临界度指定了一定的成功保证级别。 我们实施了动脉交通网络的EVP算法,并利用通过VANET传输的宝贵信息做出关键决定。 拟议的算法可以大大减少正常交通的平均等待时间。 它还确定所有具有不同临界度的EVEVs, 不同程度的目标响应时间达到各自的保证水平。