Demand responsive public transportation using wireless technologies

S. Prashanth, S. Geetha, A. ShanmughaSundaramG.
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引用次数: 1

Abstract

Air pollution has been the bane of society for which we still have not got a satisfying solution. The air pollution due to automobiles constitutes around 60--90% of the total air pollution in the urban area. To curtail this, the mass transportation, bus facilities in particular, in any city has to be fine tuned in such a way that they serve the need of the people. In order to make the whole bus transportation easy and convenient for the public there is a need for optimizing the bus routes based on the destinations of the commuting passengers. In this paper, a demand responsive public transportation scheme is proposed, that also entitles the buses to run without a fixed schedule and adjust the schedules based on the passengers' convenience. On a given map, select places called as the "hot-spots" would serve as the present day bus stop equivalents. These hot-spots will have an appropriate hardware interface for the commuters. Upon suitable activation the passenger is making a request for the bus. This request is sent to a centralized scheduling server which will receive all such requests from various hot-spots, processes them and re-route the nearest bus to the passenger's location. Based on the passenger's destination, a route based on Djiktra's algorithm for least time of transit is generated. The communication between the server and the clients can be achieved though various technologies like GSM, Ethernet or a Wi-Fi enabled network set up. The signal that is sent from the clients to the server will again depend on the chosen network. This will enable the passengers to commute to their destination within a shorter time and in the shortest route possible.
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要求使用无线技术的响应式公共交通
空气污染一直是社会的祸根,我们至今还没有找到令人满意的解决办法。汽车造成的空气污染约占城市空气污染总量的60- 90%。为了减少这种情况,任何城市的公共交通,特别是公共汽车设施,都必须进行微调,使其满足人们的需要。为了使公交出行更加便捷,有必要根据通勤乘客的目的地对公交路线进行优化。本文提出了一种需求响应型公共交通方案,该方案赋予公交车不固定的运行时间,并根据乘客的便利性来调整运行时间。在给定的地图上,选定的被称为“热点”的地方就相当于今天的公交车站。这些热点将为通勤者提供适当的硬件接口。在适当的激活后,乘客正在请求乘坐公共汽车。该请求被发送到一个集中调度服务器,该服务器将接收来自各个热点的所有此类请求,对其进行处理,并将最近的公交车重新路由到乘客所在的位置。根据乘客的目的地,生成一条基于Djiktra最短过境时间算法的路线。服务器和客户端之间的通信可以通过各种技术来实现,比如GSM、以太网或启用Wi-Fi的网络。从客户机发送到服务器的信号将再次取决于所选择的网络。这将使乘客能够在更短的时间内以最短的路线通勤到目的地。
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