This section addresses the basic concepts of mobility modeling for motorcycles. Finally, a conclusion and future work are provided in the last section. The results are evaluated in section four, where the impact of six mobility models for motorcycles is analyzed from efficiency and environmental aspects. In the next section, we discuss simulation platform parameters and requirements. ![]() Section two deals with concepts concerning modeling motorcycle mobility. The remainder of this paper is organized as follows. ![]() Different driving scenarios result in different traffic flows, speed, travel time, fuel consumption and emission of CO 2. To this end, six different mobility models for motorcycles are devised and the impact of these models is explored on traffic flows. This might be useful for many companies working on traffic flow issues. Here, the motorcycle mobility is modeled and its impact on the distinct types of vehicles traveling on the road is studied. So, simulation of traffic is very cost-effective and helpful for studying traffic flows. For instance, it would be very difficult, expensive and dangerous to set a traffic jam test in the real world. Simulation is recognized to be one of the most beneficial tools for analyzing traffic flows. To simulate different mobility models, we have benefited from the open-source traffic simulation framework SUMO. Based on the problems of ineffective traffic flows, companies like Google, TomTom, HERE Technologies are hugely investing to solve the problems related to traffic flows and provide a better service for their customers. Nowadays, since the number of vehicle types is increasing, conducting research and studying on traffic flow issues is one of the interesting topics for many companies. Thereby, they can affect traffic jams, efficiency, safety and congestion. For example, they can accelerate or decelerate faster, maneuver between lanes or in a shared lane, move to adjacent lanes, or even form dense traffic on an unsaturated road. Based on their size and abilities in mobility, motorcycles sometimes do not follow the same physical traffic rules as other vehicles. Motorcycles are one of the most popular vehicles that have certain effects on the traffic flows and their popularity mainly comes from their ability to move around the traffic. The improvement of traffic efficiency is a worldwide problem that many governments are dealing with especially on major roads and in big cities. In this context, due to the growing number of motorcycles in many countries, we must take into account the significance of motorcycles’ and other two wheelers’ role in vehicular mobility. ![]() With the advent of intelligent transport systems, numerous novel applications have been proposed concerning vehicular modeling in terms of both individual and overall traffic flow. There have been many efforts to enhance the mobility modeling of vehicles in order to assess or replicate specific traffic conditions such as jams or crashes.
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