Application of Ant Colony Optimization: An Approach towards Travelling Salesman Problem Resolution

Priyanka P. Shinde, Varsha P. Desai, K. S. Oza
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Abstract

In today’s world everyone uses vehicle for the transportation this leads lots of air pollution, lots of traffic and wastage of time as well as wastage of fuel. It also leads driver dissatisfaction and costs billions of dollars every year in fuel utilization all over the world. Tracking down an appropriate answer for vehicle clog is an extensive test because of the dynamic and capricious nature of the organization geography of vehicular conditions, particularly in metropolitan regions. The objective of study is to find the shortest path to minimize the drawback of travelling. In the ant colony optimization, there are various techniques used to resolve the travelling salesman problem. The literature study of ant colony optimization algorithm is studied to find out how the ant colony algorithms used for solving the travelling salesman problem and improve the performance according to the requirements. The behavior of ant is observed to do improvements in the ant colony optimization algorithm. Ant leaves pheromone while traveling the other ants follows that pheromone trail and by trail of pheromone, ants can determine the shortest path of travelling. Similarly, the ACO is used in TSP in which the algorithm helps to visit each city only once with minimal distance and time.
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蚁群算法在旅行商问题求解中的应用
在当今世界,每个人都使用汽车作为交通工具,这导致了大量的空气污染,大量的交通和时间的浪费以及燃料的浪费。它也导致了司机的不满,并且每年在全球范围内造成数十亿美元的燃料消耗。由于车辆状况的组织地理的动态和反复无常的性质,特别是在大都市地区,追踪车辆堵塞的适当答案是一项广泛的测试。研究的目的是找到最短的路径,使旅行的缺点最小化。在蚁群优化中,有各种各样的技术用于解决旅行商问题。通过对蚁群优化算法的文献研究,了解蚁群算法如何用于求解旅行商问题,并根据要求提高算法的性能。观察蚂蚁的行为,对蚁群优化算法进行改进。蚂蚁在旅行时留下信息素,其他蚂蚁跟随信息素的踪迹,通过信息素的踪迹,蚂蚁可以确定旅行的最短路径。同样,蚁群算法也被应用于TSP中,该算法有助于以最小的距离和时间访问每个城市一次。
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