Mobile-based Smart Parking Reservation System with Rate Display Occupancy Using Heuristic Algorithm and Haversine Formula

Rizka Safitri, Aries Pratiarso, Ahmad Zainudin
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引用次数: 2

Abstract

Nowadays, the number of private vehicles increase significantly and cause the congestion. And as the result, almost all of the people have the same problem in failing to get a vacant parking slot People usually need to take time for about 30 minutes just to obtain a vacant parking slot. In this paper, we tackle this urgent issue and propose a Smart Parking Reservation System with Rate Display Occupancy denoted as SORAY. Our system uses simulated annealing based heuristic algorithm to optimize the queue method by considering three parameters such as the driver status (member or non-member), distance, and parking duration. This system also uses the Haversine formula to calculate the distance from the current position of the vehicle to the parking lot at the time of sending the reservation request. As the proof of reservation verification process, SORAY uses Quick Response Code. This SORAY system is also equipped with a secure member registration process by implementing SHA-256 algorithm to generate random OTP. The graph of the occupancy rate is displayed to predict the density of vehicles in the parking lot. Results show that this system successfully decreases the time needed to make a reservation process by almost 20 times faster than the conventional method for searching parking slots. For the simulation results, the heuristic method works and got the smallest cost: 1.97 with the condition of driver who makes a reservation was a member and has an hour parking duration with 5.4 kilometers distance. The results show that the average time to compute the SHA-256 java code for generating random OTP is 4.10 seconds.
基于启发式算法和Haversine公式的基于率显示占用的移动智能车位预约系统
如今,私家车的数量显著增加,造成了交通拥堵。因此,几乎所有的人都有同样的问题,那就是找不到一个空闲的停车位,人们通常需要花30分钟左右的时间来找一个空闲的停车位。本文针对这一紧迫问题,提出了一种具有率显示占用率的智能车位预约系统。我们的系统采用基于模拟退火的启发式算法,通过考虑驾驶员状态(成员或非成员)、距离和停车时间等三个参数来优化排队方法。该系统还使用Haversine公式计算发送预订请求时车辆当前位置到停车场的距离。作为预订验证过程的证明,SORAY使用快速响应代码。该SORAY系统还通过实施SHA-256算法来生成随机OTP,从而配备了安全的成员注册过程。显示占用率图,预测停车场内车辆的密度。结果表明,该系统比传统的车位搜索方法成功地减少了预约过程所需的时间,缩短了近20倍。仿真结果表明,启发式方法有效,在预约的驾驶员为会员,停车时间为1小时,距离为5.4公里的条件下,成本最小,为1.97。结果表明,计算生成随机OTP的SHA-256 java代码的平均时间为4.10秒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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