Automatic car service recommendation system using machine learning techniques

Author:

Kumar M. A. R.1,Mohammed Abdullah Khan1,Gundlapally Siri Reddy1,Ramavath Tarun1,Sujith Yadav1

Affiliation:

1. Sreyas Institute of Engineering and Technology

Abstract

The automobile industry has been growing at a high rate in the past few decades, contributing about 7.5% to India's total Gross Domestic Product (GDP). As the number of vehicle owners are increasing the demand and need for automobile service is also high, but people are busy with their routines, hence failing to perform proper maintenance on their vehicles. This paper uses machine learning algorithms and object detection to come up with the idea to develop a web application that suggests users some offers and timing for their car maintenance by analyzing a car using computer vision without the owner's involvement. This project aims at both the owner's convenience and the growth of the service provider's business. Generally, we do not realize that multiple tasks can be done at a time, which results in incomplete tasks. This paper presents a machine learning-based automated car maintenance system with effective time utilization, by using the Internet of Things (IoT) device that could be installed at the parking's main gate in places where people tend to spend many hours, like offices or malls. This device consists of a camera that is responsible for detecting a car image from the live video. These images are then sent to the device, which uses pre-trained models to detect any damages or dirtiness in the vehicle.

Publisher

i-manager Publications

Subject

Marketing,Organizational Behavior and Human Resource Management,Strategy and Management,Drug Discovery,Pharmaceutical Science,Pharmacology

Reference14 articles.

1. Deijn, J. (2018). Automatic Car Damage Recognition using Convolutional Neural Networks. Retrieved from https://www.semanticscholar.org/paper/Automatic-Car-Damage-Recognition-using-Neural-Deijn/48f258246f7248a81458ddb14d9214e33759d7d7

2. A Very Deep Transfer Learning Model for Vehicle Damage Detection and Localization

3. Deep Learning-Based Car Damage Classification and Detection

4. Algorithm Development for Minor Damage Identification in Vehicle Bodies Using Adaptive Sensor Data Processing

5. CRACK DAMAGE DETECTION IN UNMANNED AERIAL VEHICLE IMAGES OF CIVIL INFRASTRUCTURE USING PRE-TRAINED DEEP LEARNING MODEL

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