Parking space detection using ultrasonic sensor in parking assistance system

Author(s):  
Wan-Joo Park ◽  
Byung-Sung Kim ◽  
Dong-Eun Seo ◽  
Dong-Suk Kim ◽  
Kwae-Hi Lee
Sensors ◽  
2019 ◽  
Vol 19 (2) ◽  
pp. 277 ◽  
Author(s):  
Sherzod Nurullayev ◽  
Sang-Woong Lee

The importance of vacant parking space detection systems is increasing dramatically as the avoidance of traffic congestion and the time-consuming process of searching an empty parking space is a crucial problem for drivers in urban centers. However, the existing parking space occupancy detection systems are either hardware expensive or not well-generalized for varying images captured from different camera views. As a solution, we take advantage of an affordable visual detection method that is made possible by the fact that camera monitoring is already available in the majority of parking areas. However, the current problem is a challenging vision task because of outdoor lighting variation, perspective distortion, occlusions, different camera viewpoints, and the changes due to the various seasons of the year. To overcome these obstacles, we propose an approach based on Dilated Convolutional Neural Network specifically designed for detecting parking space occupancy in a parking lot, given only an image of a single parking spot as input. To evaluate our method and allow its comparison with previous strategies, we trained and tested it on well-known publicly available datasets, PKLot and CNRPark + EXT. In these datasets, the parking lot images are already labeled, and therefore, we did not need to label them manually. The proposed method shows more reliability than prior works especially when we test it on a completely different subset of images. Considering that in previous studies the performance of the methods was compared with well-known architecture—AlexNet, which shows a highly promising achievement, we also assessed our model in comparison with AlexNet. Our investigations showed that, in comparison with previous approaches, for the task of classifying given parking spaces as vacant or occupied, the proposed approach is more robust, stable, and well-generalized for unseen images captured from completely different camera viewpoints, which has strong indications that it would generalize effectively to other parking lots.


Electrician ◽  
2019 ◽  
Vol 12 (2) ◽  
pp. 62
Author(s):  
Wiwik Dwi Agustin ◽  
Emir Nasrullah ◽  
Raden Arum Setia Priadi

Intisari —  Area parkir dalam kehidupan sehari-hari sangat dibutuhkan oleh masyarakat, apalagi di daerah perkotaan. Berlatar belakang kebutuhan akan efisiensi waktu dan bahan bakar kendaraan serta pengembangan teknologi otomasi, maka melalui penelitian ini telah dirancang sebuah piranti yang bertujuan untuk menginformasikan kepada pengemudi apakah dapat memarkir kendaraannya atau tidak pada suatu area parkir dan diharapkan bermanfaat menghemat waktu dan bahan bakar kendaraan. Apabila area parkir terisi penuh oleh kendaraan yang parkir, motor servo akan berputar dan palang pintu yang terhubung akan menutup sehingga kendaraan tidak dapat masuk ke area parkir yang penuh.Model sistem hitung kendaraan pada area parkir bertingkat 2 pada tugas akhir ini pada intinya merupakan piranti dengan miktrokontroler sebagai pengendali utama yang terhubung dengan sensor ultrasonik sehingga dapat memindai masuk dan keluar kendaraan roda empat (mobil) pada suatu area parkir serta memberikan informasi jumlah lahan parkir yang belum terisi melalui LCD yang terpasang pada pintu masuk, sehingga memudahkan pengendara mobil untuk memutuskan apakah perlu memasuki area parkir tersebut untuk memarkir kendaraannya atau mencari tempat parkir lain tanpa harus berputar-putar pada area parkir tersebut sehingga memakan waktu dan bahan bakar kendaraan. Apabila kondisi area parkir telah terisi penuh oleh kendaraan, maka terdapat motor servo yang terhubung dengan palang pintu yang akan menutup akses masuknya kendaraan sehingga kendaraan tidak dapat memasuki area parkir.Tugas akhir ini mengimplementasikan perancangan sebuah model sistem hitung kendaraan secara otomatis yang dapat menginformasikan kepada pengendara apakah dapat memarkir kendaraannya atau tidak pada suatu area parkir. Selain itu diharapkan dapat diimplementasikan langsung pada suatu area parkir bertingkat.Kata kunci — Mikrokontroler, Sensor ultrasonik, LCD, Motor servo.  Abstract — Parking lot is needed by society everyday, especially in urban areas. Background of the need for time efficiency and vehicle fuel and the development of automation technology, then this research has designed a tool that aims to inform the driver whether the vehicle may be parked or not in a parking area and is expected to be useful to save time and fuel vehicles. If the condition of parking areas have filled with vehicles, the servo motor is connected to the cross bar that would close access to the entry of vehicles so that vehicles can not enter the parking area. Model of the vehicle counting system at the 2-floors parking garage at the end of this task is essentially a tool to microcontroller as main controller connected to the ultrasonic sensor that can scan incoming and outgoing four-wheeled vehicles (cars) at a parking area and provide information of ample parking not filled through the LCD attached to the entrance, making it easier for driver to decide whether to enter the parking area to park the vehicle or to find another parking space without spinning the parking area so that it takes time and fuel vehicles. This final task of implementing the design of a counting system model vehicles can automatically inform the driver whether the vehicle may be parked or not in a parking lot. Also expected to be implemented directly on a multilevel parking area.Keywords — Microcontroller, Ultrasonic sensor, LCD, Servo motor, Parking lot. 


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