IoT Based Smart Parking Monitoring Using Labview and Node MCU

2021 ◽  
Vol 7 (2) ◽  
Author(s):  
P. Vishnu Kumar ◽  
Kammari Dinesh ◽  
Talari Bharath Kumar ◽  
P. Jelan Basha ◽  
G. Hari Prasad

This paper is regarding planning a PC-based observance parking system supported IoT that may be applied at the park-like at the searching advanced and offices. This paper focuses on the event of front panel victimization National Instrument's LABVIEW package and Node MCU, Personal Computer (PC), and NODE MCU. The traditional parking lot system doesn't have a board and it cannot show the vacancy of automobile parking space. The user must gamble to hunt any vacancy and need to watch for the opposite automobile to exit from the automobile parking space. Up to the traditional parking system, it'll create the automobile parking space become well organized and user friendly. This paper can produce an automobile detection system by developing a PC-based front panel of parking lot operation knowledge. The system can convert the output from the sensing element to the programmable language to the computer-based mostly board. The board aims to indicate the standing and automobile parking space vacancy. The NODE MCU is employed to supply interfacing between hardware and package. By victimization Lab, VIEW, and Node MCU, the simulation of the physical system will be developed to watch the quantities to be measured and the standing of the instrumentation within the plant from remote purposes while not accessing the inaccessible areas of the plant. Through the traditional parking system victimization Lab VIEW and Node MCU, the front panel is with success developed and explained by planning a physical model of automobile parking space with automobile detector operation. These PC-based observance systems will be applied in varied industrial applications like building security systems and mill automation.

2019 ◽  
Vol 8 (2S11) ◽  
pp. 2793-2798 ◽  

Nowadays, smart parking guidance system is a crucial research for people’s convenience where the integrating concept of IoT that include hardware and software with the connection of internet for image or video processing technology is a powerful application which made up a complete smart parking system. The main objective of this research is to develop and analyze on a smart parking guidance system where current available system was compared to this new proposed system. Limited parking space has become serious issue since the number of Malaysia’s populations are using car keep increasing. Some of the big companies, shopping malls and other public facilities already deployed a smart parking system on their building. However, there are still a lot of buildings that do not own it because the system required a lot of investment, where the huge parking areas need higher cost to install sensors on each parking lot available and cameras are costly and lower in reliability. The proposed smart parking guidance system in this research was depending on a 360° camera that was modified on Raspberry Pi camera module and 360o lens that process with De-Warping techniques for the normal view rather than 360-degree view and Haar-Cascade classifier. The image and video processing was done by Open CV and python program to detect the available parking space and cloud firebase was used to update data where users can access the parking space availability by android mobile phone specifically at a closed parking space. A single 360°camera was replaced several sensors and cameras which were implemented on traditional parking guidance system. In the end of the paper, it is proved that prototype based smart parking is the convenient way to find the parking space availability.


2012 ◽  
Vol 195-196 ◽  
pp. 889-894 ◽  
Author(s):  
Mei Yan Zhang ◽  
Li Ping Zhou ◽  
Wen Yu Cai

In China, finding a vacant parking space in a congested area or a large parking lot is always time consuming and frustrating. To minimize hassle and inconvenience to the automatic drivers, this paper proposed a novel smart parking system which consists of many parking sensor nodes and one parking gateway in one large parking lot. Parking sensor node is used as vehicle occupancy detector and parking gateway is used as parking lot manager. All parking sensor nodes compose wireless sensor networks with Zigbee transmission protocol. With the GPRS/3G transmission function of parking gateway, large parking lot can provide friendly parking information to the running vehicles and subscribed users. In a word, the proposed novel smart parking system is provided with innovative and practicability.


Nowadays, smart parking guidance system is a crucial research for people’s convenience. The main objective of this research is to develop and analyze on a smart parking guidance system where current available system was compared to this new proposed system. Limited parking space has become serious issue since the number of Malaysia’s populations who are using car keep increasing. Some of the big companies, shopping malls and other public facilities already deployed a smart parking system on their building. However, there are still a lot of buildings that do not own it because the system required a lot of investment, where the huge parking areas need higher cost to install sensors on each parking lot available. The proposed smart parking guidance system in this research was depending on a 360° camera that was modified on raspberry pi camera module and 360o lens and Haar-Cascade classifier. The image and video processing was by Open CV and python program to detect the available parking space and cloud firebase was used to update data where users can access the parking space availability by android mobile phone specifically at a closed parking space. A single 360°camera was replaced several sensors and camera which was implemented on traditional smart parking system. An analysis was done on the performance of the system where it can detect the parking availability with 99.74% accuracy and which is far better than conventional system including reliability and cost for the parking space guidance system.


Author(s):  
Dr. M. Samayaraj Murali Kishanlal ◽  
Sherlin J ◽  
Varsha S

The vehicles are parked in parking lots. These parking lots are found in malls, offices etc. These parking slots are marked on the ground with different size based on vehicles. An Automated Parking System transports vehicles from the entrance to a parking space that is available. Prior to this, car owners must make a reservation for specific parking lot. It takes time for new members to register and have parking assigned to them. An automated parking allotting app is created as well as a hardware implementation for this project. The owner of a car parking lot may sign up and build a parking facility in his area by registering the location and installing a Raspberry Pi with camera, which will automatically update the available parking spaces. The user find available parking slots using app and book a special slot for his or her car. A QR code will be generated, and the customer's bill will be generated based on in-time and out-of-time scanning. This method would be able to save time for car owners as well as and the amount of labor needed to complete the process as a result of this. As a result, this project saves time while also automating the process.


2018 ◽  
Vol 14 (11) ◽  
pp. 90 ◽  
Author(s):  
Xieji Gang

To realize the exploration of A routing algorithm for ZigBee technology, a kind of intelligent parking system based on ZigBee wireless sensor network is designed, and the parking space is managed by online and offline interaction. First of all, the status of parking at home and abroad is studied, and the demand for parking is analyzed. Secondly, the intelligent scheme of parking system is studied, including parking guidance technology and parking space intelligent recommendation technology. The former is based on the A routing algorithm to search the shortest path, and uses Unity for route planning simulation, and the latter is based on collaboration filtering algorithm to discuss the recommendation method of similar parking spaces. The result shows that the prototype of an intelligent parking system based on ZigBee is eventually realized, and the functions of online viewing, online parking reservation, online path planning and parking guidance are realized. As a result, the purpose of managing offline parking spaces through online is achieved, the utilization rate of resources in the existing parking lot is improved and the use rate of parking space is promoted. At last, it effectively alleviates the urban parking chaos and has certain application value.


2021 ◽  
Vol 17 (3) ◽  
Author(s):  
Aaron Abel ◽  
Suci Aulia ◽  
Dadan Nur Ramadhan ◽  
Sugondo Hadiyoso

An automatic parking system has been proposed to make the car parking process more efficient in terms of time and cost. The absence of information on the position of the parking lot makes the car driver take longer to find it. In multi-story parking lots, officers cannot constantly monitor the available parking conditions directly, so prospective parking users do not know the position of the open parking space. In addition, many parking lots use automatic door latch, but no parking space information display. Parking system automation can be based on hardware, software, or a combination of hardware and software. To the best of our knowledge, no software-based framework is entirely used on this system. Therefore, this study proposes an automatic parking system based on camera sensors and software, which is combined into an information system. The proposed method uses simple morphological operations. Based on the test results, the detection accuracy achieved is 100% with a light intensity of 3 lux, 15 lux, 30 lux, 60 lux, 120 lux, and 250 lux. The average processing time is 1.59 seconds. From this study, it is hoped that this prototype can be tested on relevant environmental conditions so that the prototype can be implemented in parking lots.


2021 ◽  
Vol 3 (1) ◽  
pp. 31-39
Author(s):  
Nur Halima Halima ◽  
Finni Maulidi ◽  
Wilda Awaliatul

In the 21st century, the problem of sustainable development has been used as an important issue that needs to be socialized in the community. in the preparation phase of the action program to regulate parking bags in the new market Gotong Royong Probolinggo City, discussions began from the form of activities, locations, and evaluations. A form of activity that will be carried out by a group of students, which is carried out openly directly on site. The method used in these activities is coordination and communication by plunging directly into the parking lot of The Gotong Royong Market in Probolinggo City with the focus of structuring the parking space in the central Gotong Royong market. With the results of evaluation activities that can be done by students lacking the functioning of parking spaces in the arena gotong royong market and the lack of orderly parking activities in the market, so that it makes the parking arena in the market there are no officers or parking attendants. it is also prone to the loss of vehicles in the market arena. Thus, it can be concluded that parking facilities are used limits to distinguish parking spaces between four wheels and two wheels. This is because the parking system in Gotong Royong market is in accordance with the procedures that have been scheduled and does not cause traffic jams. Keyword : Parking Facilities, Gotong Royong Market, Urban Spatial Planning


2021 ◽  
Vol 10 (4) ◽  
pp. 1968-1978
Author(s):  
A. H. M. Almawgani ◽  
Turki Alsuwian ◽  
Adam R. H. Alhawari ◽  
A. N. Alhuthari ◽  
M. A. Alhezabr ◽  
...  

This paper presents a smart and efficient car-parking detection system. The proposed system is comprised of two cameras connected to a mobile system that is devised with Arduino, four DC motors, and PIR sensor placed strategically to monitor parking space, especially within its painted rectangular lines of each parking lot. The mobile monitoring system is automatically responsive to any move they detected as vehicles within the parking space along the rows of parking lots. Once detected, the captured images are processed using the MATLAB software. Any improperly parked cars detected, the cameras will identify their plate numbers, and snap and record it in a database. The designed prototype of the proposed system was tested in five presumed cases. In each case, ten images were processed, thus 50 images were eventually obtained. Out of the 50 images, 48 images corresponded to correct detection whereas the other two images corresponded to wrong detection. Accordingly, the efficiency rate of the proposed smart car-parking monitoring system is 96%. This system offers suitable solution in assisting drivers to park properly within each parking lot and owners of parking area to keep it organized via remote monitoring system.


2015 ◽  
Vol 17 (3) ◽  
Author(s):  
Ruky Sandra Ary M ◽  
Saiful Manan

Ruky Sandra Ary M, Saiful Manan, in this paper explain that parking lot which is widely used today do not present an empty parking location data, causing the vehicle entering the parking area must first find an empty parking space. This led to queues of vehicles becomes unavoidable. Even vehicles must berputarputar first to find an empty parking space. Therefore, it needs a parking system that can alert parking block capacity is still empty. Parking tariff determination system also plays an important role, most of the park determines the rate only on the type of vehicle rather than on how much time parking felt unjust for some people. This study designed a microcontroller-based parking system that can determine the number of cars remaining at the same time counting parking rates is a unified tool that can be divided into two, namely, hardware and software as a mechanical system that will work as a control system and the process of calculating tariffs. Keywords: parking system, Microcontroller 8535, Infrared, parking rates, Password


2016 ◽  
Vol 3 (2) ◽  
pp. 146 ◽  
Author(s):  
Indah Ayu Septriyaningrum ◽  
Dodon T Nugrahadi ◽  
Ichsan Ridwan

<p align="center"><strong><em>Abstract</em></strong><strong> </strong></p><p class="Default"><em>Manual parking systems in mall parking lot services requires a more complex management and development system, not to mention its inefficiency. The information acquired from the parking manager about the the parking space conditions in the field is lacking every day. The purpose of this research is to design and develop a parking system prototype. The development method and system design for this research is the Waterfall method. The results obtained is that this system is able to detect the presence of a vehicle on a designated parking space, with the help of an Intel Galileo Board Gen 2 as the controller, an LDR (Light Dependent Resistor) sensor, and an ultransonic sensor (PING) as an auxiliary. The system is able to display parking activity on a web application, such as empty parking space conditions, occupied parking spaces, time of arrival, parking period, parking space capacity, and also able to display a graphic image of the parking space utilization. It can be concluded that the design and development of the system is successfully implemented.</em></p><p class="Default"><strong><em>Key Word:</em></strong><em> </em><em>Parking system, waterfall, Intel Galileo Board Gen 2, LDR (light dependent resistor) sensor, ultrasonic sensor</em></p><p><em> </em></p><p align="center"><strong><em>Abstrak</em></strong><strong> </strong></p><p><em>Sistem parkir manual pada pelayanan parkir mall memerlukan pengelolaan dan pengembangan sistem yang lebih rumit dan jauh dari kata efisien. Informasi yang didapatkan pengelola parkir terkait kondisi parkir di lapangan setiap harinya </em><em>masih kurang</em><em>. </em><em>Tujuan dari penelitian ini adalah</em><em> merancang dan mengembangkan prototype sistem parkir</em><em>.</em><em> </em><em>Metode pengembangan </em><em>dan perancangan sistem pada penelitian ini adalah metode Waterfall. Hasil yang didapatkan adalah sistem ini dapat mendeteksi keberadaan mobil pada slot parkir yang tersedia dengan bantuan Intel Galileo Board Gen 2 sebagai kontroler, sensor LDR (Light Dependent Resistor) dan sensor ultrasonik (PING) sebagai alat bantu pendeteksi keberadaan mobil. Sistem dapat menampilkan aktifitas parkir pada aplikasi web seperti kondisi lahan parkir kosong, lahan terisi, waktu masuk, waktu keluar, lama parkir dan kapasitas parkir yang tersedia serta grafik pemakaian lahan parkir</em><em>. </em><em>Dapat disimpulkan bahwa perancangan dan pengembangan sistem berhasil diimplementasikan.</em></p><p><strong><em>Kata Kunci </em></strong><em>: </em><em>Sistem parkir, waterfall, Intel Galileo Board Gen 2,sensor LDR (Light Dependent Resistor), sensor ultrasonik</em></p>


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