Nuri David Maria Veronika
Program Studi Teknik Informatika, Fakultas Teknik, Universitas Muhammadiyah Bengkulu

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The Development of A Tourism Information System Website in Kepahiang District Using The Rabin-Karp Algorithm Yoga Yoga; Nuri David Maria Veronika
Jurnal Media Computer Science Vol 1 No 1 (2022): Januari
Publisher : Fakultas Ilmu Komputer Universitas Dehasen Bengkulu

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1476.521 KB) | DOI: 10.37676/jmcs.v1i1.1939

Abstract

Kepahiang Regency is one of the regencies in Bengkulu province which has a natural tourist attraction destination. Some of these potentials include kabawetan tea plantations and Suro Ilir dam, Raflesia flower nature reserve, agro tirto, glagah estuary lake and black hill waterfall. The potential for natural tourism in Kepahiang district is very interesting because of the geographical location of Kepahiang district. With all the attractions on offer, it would be a pity if it was not accompanied by an attractive tourism promotion as well. One of the efforts to increase the number of tourists is to build applications that can make it easier for users to travel. Applications that can accommodate tourist needs data, especially regarding data on tourist attractions, lodging, culinary and historical places that can be visited. A tourism website that is equipped with a gallery so that it can increase the interest of tourists to come to visit. The application is built using the PHP and MySQL programming languages so that it can be accessed only using a browser application. Applications that are intended for users do not need to use a login system so that they can be accessed by anyone and anywhere. The implementation of rabin karp in the application has not been maximized because it has not been able to follow the formal concept of the algorithm, but the application can find the data sought with a similar concept because the search is carried out on every word contained in the tourist, hotel and culinary name data. The application can display complete tourist, culinary and hotel data along with the location on the map but cannot provide assistance on the closest route to visit the place you want to go on the map.
Miniature Design of Liquid Filling Machine Automatically Using ESP32 Based IOT (Internet of Things) Ariski Munandar; Nuri David Maria Veronika; Dedy Abdulllah; Eka Sahputra
Jurnal Komputer, Informasi dan Teknologi Vol. 3 No. 1 (2023): Juni
Publisher : Penerbit Jurnal Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.53697/jkomitek.v3i1.1185

Abstract

This study aimed to design automatic liquid filling on miniature machines to make it easier to use by making volume control innovations on automatic liquid filling machines, and design an IOT system for filling automatic liquid machines by using esp32. The data collection method of this study was literature or literature studies. The data processing of this study was qualitative processing of performing data centering. Presentation of data was done in order to easily draw conclusions and take further action. The overall discussion of the tool was the final test after all components run smoothly. The components were placed based on the function of each component so that the tool can look neater and function properly. As an application for testing ESP32 microcontrollers, push buttons, ultrasonic sensors, and relays. The tool released liquid when the push button was pressed according to the desired volume selection. The overall test was carried out with 2 variations of liquid volume, namely 350 ml and 450 ml. The result of testing the liquid output from the tool show that from the 350 ml volume test which was the output of the push button/button 1. It can be seen from the results of measurements by using a measuring cup which was not much different from the setpoint of 350 ml and had a liquid filling time of about 7 seconds out of 10 experiments. It means that the input button 1 with a setpoint of 350 ml is successful and very close to the setpoint given. The test results for a volume of 450 ml which is the output of push button / button 1. It can be seen that the results of measurements by using a measuring cup are not much different with a setpoint. of 450 ml and a liquid filling time of about 9 seconds out of 10 experiments. Based on the results of the study can be concluded that from the input button 1 with a setpoint of 450 ml is successful and very close to the given setpoint. The liquid that has been using the manual method. The liquid volume control innovation is designed by using two push button buttons. With one push button for 350 ml liquid variations and another push button for 450 ml liquid variations. The IoT monitoring works well by using an ultrasonic sensor as a liquid level meter and the blynk application as a liquid level display.