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Sistem Monitoring Parkir Mobil berbasis Mikrokontroller Esp32 Chyntia Eka Savitri; NINA PARAMYTHA
Jurnal Ampere Vol. 7 No. 2 (2022): JURNAL AMPERE
Publisher : Universitas PGRI Palembang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31851/ampere.v7i2.9199

Abstract

BBina Darma University Palembang is a campus that provides a wide and adequate parking area for motorists. However, currently the parking system used still uses manual parking which makes it difficult for motorists to find a parking space. Therefore, we need a system that can monitor the parking area. The purpose of the system is to make it easier for motorists to find unfilled parking spaces. The system will use the Esp32 microcontroller which functions as the core source of the entire circuit to perform data processing which is also assisted by an infrared sensor that functions as a sensor that detects objects or cars entering and leaving the parking area, the driver will be assisted by RFId for access in and out of the area. parking and using a proximity sensor that acts as a sensor detecting whether or not a parking slot is filled. Then the driver will be assisted with a parking paper containing information on the parking place to be addressed. With this parking monitoring system, it will make it easier for drivers to find a parking space, because when they enter the parking lot, the driver can easily see where the empty parking slot is on the screen display and do not have to go around first to find a parking space ABSTRAKUniversitas Bina Darma Palembang merupakan sebuah kampus yang menyediakan fasilitas area parkir yang luas dan memadai bagi para pengendara. Namun, saat ini sistem parkir yang digunakan masih menggunakan parkir manual yang membuat para pengendara kesulitan dalam mencari tempat parkir. Oleh sebab itu, dibutuhkan suatu sistem yang dapat memonitoring area parkir. Tujuan dari sistem tersebut adalah untuk memudahkan pengendara dalam menemukan tempat parkir yang dapat digunakan. Sistem itu akan memakai mikrokontroler Esp32 yang berfungsi sebagai sumber inti dari keseluruhan rangkaian untuk melakukan pengolahan data yang juga dibantu dengan sensor infrared yang berfungsi sebagai sensor yang mendeteksi objek atau mobil yang masuk dan keluar area parkir, pengendara akan dibantu oleh RFId untuk akses keluar masuk area parkir serta menggunakan sensor proximity yang berperan sebagai sensor pendeteksi berisi atau tidak berisinya slot parkir. Kemudian pengendara akan dibantu dengan kertas parkir yang berisi informasi tempat parkir yang akan dituju. Dengan adanya sistem monitoring parkir ini akan memudahkan pengendara dalam mencari tempat parkir, karena pada saat akan memasuki tempat parkir ini pengendara dapat dengan mudah melihat dimana slot parkir yang masih kosong pada tampilan layar dan tidak harus keliling terlebih dahulu dalam mencari tempat parkir
Design a Visually Impaired Walker Using an Internet of Thing -Based Smart Bracelet Adjie Mazhari; Nina Paramytha
SITEKIN: Jurnal Sains, Teknologi dan Industri Vol 20, No 2 (2023): June 2023
Publisher : Fakultas Sains dan Teknologi Universitas Islam Negeri Sultan Syarif Kasim Riau

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24014/sitekin.v20i2.21968

Abstract

The eyes are one of the most important senses in the human body. They are used to understanding the surrounding situation so people can understand what is around them. Visual impairment is divided into two types, total blindness and low vision, depending on the degree of disability. A standard walker is a stick that helps you assess the condition of the road and the obstacles in front of you. The developing electric mobility aids are not only walking sticks. A glove-shaped walker was developed to detect objects before the tent and provide information from beeps and vibrations. Produce a walker using a visually impaired smart bracelet using sensor technology to help the blind's vigilance and mobility capable of detecting objects at a predetermined distance. The tool successfully outputs information in human voices recorded in DFPlayer Mini according to the conditions of ultrasonic sensor readings and monitoring of smart bracelets through the blynk application. Operation There are buttons used to turn the system on and off. All sensor inputs and outputs will be processed using the ESP-8266 NodeMCU. From the test results of the entire system, it can be concluded that the smart bracelet runs optimally according to the block diagram the author has compiled. Write down the conclusions of your paper and further research suggestions in the form of narratives and not in bullet or numeral form.
Notifikasi Gangguan Penyulang pada Distribusi Primer Rahman Syamsu Ganda; Nina Paramytha
Jurnal Ilmiah Universitas Batanghari Jambi Vol 23, No 1 (2023): Februari
Publisher : Universitas Batanghari Jambi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33087/jiubj.v23i1.2800

Abstract

The network system is a very vital network in the flow of electrical energy, therefore it is very informed in real time when there is a disturbance in electrical transmission so that electrical energy is continuous. When there is a disturbance in the electricity network, there is a notification in real time, so the officer will quickly find out if there is a disturbance. Disturbances that occur in the field cannot be predicted because of the long network and different fields, so a prototype is designed to provide notifications when a disturbance occurs in real time using a current sensor using an acs712 current sensor as a current reader and a 004t pzem voltage sensor. Utilization of the esp32 module serves to send notifications to officers via the telegram application.
An Internet of Things-based Automatic Medicine Consumption Reminder Box Muhammad Fauzan; Nina Paramytha
SITEKIN: Jurnal Sains, Teknologi dan Industri Vol 20, No 2 (2023): June 2023
Publisher : Fakultas Sains dan Teknologi Universitas Islam Negeri Sultan Syarif Kasim Riau

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24014/sitekin.v20i2.22029

Abstract

Because of age or doing too many activities at home, we often forget the obligation to consume routine medications that we should take that should be scheduled and the doses that have been determined. Therefore, the author wants to develop a tool that helps us consume drugs regularly and regularly. The medicine box uses ESP32 to integrate components such as ultrasonic sensors, loadcells, RTC, sound sensors, and ESP32 modules. Ultrasonic sensors are used to open and close the medicine box automatically, loadcell sensors to find out the condition of the rest or weight of the drug in the box, and RTC sensors as a timer to schedule drug consumption set on ESP32 which will send data on drug consumption schedules, sound sensors to find out the location of the medicine box by clapping both hands so that the detector detects sound and sounds the buzzer,  ESP32 module as a microcontroller and sender of all programs that will be sent via the user's telegram application drug box.
Traffic Light Control Prototype Using PIR Motion and Microcontroller-Based Ultrasonic Sensors Gusairi Rahman; Nina Paramytha; Muhamad Ariandi
SITEKIN: Jurnal Sains, Teknologi dan Industri Vol 20, No 2 (2023): June 2023
Publisher : Fakultas Sains dan Teknologi Universitas Islam Negeri Sultan Syarif Kasim Riau

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24014/sitekin.v20i2.22095

Abstract

Traffic lights at crossroads help regulate the flow of vehicles so they can run smoothly and avoid congestion. One of the causes of traffic congestion is a traffic control light system that is not optimal because it still uses a fixed timer system, so the lights' duration is less efficient in its application. When the green light is on, the streets are deserted. But there is a traffic jam on another road. Therefore the concept of traffic light timing needs to be developed to get efficient timing. This study aims to create a traffic light control system that uses a PIR (Passive Infrared) motion sensor and an ultrasonic sensor based on the Arduino Mega2560 microcontroller based on the congestion level. The method used in this traffic control prototype is an experimental method of reading vehicle objects mounted with PIR sensors and ultrasonic sensors. This system can detect the movement of vehicles approaching a traffic light, measure the distance between the car and the traffic light, and set the timing of the light signal according to the level of congestion detected. This system has been tested using vehicle movement simulations brought closer to the PIR and ultrasonic sensors at different distances. The test results show the system can work properly and produce the light signal according to the detected traffic conditions. For its application to traffic lights in the future, it is feasible to help the traffic unit.
Design of a Semi Automatic Cilantro, Grinder Sifter and Weighing Equipment Marsha Guslita; Nina Paramytha
SITEKIN: Jurnal Sains, Teknologi dan Industri Vol 20, No 2 (2023): June 2023
Publisher : Fakultas Sains dan Teknologi Universitas Islam Negeri Sultan Syarif Kasim Riau

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24014/sitekin.v20i2.22161

Abstract

There are so many spices in Indonesia with a variety of ones, one of which is coriander. Coriander is necessary in the kitchen and the world of health, one of Indonesia's most widely used spices. There are two types, namely coarse coriander and powdered/fine coriander. Coriander grinding, sieving, and weighing tools are expected to make it easier for small industries to produce powdered/fine coriander more efficiently and well so that it can affect the pace of economic development. This study aims to discover how to make grinding, sieving, and weighing tools and how they work, assisting small industries in the production of powdered/fine coriander more efficiently and nicely. The measurement results on this tool have good values so that the device can work properly and accordingly. The grinding to weighing process has a different period according to the desired weight. 1 gram can take time from the range of 20-40 seconds