Abstract:Abstract: Plastic waste and plastic bottles are also waste that have a very long dissolving period or break down period. Like a cafe or a place to eat on Merbo Bagan Asahan village Tanjung Balai sub-district Asahan district…
ict which has about 5 cafes and does not include street vendors. The Asahan area has a population of 118,750 people, assuming the waste product ranges from 356,250 l/day, and the amount of waste is 160m3/day. Based on the above problem conditions, making a garbage robot can increase the interest of cafe visitors to dispose of garbage in its place, by utilizing a type of qualitative research method and the results of research testing on the electronics module in the design of a garbage robot found that the interface system between Android and the robot utilizes a 5VDC voltage, with pins RX-TX and TX-RX, as well as all outputs in the form of SG90 servo using 5VDC supply and IC L298 mini supplied with 7.4 VDC voltage. So that one of the advantages of the garbage robot design is that it is able to operate both remotely and in a stopped condition.
Keywords: Garbage Robot; Android Control System; Controller Based.
Abstrak: Sampah plastik dan botol plastik juga merupakan sampah yang memiliki masa larut atau masa terurai yang sangat lama. Seperti cafe atau tempat makan yang berada di jalan Merbo Desa Bagan Asahan Kecamatan Tanjung Balai Kabupaten Asahan yang memiliki sekitar 5 cafe dan tidak termasuk pedagang kaki lima. Untuk wilayah Asahan memiliki jumlah penduduk 118.750 jiwa, dengn asumsi produk sampah berkisar 356.250 l/hr, dan jumlah sampah 160m3/hr. Berdasarkan kondisi masalah diatas pembuatan robot sampah bisa menambah minat para pengunjung cafe untk membuang sampah pada tempatnya, dengan memanfaatkan jenis metode penelitian kualitatif dan hasil pengujian penelitian pada modul elektronika pada perancangan robot sampah mendapati bahwa sistem interface antara android dengan robot memanfaatkan tegangan 5VDC, dengan pin RX-TX dan TX-RX, serta seluruh output berupa servo SG90 menggunakan supply 5VDC dan IC l298 mini disupply tegangan 7.4 VDC. Sehingga salah satu kelebihan dari rancangan robot sampah yaitu mampu beroperasi baik dikendalikan jarak jauh ataupun dalam kondisi berhenti.
Kata kunci : Robot Sampah;System Kendali Android;Berbasis Controller.
Abstract:Corona virus (COVID-19) is an infectious disease caused by the SARS-CoV-2 virus. Since the spread of Covid-19, many government agencies in Indonesia have received the impact, including SMK Negeri 2 Tanjungbalai. The spread…
ad of the corona virus has resulted in this school no longer being able to carry out face-to-face learning starting from 2019 to 2022. To anticipate the spread of covid-19 in the SMKN 2 Tanjungbalai area, the community service team designed a security system at the school entrance to anticipate the spread of covid, so that if there are people or vehicles that want to enter the school will be sprayed automatically with disinfectant liquid, besides that the tool can also read the body temperature of visitors. This service uses the consultation and science and technology method, where the service team consults with the school principal about existing problems, namely to anticipate the spread of Covid-19 in the school area. or hands, then the temperature is set at 30 0C and do not water, while if the object does not have a fever, the temperature is in the range of 330C-360C and watering is carried out. Meanwhile for objects with a fever, the temperature is >= 370C and no watering is carried out, and they are not allowed to enter. All module voltages use the 5VDC input voltage, which is supplied from the controller. Meanwhile, the pump voltage uses a 12VDC inverter, which is reduced to 5.68 VDC.
Keywords: automatic disinfectant sprinkler; corona; ultrasonic sensor; microcontrollers
Abstrak: Virus corona (COVID-19) adalah penyakit menular yang disebabkan oleh virus SARS-CoV-2. Semenjak penyebaran covid-19 banyak instansi pemerintahan di indonesia yang mendapatkan imbasnya, diantaranya SMK Negeri 2 Tanjungbalai. Meluasnya virus corona mengakibatkan sekolah ini tidak lagi bisa melakukan pembalajaran tatap muka dimulai tahun 2019 sampai dengan 2022. Untuk mengantisipasinya penyebaran covid-19 diwilayah SMKN 2 Tanjungbalai ini, maka tim pengabdian merancang sistem pengaman dipintu masuk sekolah untuk mengantisipasi penyebaran covid, sehingga jika ada orang atau kendaraan yang ingin memasuki sekolah tersebut akan di semprot secara otomatis dengan cairan disinfektan, selain itu alat tersebut juga bisa membaca suhu tubuh pengunjung. Pada pengabdian ini menggunakan metode konsultasi dan ipteks, dimana tim pengabdian berkonsultasi dengan kepala Sekolah tentang masalah yang ada, yaitu untuk mengantisipasi penyebaran covid-19 di area sekolah.. Setelah dilakukan pengujian medapati bahwa Ada 3 kondisi pembacaan objek yaitu, ketika tidak ada objek, atau tangan, maka suhu diseting 30 0C tidak melakukan penyiraman, sementara jika objek tidak demam, suhu di range 330C-360C dan dilakukan penyiraman. Sementara untuk objek yang demam, maka suhu >= 370C dan tidak dilakukan penyiraman, serta tidak diperbolehkan masuk. Seluruh tegangan modul, menggunakan tegangan input 5VDC, yang disupply dari controller. Sementara untuk tegangan pompa menggunakan inverter 12VDC, yang dikecilkan menjadi 5,68 VDC.
Kata kunci : microcontroller; penyiram disinfektan otomatis; sensor ultrasonic; virus corona.
Abstract:Abstract: Current technological developments are no stranger among students, almost all students now have an Android that is enabled to share information and be used to help with daily activities. Based on the usefulness…
of android which is only enabled to share information or as a communication tool, the service team creates training or workshops which later aims to develop students' interest in reviewing or developing technology in the field of android or in the controller field. In order for the training not to start from the ground up, the training participants were taken from the main works of private vocational schools, majoring in computers, class XI of the Department of Software Engineering (RPL), with a total number of participants of 53 people. The implementation of a two-day workshop found results, on the first day with the theme of training on IOT-based automatic switch hardware design, it was found that 46 students managed to assemble automatic hardware switches, and 7 students failed to assemble the hardware automatically perfectly. On the second day, 53 students succeeded in making an automatic software switch on Android, and during the trial, all students also managed to do it. From the two days of the workshop activities, and seen from the students' activeness and curiosity about the development of Android and the controller, many students still want to know, other developments from Android besides being used as automatic switches are based on IoT. Keyword: Royer Oscillator circuit, Power wireless transfer, Booster converter circuit
Abstrak: Perkembangan teknologi saat ini sudah tidak asing dikalangan pelajar, hampir semua pelajar kini memiliki android yang difungsikan untuk berbagi informasi serta difungsikan untuk membantu kegiatan sehari hari. Berdasarkan kegunaan android yang hanya difungsikan untuk berbagi informasi atau sebagai alat komunikasi, maka tim pengabdian membuat pelatihan atau workshop yang nantinya bertujuan untuk menumbuh kembangkan minat siswa siswi dalam mengulas atau mengembangkan teknologi dibidang android dibidang controller. Agar pelatihan tidak dimulai dari dasar, maka peserta pelatihan diambil dari SMK Swasta karya utama, jurusan komputer, kelas XI Jurusan Rekayasa Perangkat Lunak (RPL), dengan total peserta 53 orang. Terselenggaranya workshop selama dua hari,mendapati hasil, pada hari pertama dengan tema pelatihan perancangan hardware switch otomatis berbasis iot, didapati 46 siswa berhasil merangkai hardwarei switch otomatis, dan 7 siswa tidak berhasil merangkai hardware otomatis secara sempurna. Dihari kedua, 53 siswa berhasil membuat software switch otomatis di android, dan pada saat uji coba, seluruh siswa juga berhasil melakukannya. Dari dua hari kegiatan workshop yang dilakukan,dan dilihat dari keaktifan dan rasa ingin tahu siswa tentang pengembangan dari android dan controller, banyak siswa yang masih ingin tahu, pengembangan lain dari android selain digunakan sebagai switch otomatis berbasis iot.
Kata Kunci: Royer Oscillator circuit, Power wireless transfer, Booster converter circuit
Abstract:Abstract: The advancement of smart agriculture has become a promising solution to increase food productivity and land use efficiency in urban environments. This research aims to develop an Artificial Intelligence (AI)-based…
sed vertical hydroponic farming system integrated with LED grow light technology and catfish aquaponics. The proposed system combines vertical hydroponics and aquaponics to optimize plant growth and water utilization. Internet of Things technology enables real-time environmental monitoring through an Arduino Uno microcontroller integrated with LDR, soil moisture, pH, and NPK sensors. The obtained sensor data is processed using the Mamdani Fuzzy Logic algorithm, which performs fuzzification, rule inference, aggregation, and defuzzification to generate adaptive control decisions for irrigation, nutrient circulation, and LED grow light intensity. This research uses the Research and Development (R&D) method through prototype development and performance evaluation for 30 days using spinach (Amaranthus spp.) and mustard greens (Brassica juncea) as test plants. Experimental results showed that the developed system successfully maintained stable environmental conditions, with soil moisture ranging between 69–72%, a pH value between 6.4 and 6.6, and optimal nutrient availability. Plant growth increased significantly. The integration of IoT, AI and aquaponics improves cultivation efficiency, enabling environmental control as a smart and sustainable solution for urban agriculture.
Keywords: artificial intelligence; aquaponic; hydroponic; LED grow light; vertical farming
Abstract: Kemajuan pertanian cerdas telah menjadi solusi yang menjanjikan untuk meningkatkan produktivitas pangan dan efisiensi penggunaan lahan di lingkungan perkotaan. Penelitian ini bertujuan untuk mengembangkan sistem pertanian hidroponik vertikal berbasis Kecerdasan Buatan (AI) yang terintegrasi dengan teknologi lampu tumbuh LED dan aquaponik ikan lele. Sistem yang diusulkan menggabungkan hidroponik vertikal dan aquaponik untuk mengoptimalkan pertumbuhan tanaman dan pemanfaatan air. Teknologi Internet of Things memungkinkan pemantauan lingkungan secara real-time melalui mikrokontroler arduino uno yang terintegrasi dengan sensor LDR, kelembaban tanah, pH, dan NPK. Data sensor yang diperoleh diproses menggunakan algoritma Logika Fuzzy Mamdani, yang melakukan fuzzifikasi, inferensi aturan, agregasi, dan defuzzifikasi untuk menghasilkan keputusan kontrol adaptif untuk irigasi, sirkulasi nutrisi, dan intensitas lampu tumbuh LED. Penelitian ini menggunakan metode Pengembangan (R&D) melalui pengembangan prototipe dan evaluasi kinerja selama 30 hari menggunakan bayam (Amaranthus spp.) dan sawi hijau (Brassica juncea) sebagai tanaman uji. Hasil eksperimen menunjukkan bahwa sistem yang dikembangkan berhasil mempertahankan kondisi lingkungan yang stabil, dengan kelembaban tanah berkisar antara 69–72%, nilai pH antara 6,4 dan 6,6, dan ketersediaan nutrisi yang optimal. Pertumbuhan tanaman meningkat secara signifikan. Integrasi IoT, AI dan aquaponik meningkatkan efisiensi budidaya, untuk pengendalian lingkungan sebagai solusi cerdas dan berkelanjutan untuk pertanian perkotaan.
Keywords: aquaponik; kecerdasan buatan; hidroponik; lampu tumbuh LED; pertanian vertikal
Abstract:Abstract: The development of information and communication technology has driven digital transformation in various sectors, including agriculture. One of the technologies widely applied is the Internet of Things (IoT), which…
hich enables devices to be interconnected through the internet to perform monitoring and data exchange in real time. In hydroponic cultivation, water quality stability is a crucial factor that affects plant growth. The main parameters that need to be monitored include water acidity level (pH), water temperature, and dissolved nutrient concentration measured using Total Dissolved Solids (TDS). However, water quality monitoring is still commonly conducted manually, making it less efficient and potentially causing delays in detecting changes in water conditions. This study aims to design an IoT-based water quality monitoring system for hydroponic cultivation using an ESP32 microcontroller integrated with pH, temperature, and TDS sensors. The collected data are sent to a server and displayed on a web dashboard in real time, equipped with automatic notification features. The proposed system is expected to improve monitoring efficiency and increase the productivity of hydroponic cultivation
Keywords: esp32; hydroponics; internet of things; real-time monitoring; water quality.
Abstrak: Perkembangan teknologi informasi dan komunikasi mendorong transformasi digital dalam berbagai sektor, termasuk pertanian. Salah satu teknologi yang banyak diterapkan adalah Internet of Things (IoT) yang memungkinkan perangkat saling terhubung melalui jaringan internet untuk melakukan pemantauan dan pertukaran data secara real-time. Pada budidaya hidroponik, kestabilan kualitas air menjadi faktor penting yang mempengaruhi pertumbuhan tanaman. Parameter utama yang perlu diperhatikan meliputi tingkat keasaman air (pH), suhu air, serta konsentrasi nutrisi terlarut yang diukur menggunakan Total Dissolved Solids (TDS). Namun, pemantauan kualitas air masih banyak dilakukan secara manual sehingga kurang efisien dan berpotensi menimbulkan keterlambatan dalam mendeteksi perubahan kondisi air. Penelitian ini bertujuan merancang sistem pemantauan kualitas air hidroponik berbasis IoT menggunakan mikrokontroler ESP32 yang terintegrasi dengan sensor pH, suhu, dan TDS. Data dikirim ke server dan ditampilkan pada web dashboard secara real-time serta dilengkapi notifikasi otomatis. Sistem ini diharapkan meningkatkan efisiensi pemantauan dan produktivitas budidaya hidroponik.
Kata kunci: esp32; hidroponik; internet of things; kualitas air; monitoring real-time
Abstract:Abstract: Human metapneumovirus (HMPV) poses a global health threat, but its detection remains challenging due to limited environmental monitoring. This study aims to develop a portable diagnostic tool for rapid HMPV detection…
ection by integrating cutting-edge biotechnology (CRISPR-Cas system and immunoassay) with air quality sensors on an Internet of Things (IoT)-based microfluidic platform controlled by an ESP32 microcontroller. The system is supported by a companion application and data analysis using Vertex AI, and is capable of providing results in less than fifteen minutes. The development results demonstrate the potential for improving detection accuracy and reliability, particularly with further development of virus-specific biosensors, sensor optimization, and algorithms. This technology is effective as a complementary tool for early screening and environment-based risk management in areas with limited laboratory facilities, although it does not completely replace molecular diagnostic methods such as PCR. A rapid diagnostic approach based on environmental sensors, IoT, and artificial intelligence is a promising strategy to improve early HMPV detection, accelerate public health responses, and strengthen respiratory infection prevention through integrated environmental monitoring and education functions.
Keywords: air quality; CRISPR-Cas; Human Metapneumovirus (HMPV); Internet of Things, portable diagnostic; public health; rapid detection; sensors.
Abstrak: Human metapneumovirus (HMPV) merupakan ancaman bagi kesehatan global, namun pendeteksiannya masih sulit akibat keterbatasan pemantauan lingkungan. Studi ini bertujuan mengembangkan alat diagnostik portabel untuk deteksi cepat HMPV melalui integrasi bioteknologi mutakhir (sistem CRISPR-Cas dan immunoassay) dengan sensor kualitas udara pada platform mikrofluida berbasis Internet of Things (IoT) yang dikendalikan mikrokontroler ESP32. Sistem ini didukung aplikasi pendamping dan analisis data menggunakan Vertex AI, serta mampu memberikan hasil dalam waktu kurang dari lima belas menit. Hasil pengembangan menunjukkan potensi peningkatan akurasi dan keandalan deteksi, terutama dengan pengembangan lanjutan berupa biosensor spesifik virus, optimalisasi sensor, dan algoritma. Teknologi ini efektif sebagai alat pelengkap untuk skrining awal dan manajemen risiko berbasis lingkungan di wilayah dengan keterbatasan fasilitas laboratorium, meskipun tidak sepenuhnya menggantikan metode diagnostik molekuler seperti PCR. Pendekatan diagnostik cepat berbasis sensor lingkungan, IoT, dan kecerdasan buatan menjadi strategi menjanjikan untuk meningkatkan deteksi dini HMPV, mempercepat respons kesehatan masyarakat, serta memperkuat pencegahan infeksi saluran pernapasan melalui fungsi pemantauan dan edukasi lingkungan yang terintegrasi.
Kata kunci: CRISPR-Cas; diagnostik portabel; deteksi cepat; Human Metapneumovirus (HMPV); kesehatan masyarakat; IoT (Internet of Things); sensor kualitas udara.
Abstract:Abstract: Soil moisture is an important factor in determining the watering needs of plants for optimal growth. Therefore, accurate monitoring of soil moisture is necessary. This research aims to design and build a soil moisture…
oisture detection tool based on the Decision Tree algorithm with the support of the YL-69 sensor for humidity measurement and the DHT11 sensor for temperature measurement to increase data accuracy. This system uses NodeMCU ESP8266 as a microcontroller and is integrated with an Android application as a user interface. Sensor interpretation data is analyzed using the Decision Tree algorithm to determine soil conditions (dry, damp or wet). The test results show an accuracy level of 95% from 300 data samples. Thus, this system is able to detect soil moisture effectively and can help increase the efficiency of crop management on a household and commercial agricultural scale.
Keywords: agriculture, android, decision tree algorithm, sensors, soil moisture detection
Abstract:Abstract: In agriculture, irrigation systems are vital for enhancing water management and maximising plant growth. Effective irrigation management involves distributing sufficient quantities of water evenly to condition…
soil fertility for plants. This study aims to design a prototype that can be monitored via the Telegram app. The research methodology employs a thinking framework approach. The system is implemented using an Arduino Uno microcontroller and supporting devices, including an ESP8266 Wi-Fi module, an ultrasonic sensor, a soil moisture sensor, a stepper motor and a servo motor. Telegram serves as the monitoring tool, sending notifications connected to the Arduino via a Wi-Fi network. Test results showed that the system operates effectively: the HC-SR04 ultrasonic sensor functions as a water level reader, and the stepper motor opens and closes the water gate. Soil moisture monitoring uses a soil moisture sensor to measure the water content in the soil. If the sensor detects dry soil conditions or a moisture level below 60%, the servo motor will rotate 15° to close the water channel. Conversely, if the sensor detects wet or moist soil conditions, the servo motor will rotate 0° to close the water channel.
Keywords: arduino uno; irrigation system; soil moisture; ultrasonic sensor;
Abstract:Abstract: Lighting is one of the important aspects in supporting the comfort of public facilities, especially for futsal fields that rely on lighting for better user visibility at night. This study focuses on finding lighting…
hting solutions for futsal fields that are still running manually by providing alternative solutions in the form of implementing the concept of a smart automation system based on the Internet of Things (IoT) by combining the working systems of LDR sensors, ultrasonic sensors, and microcontrollers, this aims to provide convenience while creating innovation for existing problems. Using observation and implementation methods produces a system that is designed in such a way that the results will later be displayed on the Kodular android application for remote monitoring. It is hoped that the system in this study can work effectively and efficiently in managing field lighting that can answer the problems raised.
Keywords: automation; IoT; kodular; lighting; monitoring.
Abstrak: Pencahayaan merupakan salah satu aspek penting dalam hal yang mendukung kenyamanan fasilitas publik terutama untuk lapangan futsal yang mengandalkan pencahayaan untuk visibilitas pengguna lebih baik pada malam hari. Penelitian ini berfokus pada pencarian solusi pencahayaan pada lapangan futsal yang masih berjalan secara manual dengan diberikannya solusi alternatif berupa penerapan konsep sistem otomatisasi pintar berbasis Internet of Things (IoT) dengan memadu-padankan sistem kerja sensor LDR, sensor ultrasonik, dan mikrokontroler, hal tersebut bertujuan memberikan kemudahan sekaligus menciptakan inovasi bagi permasalahan yang ada. Menggunakan metode observasi dan implentasi menghasilkan sistem yang dirancang sedemikian rupa dengan hasil yang nantinya akan ditampilkan pada aplikasi android Kodular untuk pemantauan jarak jauh. Diharapkan sistem dalam penelitian ini dapat bekerja secara efektif dan efisien dalam pengelolaan pencahayaan lapangan yang dapat menjawab pemasalahan yang diangkat.
Kata kunci: IoT; pencahayaan; otomatis; pemantauan; kodular.
Abstract:Abstract : Waste management in Sei Beluru Village faces challenges due to population growth and increasing waste volume. This research aims to design and implement an automatic waste bin system based on microcontroller using…
sing Arduino Uno. The research uses experimental method with hardware and software development stages including system design, component integration, and testing. The developed system integrates HCSR-04 sensors for waste volume detection, infrared sensors for object presence detection, and servo motors for automatic opening-closing mechanism. Test results show that the system successfully detects waste levels with high accuracy and operates the opening-closing mechanism effectively. The implementation of this system proves effective in optimizing waste management in Sei Beluru Village by reducing physical interaction and preventing waste accumulation.
Keywords : arduino uno; HCSR-04 sensor; automatic waste bin; HCSR-04 sensor; microcontroller; waste management.
Abstract : Waste management in Sei Beluru Village faces challenges due to population growth and increasing waste volume. This research aims to design and implement an automatic waste bin system based on microcontroller using Arduino Uno. The research uses experimental method with hardware and software development stages including system design, component integration, and testing. The developed system integrates HCSR-04 sensors for waste volume detection, infrared sensors for object presence detection, and servo motors for automatic opening-closing mechanism. Test results show that the system successfully detects waste levels with high accuracy and operates the opening-closing mechanism effectively. The implementation of this system proves effective in optimizing waste management in Sei Beluru Village by reducing physical interaction and preventing waste accumulation.
Keywords : arduino uno; HCSR-04 sensor; automatic waste bin; HCSR-04 sensor; microcontroller; waste management.