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AUGMENTED REALITY SEBAGAI MEDIA PENDUKUNG PEMBELAJARAN MASA PANDEMI COVID-19 Inayatul Ummah; Muhamad Riyad Ariwibowo
Science Tech: Jurnal Ilmu Pengetahuan dan Teknologi Vol 7 No 1 (2021): Februari
Publisher : Universitas Sarjanawiyata Tamansiswa

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30738/jst.v7i1.8901

Abstract

Pandemi yang terjadi di seluruh dunia telah merubah pola pembelajaran menjadi daring/ online. Pembelajaran secara daring tentu memiliki kendala terutama dalam proses pemahaman konsep yang membutuhkan tingkat visualisasi yang tinggi. Studi literatur ini  memberikan tahapan mulai dari perancangan hingga praktik penggunaan media pembelajaran berbasis Augmented Reality. Hasil studi literatur ini adalah terbentuknya aplikasi Augmented Reality yang dapat digunakan untuk memenuhi kebutuhan media pembelajaran pada masa pandemi Covid-19. Kebutuhan media dengan visual yang baik saat menghadapi konsep – konsep tertentu akan memudahkan proses pemahaman siswa. Dengan demikian dapat disimpulkan penggunaan media pembelajaran yang memaksimalkan teknologi dapat mempermudah guru dan siswa dalam proses pembelajaran jarak jauh.
Systematic Literature Review: Penerapan IoT Pada Alat Pengukur Suhu Tubuh Berbasis Mikrokontroler Sebagai Langkah Pencegahan Covid-19 Muhamad Riyad Ariwibowo; Inayatul Ummah
Science Tech: Jurnal Ilmu Pengetahuan dan Teknologi Vol 8 No 1 (2022): Februari
Publisher : Universitas Sarjanawiyata Tamansiswa

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30738/st.vol8.no1.a11337

Abstract

The Covid-19 pandemic is a threat all over the world. This virus has an impact on economic, social, educational and health needs. Thus, various kinds of regulations were formed in order to reduce transmission from people who have the potential to be infected with the virus. With the implementation of social restrictions, every work area, tourist spot, and hospital will be checked for body temperature with a temperature measuring device. Therefore, the author makes the application of the SLR (Systematic Literature Review) method which aims to find out from previous researchers regarding the application of the internet of things to temperature measuring devices with a microcontroller onchip system that is used on these devices by screening related journals from the topic of the problem. Through SLR with the PICO approach method (Population, Intervention, Comparison, Outcome) the results show that the literature search is more specific by showing the division of two keywords in the search including, microcontroller as a body temperature gauge and internet of things (IoT) based body temperature meter. Thus, at the study identification stage it can be indicated on the inclusion and exclusion by reviewing the literature search that can be accepted and considered.
IoT- Based Smart Security System Using Infrared Sensor as Motion Detector Muhamad Riyad Ariwibowo; Juju Juhaeriyah; Edo Agung Nugroho; Rendi Mutaqim
ITEJ (Information Technology Engineering Journals) Vol. 8 No. 1 (2023): June
Publisher : Pusat Teknologi Informasi dan Pangkalan Data IAIN Syekh Nurjati Cirebon

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24235/itej.v8i1.109

Abstract

Today’s security system requires the support of new technology to make it easier to monitor remotely and maintain valuables stored at home in real time. Internet of things technology has now been widely developed with various types of electronic components applied. So, from these problems providing innovation with the development of a remote security system applied to the FC-51 infrared sensor and ESP8266 as it’s control. The infrared sensor receives input signals in the form of objects detected and received by ESP8266 to be sent information to the server to be notified of messages from the Blynk platform to mobile devices. The results of this study prove, that the smart security system with IoT – based infrared sensor is able to detect the optimal distance obtained < 30cm and the shape of different objects determines the level of accuracy of the sensor.
Pelatihan Peningkatan Kompetensi AI Guru SD Melalui Pendekatan TPACK-AI Dian Putri; Maya Dewi Kurnia; Taryo; Muhamad Riyad Ariwibowo; Rindi Wulandari
KOMUNITA: Jurnal Pengabdian dan Pemberdayaan Masyarakat Vol 5 No 1 (2026): Februari
Publisher : PELITA NUSA TENGGARA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.60004/komunita.v5i1.422

Abstract

This community service program aimed to enhance elementary school teachers' competence in integrating Artificial Intelligence (AI) into their pedagogical practices through the TPACK-AI framework. Conducted at SD Mitra in Cirebon City from August to September 2025, the program involved 10 certified teachers (7 female, 3 male) through a 5-week structured intervention consisting of preparation, intensive training, guided implementation, and evaluation phases. Using a quasi-experimental pre-post test design, data were collected through validated competency assessments, classroom observations, digital portfolios, and focus group discussions. Results showed significant improvements across four competency dimensions: conceptual understanding (from M=62.4 to M=86.7), technical skills in operating AI platforms (from M=58.3 to M=88.2), digital content creation abilities (from M=54.6 to M=84.5), and pedagogical integration capacity (from M=51.2 to M=82.8). Participant satisfaction averaged 4.52/5.0, indicating high program effectiveness. However, challenges persisted including unstable internet access (30%), time constraints (40%), and limited institutional support (20%). The program demonstrated that structured, hands-on training combined with guided implementation effectively transforms teaching practices, contributing to national digital literacy efforts in education
Analisis Eksperimental Supervisory Adaptive Fuzzy Control untuk Kestabilan Nutrisi dan Ketersediaan Air pada Sistem Hidroponik Cerdas Juju Juhaeriyah; Muhamad Riyad Ariwibowo; Ahmad Syahruli
Jurnal Pengembangan Teknologi Informasi dan Komunikasi (JUPTIK) Vol. 4 No. 1 (2026): JURNAL PENGEMBANGAN TEKNOLOGI INFORMASI DAN KOMUNIAKSI (JUPTIK)
Publisher : Universitas Muhammadiyah Muara Bungo

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.52060/juptik.v4i1.4244

Abstract

Sistem hidroponik modern menghadapi masalah ketidakstabilan kadar nutrisi dan ketersediaan air. Penelitian sebelumnya belum mengintegrasikan Supervisory Adaptive Fuzzy Control (SAFC) dengan pemantauan IoT secara terpadu dan adaptif. Penelitian ini penting untuk mendukung pertanian presisi yang berkelanjutan melalui kontrol hidroponik otomatis yang efisien dan responsif, yang dapat beradaptasi dengan dinamika lingkungan pertanian modern. Studi ini bertujuan untuk mengembangkan sistem hidroponik cerdas berbasis IoT dengan menggunakan SAFC untuk menstabilkan nutrisi dan ketersediaan air. Pendekatan eksperimental diterapkan, mencakup desain arsitektur IoT, perakitan prototipe, implementasi algoritma SAFC, serta pengujian dan analisis. Pengujian mencakup akurasi sensor, validasi aturan, dan analisis real-time terhadap stabilitas nutrisi dan ketersediaan air. Hasil pengujian menunjukkan bahwa sensor TDS mencapai akurasi 96,49% dengan kesalahan 3,51%, sedangkan sensor ultrasonik mencapai akurasi 95,66% dengan kesalahan 4,34%. Sistem secara konsisten memenuhi sembilan aturan SAFC pada semua variasi pengujian. Eksperimen stabilitas yang berlangsung selama 33 menit untuk setiap variasi menunjukkan bahwa rasio aliran 1:2 menghasilkan stabilitas terbaik yakni kategori cukup, dengan rata-rata TDS 762,83 ppm dan tingkat kedalaman air 6,05 cm. Integrasi IoT memungkinkan sinkronisasi data secara real-time antara prototipe, aplikasi seluler, dan aplikasi desktop dengan akurasi transmisi 100%, mendukung pemantauan dan pengendalian jarak jauh yang efisien dan berkelanjutan pada sistem hidroponik. Temuan ini memperkuat pengembangan pertanian presisi cerdas berbasis kontrol adaptif. Penelitian lebih lanjut sebaiknya mengintegrasikan pembelajaran mesin ringan dan validasi dalam lingkungan rumah kaca dunia nyata.