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Journal : Journal Of Information System And Artificial Intelligence

Prototype Alat Kendali Otomatis Penjemur Pakaian Menggunakan NodeMCU ESP32 Dan Telegram Bot Berbasis Internet of Things (IOT) ageng sanaris; Imam Suharjo
Journal Of Information System And Artificial Intelligence Vol. 1 No. 1 (2020): Journal of Information System and Artificial Intelligence Vol I, No I Nov.2020
Publisher : Sistem Informasi Universitas Mercu Buana Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (257.38 KB)

Abstract

Pemanasan global yang semakin tinggi mengakibatkan kondisi cuaca saat ini tidak menentu yang mengakibatkan pola hujan dan panasnya semakin sulit untuk di prediksi. Pada musim kemarau dapat terjadi hujan yang turun tiba-tiba, dan disaat musim hujan, panas matahari sering juga muncul. Sehingga terjadi suatu permasalahan ketika menjemur pakaian dan ditinggalkan untuk beraktivitas diluar rumah. Untuk mengatasi masalah tersebut dibuatlah sebuah rancangan prototype alat kendali otomatis penjemur pakaian menggunakan nodemcu ESP32 dan Telegram Bot berbasis IOT. Diawali dengan perancangan blok sistem untuk menentukan kebutuhan perangkat keras, dilanjutkan dengan rekayasa perangkat lunak dengan pembuatan flowchart kemudian dirangkai menjadi sebuah protoype alat. Sebagai pengambilan data cuaca sekitar menggunakan sensor LDR, sensor Raindrop, Sensor DHT 11. Kemudian dari ketiga sensor tersebut diolah oleh mikrokontroler NODEMCU ESP32 untuk menggerakkan motor DC yang akan memasukkan atau mengeluarkan pakaian.Data dari seluruh sensor dapat ditampilkan di smartphone melalui aplikasi telegram. Sistem notifikasi dibangun dengan membuat bot telegram. Selain notifikasi, bot telegram juga dapat mengatur jemuran dari jarak jauh. Dari hasil pengujian dapat disimpulkan bahwa, alat kendali penjemur otomatis pakaian ini akan menjemur ketika mulai pagi hari dan kondisi cerah tidak hujan, serta sebaliknya akan memasukkan pakaian secara otomatis jika hujan turun atau ketika malam hari. Telegram sebagai user interface untuk mengetahui posisi jemuran diluar atau didalam serta untuk mengetahui kondisi cuaca dan dapat mengatur secara jarak jauh untuk memasukkan jemuran atau mengeluarkan jemuran. Untuk penelitian selanjutnya dapat dikembangkan dengan menambahkan sensor untuk mengetahui kondisi pakaian basah dan kering.
Sistem Pendukung Keputusan Pemilihan Laptop Untuk Kebutuhan Kuliah Metode Simple Additive Weighting (SAW) Muhammad Syahril; Imam Suharjo
Journal Of Information System And Artificial Intelligence Vol. 2 No. 1 (2021): Journal of Information System and Artificial Intelligence Vol II, No I November
Publisher : Universitas Mercu Buana Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (240.296 KB) | DOI: 10.26486/jisai.v2i1.45

Abstract

In this study, the authors aim to design and build a decision support system for election decisions on a laptop, the method I use is the Simple Additive Weighting (SAW) method. There are six criteria that the author uses, namely price, price, processor brand, hardiks, ram, VGA, screen size. The use of a Decision Support System (DSS) is expected to help prospective customers to more easily consider choosing a laptop that suits their wishes. Based on the 26 submitted data, 22 laptops (84.61%) were suitable and 4 laptops (15.38%) were unsuitable.
Rancangan Bangun Smart Home Untuk Deteksi Dini Kebakaran Mengunakan Mikrokontroler Berbasis Android Pranto Suwarno; Imam Suharjo
Journal Of Information System And Artificial Intelligence Vol. 3 No. 1 (2022): Journal of Information System and Artificial Intelligence Vol III, No I Novembe
Publisher : Universitas Mercu Buana Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26486/jisai.v3i1.94

Abstract

Along with the times and the increasing era of technology, the demand for safe, comfortable and modern homes is increasing rapidly, and the technology that is currently in high demand by people is IoT (Internet of Think), IoT allows users to control and monitor the state of their home. Because of its usefulness, the purpose of this research is to produce asystem design smart home combined with this detection feature for fires in the house. The technology applied is in the form of full control and monitoring of temperature and humidity, lighting control, fire detection, and gas leak detection.
Rancang Bangun Smart Irrigation Tanaman Cabai Berbasis IoT Dudi Ali; Imam Suharjo
Journal Of Information System And Artificial Intelligence Vol. 3 No. 1 (2022): Journal of Information System and Artificial Intelligence Vol III, No I Novembe
Publisher : Universitas Mercu Buana Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26486/jisai.v3i1.100

Abstract

The development of the current era is increasing, people expect a technology that can facilitate their activities or work. One of them is in agriculture such as irrigation systems. The irrigation system is one of the factors that determine the success of agriculture because without sufficient water, most of the crops that become agricultural commodities will not thrive. However, the current irrigation system still uses the manual method which still has some drawbacks, for example, the use of too much water. As in chili plants, the amount of water to be given to chili plants cannot be determined. The easiest way to check is to make sure the soil is moist on the chili plant. For this reason, in this final project, a tool is made that can check soil moisture and plant waters automatically. This tool was built to make it easier for farmers to check soil moisture and provide water to plants, especially chili plants. This tool uses a soil moisture sensor or soil moisture sensor which is used to check soil moisture and send data to Arduino to turn on the water pump. In making this final project, a system is designed that is able to take advantage of the development of science and technology to facilitate the work of farmers. In this technology, a system was developed to open and close irrigation canals using a microcontroller that can be connected to the android application.
Implementasi Smart Garden Untuk Monitoring Dan Otomatisasi Tanaman Terong Berbasis Internet Of Things Menggunakan Aplikasi Android Firwansyah, Andi; Suharjo, Imam
Journal Of Information System And Artificial Intelligence Vol. 5 No. 1 (2024): Vol. 5 No. 1 (2024): Vol. 5 No. 1 (2024): Journal of Information System and Art
Publisher : Universitas Mercu Buana Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26486/jisai.v5i1.97

Abstract

Penelitian ini menjelaskan bagaimana membuat kelembaban media tanam selelau berada di range 80% - 90% dan Membuat sebuah alat yang mampu mengontrol sistem penyiraman air dan kelembaban media tanam dengan menggunakan aplikasi android, untuk mengetahui data seperti pH pada media tanam, kelembaban tanah, suhu pada tanaman dan sistem penyiraman air otomatis yang nantinya data ini akan disimpan di firebase dan akan di akses oleh pengguna melalui aplikasi android. Adapun bahan yang digunakan pada penelitian ini yaitu, Arduino Uno, NodeMCU ESP8266, Modul Sensor pH Tanah, Soil Moisture, DHT11, Relay 2 Channel, Implementasi ini merupakan tahap eksekusi dari desain yang telah dirancang sebelumnya, penentuan tata letak dari masing-masing sensor dibuat sepresisi mungkin untuk mendapatkan hasil yang maksimal.Dalam proses perancangan akan lebih baik digunakan ruang tertutup dan pengaturan suhu agar proses perawatan tanaman terong dapat lebih maksimal. proses pengujian sensor masih mendapati sedikit nilai error sehingga diharapkan dapat diperbaiki lagi agar meminimalisir tingkat kesalahan pembacaan pada sensor, salah satunya adalah sensor cahaya LDR dimana sensor ini dapat mendeteksi intensitas cahaya dan dapat mengukur kebutuhan dari tanaman diuji
Rancang Bangun Sistem Monitoring Keamanan, Suhu dan Kelembapan Gudang Beras Menggunakan Bot Telegram Berbasis IoT Aji Santoso, Zulfikar; Suharjo, Imam
Journal Of Information System And Artificial Intelligence Vol. 4 No. 2 (2024): Vol. 4 No. 2 (2024): Journal of Information System and Artificial Intelligence
Publisher : Universitas Mercu Buana Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26486/jisai.v4i2.206

Abstract

Rice is one of the staple foods that is an important commodity where rice consumption and production in Indonesia is very high. High temperature and humidity can cause rice to easily become damaged, for example the appearance of rice bugs, mold growth and an increase in the number of broken grains. In addition, the security of the rice warehouse must also be maintained to prevent losses such as theft. The purpose of this research is to create a system and tool that can monitor or maintain security, temperature and humidity in rice warehouses. The result of this research is a system and tool capable of maintaining temperatures below 30 degrees Celsius and also air humidity below 65% automatically. In addition, a picture of the situation in the warehouse will be sent via a special Telegram Bot to the user as a surveillance and warehouse security tool.
Parking Quota Monitoring System Internet of Things Based Pili, M. Ali Sahbana; Suharjo, Imam
Journal Of Information System And Artificial Intelligence Vol. 5 No. 2 (2025): Vol. 5 No.2(2025): Journal of Information System and Artificial Intelligence Vo
Publisher : Universitas Mercu Buana Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26486/jisai.v6i2.227

Abstract

The development of science and technology has now progressed rapidly. Humans try to overcome parking problems by adopting automatic equipment systems, replacing manual systems. One approach applied is to design an information model regarding the number of automatic parking areas around the parking lot entrance. This information system will display information regarding the number of parking slots available in the parking area. This research produces systems and tools that can monitor parking quotas using IR sensors. System users can park their vehicles as long as the parking lot is not full and the user's ID card has been registered with the system. By using RFID, the system allows users to park easily without swiping the card first. The system will automatically increase the parking quota if it detects a vehicle leaving the parking area. Based on the results of tests carried out to enter parking automatically where the parking quota has not been met and the ID card that has been registered can run well with a percentage of 98%. Meanwhile, the automatic parking exit system also runs well with a percentage of 98%. This presentation is influenced by the speed of the sensor in reading the presence of the vehicle.