Septiana Zahri Amin, - (2024) RANCANG BANGUN ALAT DAN SISTEM PEMANTAU KUALITAS UDARA PORTABEL DENGAN GPS DAN WEBSITE MONITORING. S1 thesis, Universitas Pendidikan Indonesia.
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Abstract
Daerah dengan pertumbuhan penduduk yang tinggi, perkembangan industri yang pesat, dan peningkatan aktivitas transportasi menyebabkan penurunan kualitas udara. Buruknya kualitas udara dapat memicu berbagai masalah kesehatan pada manusia dan lingkungan. Tujuan penelitian ini merancang alat deteksi kualitas udara berserta informasi lokasi yang dapat diakses melalui website pemantauan. Metode penelitian yang digunakan adalah adalah Research and Development (R&D) melalui pendekatan ADDIE (Analyze, Design, Development, Implementation, dan Evaluation). Sistem pemantauan menggunakan ThingSpeak dan website pemantauan. Sensor MQ7 mengukur CO, MQ135 mengukur CO2, GP2Y1010AU0F mengukur PM10, dan DHT11 mengukur suhu dan kelembapan, serta modul GPS Ublox NEO6MV2 membaca titik lokasi. Dari hasil pengujian alat bekerja dengan baik membaca parameter kualitas udara, rata – rata kualitas udara di Kota Bandung kurang baik dari segi kesehatan dan kenyamananan namun tidak tergolong berbahaya. Faktor yang mempengaruhi kualitas udara meliputi aktivitas kendaraan bermotor, pembakaran sampah, dan aktivtias manusia, serta pemanasan global dan kuranganya vegetasi. Perbandingan alat deteksi dengan situs Air Quality Index, co2.earth, dan The Weather Channel, menghasilkan persentase error, CO sebesar 61,84%, PM10 sebesar 27,96%, CO2 sebesar 42,03%, suhu 2,73% dan kelembapan sebesar 36,12%. Lokasi dan proses pengujian berpengaruh terhadap hasiil deteksi alat. Areas with high population growth, rapid industrial development, and increased transportation activities have led to a decline in air quality. Poor air quality can trigger various health problems in humans and the environment. The purpose of this research is to design an air quality detection device with location information that can be accessed through a monitoring website. The research method used is Research and Development (R&D) through the ADDIE approach (Analyze, Design, Development, Implementation, and Evaluation). The monitoring system uses ThingSpeak and a monitoring website. The MQ7 sensor measures CO, MQ135 measures CO2, GP2Y1010AU0F measures PM10, and DHT11 measures temperature and humidity, while the Ublox NEO6MV2 GPS module reads the location point. From the test results, the device works well in reading air quality parameters. The average air quality in Bandung City is less than good in terms of health and comfort but is not classified as dangerous. Factors affecting air quality include motor vehicle activities, waste burning, and human activities, as well as global warming and a lack of vegetation. Comparison of the detection device with the Air Quality Index website, co2.earth, and The Weather Channel, resulted in an error percentage of 61.84% for CO, 27.96% for PM10, 42.03% for CO2, 2.73% for temperature, and 36.12% for humidity. The location and testing process influence the detection results.
Item Type: | Thesis (S1) |
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Additional Information: | https://scholar.google.com/citations?view_op=new_profile&hl=en ID SINTA Dosen Pembimbing: Wawan Purnama: 6003518 |
Uncontrolled Keywords: | Kualitas Udara, Tingkat Kenyamanan, Pemantau Kualitas Udara, Model ADDIE. Air Quality, Confort Level, Air Quality Monitoring, Air Quality, ADDIE Model. |
Subjects: | L Education > L Education (General) Q Science > Q Science (General) T Technology > T Technology (General) |
Divisions: | Fakultas Pendidikan Teknik dan Industri > Jurusan Pendidikan Teknik Elektro |
Depositing User: | Septiana Zahri Amin |
Date Deposited: | 05 Sep 2024 02:02 |
Last Modified: | 05 Sep 2024 02:02 |
URI: | http://repository.upi.edu/id/eprint/122136 |
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