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Journal : Jurnal: International Journal of Engineering and Computer Science Applications (IJECSA)

Plume Detection System Based Internet of Things I Nyoman Susila Astraning Utama; Sirojul Hadi; I Putu Hariyadi
International Journal of Engineering and Computer Science Applications (IJECSA) Vol 1 No 1 (2022): March 2022
Publisher : Universitas Bumigora Mataram-Lombok

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (808.285 KB) | DOI: 10.30812/ijecsa.v1i1.1698

Abstract

Security is one of the important aspects in a system or environment. Residential, office, tourist and industrial areas are places that are prone to fires because they contain flammable objects. Slow handling when a gas leak occurs can trigger a fire. The solution that can be used to minimize the occurrence of fires is to build tools that work to monitor the condition of the room or environment that is prone to leakage of gas or other flammable liquids. The design and manufacture of a system to detect LPG and alcohol gas leaks can be useful for providing information in the event of a gas or alcohol leak so that it can be handled quickly and minimize fire damage. This system combines an plume detection system with an internet of things system so that it can provide information when a gas or flammable liquid leak occurs. The gas leak information is sent as a notification to the telegram from the operator. The design and manufacture of this system uses the Waterfall methodology with the following stages: analyzing (covering the need for system creation), system design (including designing electronic circuits and web monitoring interfaces), implementing system design and testing the system as a whole. The result of this research is that an electronic detection system has been successfully built that can distinguish gases and can provide information via telegram and web if gas is detected in the sensor environment. In the LPG gas leak test, the results show that the characteristics of LPG gas, namely the sensor output voltage, have an average of 4.17 volts with an average Part Per Million (PPM) of 8340 and the characteristics of alcohol gas, namely the sensor output voltage, have an average of 0, 13 volts with an average Part Per Million (PPM) of 254.
Designing a Honey Quality Tool Based on Gas Sensor and Color Sensor Al Bima; Sirojul Hadi; M. Najmul Fadli; Nurul Hidayah; Lalu Danu Prima Arzani
International Journal of Engineering and Computer Science Applications (IJECSA) Vol 1 No 2 (2022): September 2022
Publisher : Universitas Bumigora Mataram-Lombok

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (578.267 KB) | DOI: 10.30812/ijecsa.v1i2.2407

Abstract

Honey has many benefits. Thus, honey counterfeiting often occurs with the ever-increasing demand. However, many do not know how to distinguish between real and fake honey, even honey breeders and hunters find it difficult to tell the difference. The honey used to test the quality of honey is honey produced by Apis dorsata bees or wild bees, the nectar consumed by these bees is the kesambi tree, the kesambi tree that grows a lot on the slopes of Mount Tambora, Bima district. Honey contains a lot of antioxidants such as vitamin C, pinocembrin, chrysin, pinobaksin, catalase, and many other ingredients that are very beneficial for the health of the body. Testing the authenticity of honey using two sensors, namely a gas sensor and a color sensor, the tool has been connected to a database and web application to display test data. The web application can be accessed from any location as long as it is connected to the internet network. The results of the research are the ideal distance for measurements is carried out as far as 2 cm. The success rate in testing pure honey with a mixture of honey has different values, such as the value of pure honey has a gas sensor voltage of 3.3 volts while the value of mixed honey with 50% pure honey and 50% sugar, the value of the gas sensor voltage is 2.54 volts. Mixed honey has a voltage below 3 volts. The results of the color sensor test, namely the sensor output have different values, the RGB value for pure honey is red 206, green 246, and blue 182 while the RGB value for mixed honey is for 20% pure honey and 80% sugar mixture produces an RGB value of Red 156, Green 210, Blue 171. The color sensor can distinguish between real honey and mixed honey for trigona honey.
Plume Detection System Based Internet of Things I Nyoman Susila Astraning Utama; Sirojul Hadi; I Putu Hariyadi
International Journal of Engineering and Computer Science Applications (IJECSA) Vol. 1 No. 1 (2022): March 2022
Publisher : Universitas Bumigora Mataram-Lombok

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30812/ijecsa.v1i1.1698

Abstract

Security is one of the important aspects in a system or environment. Residential, office, tourist and industrial areas are places that are prone to fires because they contain flammable objects. Slow handling when a gas leak occurs can trigger a fire. The solution that can be used to minimize the occurrence of fires is to build tools that work to monitor the condition of the room or environment that is prone to leakage of gas or other flammable liquids. The design and manufacture of a system to detect LPG and alcohol gas leaks can be useful for providing information in the event of a gas or alcohol leak so that it can be handled quickly and minimize fire damage. This system combines an plume detection system with an internet of things system so that it can provide information when a gas or flammable liquid leak occurs. The gas leak information is sent as a notification to the telegram from the operator. The design and manufacture of this system uses the Waterfall methodology with the following stages: analyzing (covering the need for system creation), system design (including designing electronic circuits and web monitoring interfaces), implementing system design and testing the system as a whole. The result of this research is that an electronic detection system has been successfully built that can distinguish gases and can provide information via telegram and web if gas is detected in the sensor environment. In the LPG gas leak test, the results show that the characteristics of LPG gas, namely the sensor output voltage, have an average of 4.17 volts with an average Part Per Million (PPM) of 8340 and the characteristics of alcohol gas, namely the sensor output voltage, have an average of 0, 13 volts with an average Part Per Million (PPM) of 254.
Designing a Honey Quality Tool Based on Gas Sensor and Color Sensor Al Bima; Sirojul Hadi; M. Najmul Fadli; Nurul Hidayah; Lalu Danu Prima Arzani
International Journal of Engineering and Computer Science Applications (IJECSA) Vol. 1 No. 2 (2022): September 2022
Publisher : Universitas Bumigora Mataram-Lombok

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30812/ijecsa.v1i2.2407

Abstract

Honey has many benefits. Thus, honey counterfeiting often occurs with the ever-increasing demand. However, many do not know how to distinguish between real and fake honey, even honey breeders and hunters find it difficult to tell the difference. The honey used to test the quality of honey is honey produced by Apis dorsata bees or wild bees, the nectar consumed by these bees is the kesambi tree, the kesambi tree that grows a lot on the slopes of Mount Tambora, Bima district. Honey contains a lot of antioxidants such as vitamin C, pinocembrin, chrysin, pinobaksin, catalase, and many other ingredients that are very beneficial for the health of the body. Testing the authenticity of honey using two sensors, namely a gas sensor and a color sensor, the tool has been connected to a database and web application to display test data. The web application can be accessed from any location as long as it is connected to the internet network. The results of the research are the ideal distance for measurements is carried out as far as 2 cm. The success rate in testing pure honey with a mixture of honey has different values, such as the value of pure honey has a gas sensor voltage of 3.3 volts while the value of mixed honey with 50% pure honey and 50% sugar, the value of the gas sensor voltage is 2.54 volts. Mixed honey has a voltage below 3 volts. The results of the color sensor test, namely the sensor output have different values, the RGB value for pure honey is red 206, green 246, and blue 182 while the RGB value for mixed honey is for 20% pure honey and 80% sugar mixture produces an RGB value of Red 156, Green 210, Blue 171. The color sensor can distinguish between real honey and mixed honey for trigona honey.
Co-Authors Al Bima Alfarid Andi Heryanto Andi Sofyan Anas Anthony Anggrawan Anzali Ika Cahyati Apriani Apriani Aryuanto Soetedjo Astuti, Emi Ayu Dasriani, Ni Gusti Bachtiar, Adam Bima Romadhon Parada Dian Palevi Christopher Michael Lauw Citra Dewi Megawati Dedi Aprianto Dewi, Puspita Eka Martiningsih, Ni Gst.Ag. Gde Fadli, M. Najmul Fadli, Muhammad Najmul Fatimatuzzahra Fatimatuzzahra Hamdani Hamdani Hammad, Rifqi Hasbullah Hasbullah Helna Wardhana Husain Husain I Ketut Arnawa I Made Suryana I Made Wartana I Nyoman Miyarta Yasa I Nyoman Susila Astraning Utama I Nyoman Switrayana I Putu Hariyadi Ibrahim, Isra Dewi Kuntary Irmalia Suryani Faradisa Jian Budiarto Khairan marzuki Kurniadin Abd Latif Kurniawan Aji Pangestu Lalu Danu Prima Arzani Lalu Ganda Rady Putra Lilik Widyawati M Najmul Fadli M. Ibrahim Ashari M. Ibrahim Ashari M. Najmul Fadli Mardedi, Lalu Zazuli Azhar Mudjirahardjo, Panca Muhamad Wisnu Alfiansyah Muhammad Eka Putra Ramandha Muhammad Haris Nasri Muhammad Zulfikri Nanang Sulistiyanto Neny Sulistianingsih Ni Putu Agustini Ni Putu Agustini Novia Zuriatun Solehah Nurul Hidayah Parama Diptya Widayaka Phyta Rahima Prama Diptya Widayaka Puspita Dewi, Puspita Putri Ayu Wulandari Rachmadi Setiawan Radhitya, I Made Surya Radimas Putra M.D.L Radimas Putra Muhammad Davi Labib Rahmiati, Baiq Fitria Regina Pricilia Yunika Reza Diharja Reza Diharja Reza Diharja Rifqi Hammad Rifqy Hammad Rini Anggriani Riyana Rizki Yuliatin Sabtana, Fayruziyah Ifroch Satya HD, Dharma Siti Soraya Sujaka, Tomy Tri Syahrir, Moch. Tomi Tri Sujaka Triwijoyo, Bambang Krismono Wahyu Kamil Syarifaturrahman Wardhani Wardhani Wayan Canny Naktiany Wirajaya Kusuma Yunika, Regina Pricilia Zulfikar Zauzi Zulfikar Zauzi