Smart Water System at House Using Arduino Uno and C# Desktop Application to Reduce Water Wastage and Energy Loss

Author(s):  
Arif-Ul Islam ◽  
Shamim H Ripon
Author(s):  
M. S. Bennet Praba ◽  
Naresh Rengaswamy ◽  
Vishal ◽  
O. Deepak
Keyword(s):  

2019 ◽  
Vol 295 ◽  
pp. 01003
Author(s):  
Abdallah AL-NAEMI ◽  
Isam SHAHROUR

This paper presents the transformation of the water system of the Education City in Doha (Qatar) into a smart water system. This city covers an area of 14 km2 and includes 80 buildings. The water system provides drinking, irrigation and fire protection services. It suffers from the use of fragmented management systems and from a lack of real-time monitoring, which result in a deterioration of efficiency of the water system and users’ information The paper describes the water system and then the architecture of the smart water solution and its use for leak detection, water quality control and operation safety.


Smart Water ◽  
2018 ◽  
Vol 3 (1) ◽  
Author(s):  
Tsun-Hua Yang ◽  
Sheng-Chi Yang ◽  
Hong-Ming Kao ◽  
Ming-Chang Wu ◽  
Hao-Ming Hsu

2021 ◽  
Vol 13 (21) ◽  
pp. 11868
Author(s):  
Qinglan Liu ◽  
Longjian Yang ◽  
Miying Yang

“Clean water and sanitation” is listed as one of the 17 United Nations’ Sustainable Development Goals and implementing circular economy principles in the water sector has been widely regarded as an important approach in achieving this goal. In the era of Industry 4.0, research and practice in the digitalisation of the water sector to create a smart water system have attracted increasing attention. Despite the growing interest, limited research has been devoted to how digital technologies might enhance circularity. In practice, smart water systems often fail to promote circularity in such aspects as water reuse and resources recovery. This paper aims to identify the main barriers to implementing circularity in the smart water management system in Zhejiang, China. The research adopts a mixed research method that includes a literature review to identify the potential barriers from the existing studies, a case study to determine the most critical barriers in practice, and a fuzzy Delphi method to reach a consensus on the crucial barriers. The research identified 22 main barriers to implementing circular economy in smart water management. The barriers are divided into three categories: infrastructure and economic, technology, and institution and governance. The results show that the barriers related to recycling technologies, digital technology know-how, and the lack of CE awareness raise the most concern. Our findings also indicate that experts are interested in the decentralized wastewater treatment system. This research provides significant insights that practitioners, researchers, and policymakers can use in developing and implementing digital-based CE strategies to reduce water scarcity and pollution.


Author(s):  
Muhammad Yasir Bintang Nugraha ◽  
Rudi Susanto ◽  
Afu Ichsan Pradana

<p class="AbstractEnglish"><strong>Abstract:</strong> The purpose of this study was to create a learning media for color combination recognition that serves to help introduce colors and color combinations to the students of Al-Amin 3 Cemani Kindergarten. The stages of developing this color combination application consist of analysis, design, manufacture and testing. This learning media work system uses the Arduino Uno R3 (ATMEGA328) as a data processing center, TCS230 sensors as data input media. The data from Arduino Uno R3 processing results is displayed via RGB LED and a Visual Basic 2012-based desktop application. In the desktop application, the data input for color 1 and color 2 is processed through the combination button found in the application to combine color 1 and color 2. Overall test results, media learning color recognition and color combinations can work well in combining colors according to Munsell's Color Theory.</p><p class="AbstrakIndonesia"><strong>Abstrak: </strong>Tujuan penelitian ini adalah untuk membuat suatu media pembelajaran pengenalan kombinasi warna yang berfungsi untuk membantu mengenalkan tentang warna dan kombinasi warna pada siswa TK Al-Amin 3 Cemani. Tahapan pengembangan aplikasi kombinasi warna ini terdiri dari analisis, perancangan, pembuatan dan pengujian Sistem kerja media pembelajaran ini menggunakan Arduino Uno R3 (ATMEGA328) sebagai pusat pengolahan data, sensor TCS230 sebagai media input datanya. Data hasil pemrosesan Arduino Uno R3 ditampilkan melalui RGB LED dan aplikasi desktop berbasis Visual Basic 2012.  Pada aplikasi desktop data input warna 1 dan warna 2 diolah melalui tombol kombinasi yang terdapat pada aplikasi untuk mengkombinasikan warna 1 dan warna 2. Hasil pengujian secara keseluruhan, media pembelajaran pengenalan warna dan kombinasi warna sudah dapat bekerja dengan baik dalam mengkombinasikan warna sesuai dengan Teori Warna Munsell</p>


2017 ◽  
Vol 3 (2) ◽  
pp. 206-216
Author(s):  
Ilamsyah Ilamsyah ◽  
Hendri Iksan Setyawan ◽  
Alfianti Syahfitri

The progress of the computerized field is generally high in the field of microcontrollers are increasingly increasing especially in the community. This study aims to determine the feasibility of a technology by using media robot search objects that are useful for the community. Thisresearch uses development research approach and continued with research of observation action. This research uses RGB color filtering method where a sensor chooses according to the color you want to search and activate sound to move a robot. Data processing research conducted by descriptive quantitative. In the field of computers that have a very important role in the world of information technology and serves as a medium that can process creativity, and imagination into a real form, then designed an object-finding robot using arduino uno-based voice command that has the intelligence to help people forget to put a object. Using available sensors, ie light-colored sensors to detect objects, use ultrasonic sensors to avoid robotic collisions with objects. Equipped with a desktop application to display the distance of a specified object with a wheel spin scale. Connect using bluetooth. As a robot to help humans in terms of finding an object. For the construction of robots using multiple motors and sensors. But the processing power, memory, and communication capabilities are not much different from other robots that use PDA or laptop devices. This robot system uses ARM voice in control using a smartphone, so the robot is more effective to use, and useful to help the job.


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