Tag: universitas komputer indonesia

  • Air Quality Monitoring System for Cyclist

    Air Quality Monitoring System for Cyclist

    Author: Aria M.,  Wangsanegara T., Kurniawan F., Maulana T.

    DOI: 10.1063/5.0129192

    Abstract

    In recent years, emissions of toxic gasses caused by burning fossil fuels, industrial production, and vegetation loss have made air pollution even worse. The concentration of harmful gasses and particulates increased in the atmosphere. Air quality influences human health, especially the particulate matter that affects the respiratory system of people. To find out the level of air pollution for bicycle users, we need an instrument to detect pollution levels in the air that functions as a monitor of pollution levels and early detection in air pollution, so it becomes a reference for bicycle users in knowing their area of cycling whether or not it has good air quality. The system development method in this study used the prototype method because this method can be easily evaluated and implemented in stages. The device’s hardware consists of three sensors: gas sensors MQ-7, MQ-135, and a DHT-11 Humidity sensor. The device has three sensors attached with an Arduino. The air quality measurement device generates real-time air pollutants monitor from the sensor and shows the information using the Liquid Crystal Display (LCD). In conclusion, it is affordable, user-friendly, low-cost, and minimum-power requirement hardware and comprehensible data collection. It is helpful for the bicycle user to be concerned about the health of air condition near the cyclist area. © 2023 Author(s).

    Keywords: air quality; cyclist; Monitoring system

    This article can be accessed at https://www.scopus.com/pages/publications/85177557112

  • Ethical and Secure AI Applications in Agricultural Research: Challenges and Opportunities

    Ethical and Secure AI Applications in Agricultural Research: Challenges and Opportunities

    Author: Hewa Majeed Zangana, Senny Luckyardi, Firas Mahmood Mustafa, Shuai Li

    DOI: 10.4018/979-8-3373-4252-8.ch002

    Abstract

    The integration of Artificial Intelligence (AI) into agricultural research has introduced transformative innovations that promise increased productivity, sustainability, and precision in farming practices. However, the rapid advancement and deployment of AI systems in this domain also bring significant ethical and security concerns. Issues such as data privacy, algorithmic bias, equitable access, environmental impacts, and transparency present complex challenges that must be carefully navigated. This chapter explores the critical ethical considerations and security risks associated with AI applications in agricultural research, while also highlighting the immense opportunities for advancing scientific understanding, improving food security, and promoting sustainable practices. By examining current trends, case studies, and regulatory frameworks, the chapter provides a comprehensive overview of how agricultural AI can be ethically and securely developed and deployed, ensuring that innovation serves both humanity and the environment responsibly. © 2025, IGI Global Scientific Publishing. All rights reserved.

    Keywords: Agriculture; Artificial intelligence; Environmental impact

    This article can be accessed at https://www.scopus.com/pages/publications/105008416715

  • Governing AI-Driven Agriculture: Policy, Ethics, and the Role of Language in Knowledge Transfer

    Governing AI-Driven Agriculture: Policy, Ethics, and the Role of Language in Knowledge Transfer

    Author: Hewa Majeed Zangana,  Pratiwi Amelia, Senny Luckyardi, Firas Mahmood Mustafa, Shuai Li

    DOI: 10.4018/979-8-3373-4862-9.ch011

    Abstract

    Artificial intelligence (AI) is transforming agriculture by enabling precision farming, predictive analytics, and automated decision-making, thereby enhancing productivity and sustainability. However, this rapid technological advancement raises complex policy and ethical challenges, particularly regarding data governance, equitable access, environmental impact, and transparency. This chapter explores the regulatory frameworks shaping AI-driven agricultural practices and emphasizes the critical role of language in facilitating effective knowledge transfer among diverse stakeholders, including farmers, policymakers, and researchers. By analyzing interdisciplinary approaches, the chapter highlights how linguistic clarity and ethical considerations underpin responsible AI governance in agriculture, ensuring innovations serve public interest while mitigating risks. Ultimately, it advocates for comprehensive policies that balance innovation with accountability and inclusivity in the evolving landscape of agri-tech. © 2025, IGI Global Scientific Publishing.

    Keywords: Agribusiness; Agriculture; Artificial intelligence

    This article can be accessed at https://www.scopus.com/pages/publications/105011884709

  • Contributing Factors to Greenhouse Gas Emissions in Agriculture for Supporting Sustainable Development Goals (SDGs): Insights from a Systematic Literature Review Completed by Computational Bibliometric Analysis

    Contributing Factors to Greenhouse Gas Emissions in Agriculture for Supporting Sustainable Development Goals (SDGs): Insights from a Systematic Literature Review Completed by Computational Bibliometric Analysis

    Author: Herman S. Soegoto ; Muhammad Aria Rajasa Pohan ; Senny Luckyardi; Sri Supatmi; Eri Amasawa; Santi Phithakkitnukoon ; Zainal Arifin Hasibuan

    DOI: 10.17509/ajse.v5i2.83667

    Abstract

    Agricultural production contributes significantly to greenhouse gas (GHG) emissions and global climate change. This study conducts a systematic literature review to examine the evolution and drivers of agricultural GHG emissions. We analyzed Web of Science, Scopus, and Google Scholar data using bibliometric and thematic methods. Our analysis identified emission sources such as energy use, soil management, fertilizer application, and livestock management. It also discussed mitigation measures such as sustainable practices, precision agriculture, and renewable energy. The findings showed that crop cultivation, livestock activities, and land-use change remained key sources of emissions. Technological innovations and policy-driven strategies are reshaping the research landscape. This study provides a framework for understanding agricultural GHG emissions and supporting interventions to reduce the sector’s carbon footprint as well as Sustainable Development Goals (SDGs). © 2025 Kantor Jurnal dan Publikasi UPI.

    Keywords: Agricultural production; Emission sources; Greenhouse gas emissions; Mitigation strategies; Sustainable development goals (SDGs); Sustainable practices; Systematic literature review

    This article can be accessed at https://www.scopus.com/pages/publications/105006917187

  • How to Improve Hydroponic Leafy Vegetable Plant Productivity by Balancing Nutrient Solution, Total Dissolved Solids (TDS), and pH Completed with Literature Review on Standard Vegetable pH & TDS Requirement to Support Sustainable Development Goals (SDGs)

    How to Improve Hydroponic Leafy Vegetable Plant Productivity by Balancing Nutrient Solution, Total Dissolved Solids (TDS), and pH Completed with Literature Review on Standard Vegetable pH & TDS Requirement to Support Sustainable Development Goals (SDGs)

    Penulis: Senny Luckardi; Agis Abhi Rafdhi; Annisa Wulan Sari; Hewa Majeed Zangana; Eddy Soeryato Soegoto

    DOI: 10.17509/ajse.v6i1.89992

    Abstract

    This study explores how to improve the productivity of hydroponic leafy vegetables by balancing Total Dissolved Solids (TDS) and nutrient solution pH. Using bok choy in a floating raft system, the research applies a controlled experimental design to observe how these parameters interact in supporting vegetative growth and yield. Daily monitoring and careful adjustment of nutrient levels and pH are emphasized to ensure optimal nutrient uptake. Balanced TDS and pH conditions enhanced leaf formation and biomass accumulation, while imbalances caused nutrient stress and growth inhibition. This study offers practical guidance for growers to synchronize TDS and pH in real-time for improved nutrient management. The findings contribute to precision hydroponics aligned with sustainable agriculture, specifically supporting sustainable development goals (SDGs) for SDG 2 (Zero Hunger) through efficient food production and SDG 12 (Responsible Consumption and Production) by encouraging optimal use of agricultural inputs. © 2026 Universitas Pendidikan Indonesia.

    Keywords: Hydroponic; Leafy vegetable; pH; Sustainable development goals (SDGs); Total dissolved solids (TDS)

    This article can be accessed at https://www.scopus.com/pages/publications/105018607274

  • Identification of Sustainable Regional Development in Majalengka Regency

    Identification of Sustainable Regional Development in Majalengka Regency

    Author: Lia Warlina

    DOI: 10.1088/1757-899X/407/1/012083

    Abstract

    The objectives of this study are to assess appropriate method for sustainability level in developing Majalengka region, to apply chosen method, and to analyze the result. The methods are literature review and direct calculation to estimate sustainability level in regional development. Sustainable Development Indicators (SDI), Environmental Sustainability Index (ESI), Ecological Footprint (EF) and Wellbeing Index (WI) were assessed as an appropriate method. Wellbeing Index is used to analyze the level of sustainable regional development in Majalengka. The result of the calculation shows that wellbeing index (WI) is 75 and wellbeing stress index (WSI) is 2.72. The value of WSI is between OK and medium band, this shows that the pressure to increase human wellbeing has not override ecosystem pressure. The level of sustainability in the barometer of sustainability is in the medium position, this position is “almost sustainable” for both ecosystem and human system (households). This result is used to recommend Majalengka region stakeholders in formulating development policy. © Published under licence by IOP Publishing Ltd.

    This article can be accessed at https://www.scopus.com/pages/publications/85054878287

  • Forest Fire Detection System Using Wireless Sensor Network (WSN)

    Forest Fire Detection System Using Wireless Sensor Network (WSN)

    Author: Nurhayati S., Indriani S.L., Ansori R.M.R.

    DOI: 10.1063/5.0129221

    Abstract

    This research aims to develop a system that can detect forest fires so that it can prevent the fires from spreading and thus minimize its damage. Forests are natural resources that have great potential to be exploited and conserved, but threats and disturbances often occur that hinder conservation efforts. One of these threats and disturbances is forest fires. One of the impacts of these fires is the loss of biodiversity. Along with the rapid development of technology, by utilizing a Wireless Sensor Network (WSN), the location of forest fires can be detected. The parameters used for fire detection are temperature, humidity, and air quality. The system is built using two sensor nodes and one coordinate node using the XBee S2C radio frequency module to form a wirelessly connected network. All information in the form of temperature formation conditions, humidity, and coordination points to be sent to the server. This data can be viewed on a website via a server computer. The test results show that the monitoring system has been able to detect forest fires based on predetermined parameters. © 2023 Author(s).

    Keywords: forest fire detection system; Wireless sensor network; XBee

    This article can be accessed at https://www.scopus.com/pages/publications/85177571063

  • Progress in the Utilization of Water Hyacinth as Effective Biomass Material

    Progress in the Utilization of Water Hyacinth as Effective Biomass Material

    Author: Asep Bayu Dani Nandiyanto, Siti Nur Hofifah, Dwi Fitria Al Husaeni, Dwi Novia Al Husaeni, Meli Fiandini, Senny Luckyardi, Eddy Soeryanto Soegoto, Arif Darmawan, Muhammad Aziz

    DOI: 10.1007/s10668-023-03655-6

    Abstract

    Water hyacinth (Eichhornia crassipes) is considered a prospective free-floating aquatic plant potentially used to address current issues on food, energy, and the environment. It can grow quickly and easily in various tropical and subtropical environments as long as it has access to adequate light and water to support photosynthetic growth. Ecosystems are threatened by their invasive growth and remarkable capacity for adaptation. However, managing this plant can result in valuable products. This paper demonstrates particle technologies that might be used to utilize water hyacinths, including brake pads, fertilizer, bioenergy, animal feed, phytoremediation agents, bioplastics, and adsorbents. This study is accompanied by a discussion based on the conducted experiments and currently available literature, providing readers with a clearer understanding. Water hyacinth’s capacity to absorb macro- and micro-nutrients, nitrogen, and phosphorus makes it a good plant for phytoremediation. The prospect of producing cellulose makes it prospective as a biomass energy source and livestock feeding. Further, it can be transformed into high-cellulose content particles for applications in bioplastics, brake pads, and adsorbents. The current reports regarding education of water hyacinth to student also were added. Finally, issues and suggestions for future development related to the use of water hyacinths are discussed. This study is expected to provide comprehensive knowledge on how to turn invasive water hyacinth plants into valuable products. © The Author(s) 2023.

    Keywords: Aquatic plant; Ecosystem; Engineering; Environment; Particle technology; Water hyacinthThis article can be accessed at https://www.scopus.com/pages/publications/85171264623

  • Free Uric Acid Screening 2026

    Free Uric Acid Screening 2026

    Hello, Unikomers! 👋

    Health is our most valuable asset in supporting both academic and professional activities. Let’s take a moment for a Uric Acid Screening!

    In collaboration with the UNIKOM Medical Center, this event encourages us to check our uric acid levels for better overall health. The benefits include:

    ✅ Early detection of health issues

    ✅ Identifying risks of heart disease & stroke

    ✅ Gaining insights on a healthy diet & lifestyle

    ✅ Planning steps to control uric acid levels

    Save the date and don’t miss out:

    🗓 Day/Date: Tuesday, January 27, 2026

    🕘 Time: 09:00 – 16:00 WIB

    📍 Location: UNIKOM Medical Center, Room 4301 (Jl. Dipati Ukur No. 112-116)

    The good news is, this screening is FREE! Exclusively for UNIKOM Students, Lecturers, and Education Staff.

    Let’s take care of our health together! 🩺✨

  • The Role of Environmental Policy in Promoting Green Transportation Technologies

    The Role of Environmental Policy in Promoting Green Transportation Technologies

    Author: Siphimvadee Suthakavatin, Khodor Shatila, Karine Aydinyan, Raeni Dwi Santy

    ​​DOI: 10.1051/bioconf/202414506013

    Abstract

    This study explores the role of environmental policy in promoting the adoption of green transportation technologies, focusing on the effects of financial incentives, regulatory frameworks, and public investment in infrastructure across key Asian urban centres. The research highlights how technological innovation acts as a crucial mediator between policy measures and the adoption of sustainable transportation options such as electric vehicles (EVs) and hydrogen-powered vehicles. Using Structural Equation Modelling (SEM), the study examines the relationships between these factors, demonstrating that higher levels of financial incentives, supportive regulations, and strategic public investment lead to significant advancements in technological innovation, which in turn drives the adoption of green transportation technologies. The findings contribute to the broader understanding of sustainable urban mobility solutions and offer important insights for policymakers and industry stakeholders in regions experiencing rapid urbanization. The study also discusses the dual role of these policy drivers, both in directly influencing adoption and in fostering technological advancement. © The Authors, published by EDP Sciences.

    This article can be accessed at https://www.scopus.com/pages/publications/85216661038