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Browsing by Author "Islam, Md. Hasibul"

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    A Design of an IoT based Smart Home with Auto Sanitization System
    (2021-04) Sayeduzzaman, Md.; Borno, Md. Samiul Islam; Islam, Md. Hasibul; Howlader, Sujan
    Internet of Things (IoT) is the connection between devices by the use of the internet. IoT conducts logical operations by which data is transmitted and processed in the cloud. Structural improvement and modernization are required. This paper focuses on advancing IoT technology by creating an automated sani-tization device that could have been used to protect health by sanitizing the home's inner surface. Smart homes with auto sanitization can be a blueprint for reducing the transmission rate of COVID-19. It can also be an example of a cost-effective and time-saving approach to have a clean, comfortable, and happy liv-ing life. Smart home with an auto sanitization system had proposed a fog disin-fection machine, NodeMCU, Arduino Uno, and various sensors to create the pro-totype. This device can be used on the internet via a mobile application from anywhere in the world.
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    A Fermatean fuzzy approach to analyze the drivers of digital transformation in the agricultural production sector: A pathway to sustainability for emerging economies
    (Elsevier, 2025-07) Anam, Md. Zahidul; Islam, Md. Hasibul; Islam, Md. Tamzidul; Bari, A.B.M. Mainul; Raihan, Asif
    The adoption of digital technologies in agriculture offers opportunities for efficiency and sustainability, particularly in emerging economies with resource and infrastructure constraints. However, challenges persist, exacerbated by crises such as COVID-19 and geopolitical instabilities, highlighting agricultural supply chains’ fragility. Industry 5.0-driven digital transformation (DT) can mitigate these challenges by enhancing food security, supply chain resilience, and environmental sustainability. This study identifies and analyzes key drivers of DT in agricultural production from a holistic perspective. Through a literature review and expert validation, 19 key drivers were identified in the context of Bangladesh. An integrated multi-criteria decision-making (MCDM) approach, combining the Fermatean fuzzy sets (FFS) with the decision-making trial and evaluation laboratory (DEMATEL) technique, was applied to examine the drivers and explore interrelations among them. The results indicate that the most influential drivers are ’commitment from regulatory bodies’, ’maximizing the use of dwindling resources’, ’fostering rural development’, and ’the need for safe food’, with prominence values of 4.175, 4.001, 3.999, and 3.888, respectively. Additionally, ’commitment from regulatory bodies’ emerges as the most impactful causal factor, having a causal weight of 1.848. These findings provide insights for policymakers and industry managers in emerging economies, supporting strategic decision-making to drive sustainable agricultural transformation and achieve the relevant sustainable development goals.
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    Legal Obligations of Bangladesh Government and International Community to address the Environmental Degradation caused by Rohingya Influx
    (East West University, 2018-12-17) Islam, Md. Hasibul
    This study is an exploration of the environmental repercussions caused by the influx of Rohingya refugees in Bangladesh. Despite the welcoming endeavors of Bangladesh towards the refugees, there have been a number of economic, social and environmental consequences to be sustained in the region. The basic necessities of the refugees have resulted in a sudden increase in the use of the natural resources and the lack of any alternative means to procure these commodities has resulted in noticeable degradation of the environment. The cardinal goal of the paper is however the assessment of the respective roles of Bangladesh and the international community at large for the protection and conservation of the environment in the concerned areas of Cox’s Bazar and the Teknaf Wildlife Sanctuary (TWS). For that purpose, the concerned domestic laws of Bangladesh has been analyzed along with the relevant international agreements and principles that govern the responsibility of the international community for environmental protection.
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    Life Cycle Cost Assessment for Summit 35 Mw (Gas-based Power Plant)
    (Daffodil International University, 2020-04) Abu Zubair, Shah; Islam, Md. Hasibul
    This thesis is on “Life Cycle Cost Assessment” (Gas-based power plant). We have selected a power plant named Summit 35 MW Gas-Based power plant. To calculate or estimate unit generation cost. Financial and technical data has been collected from the EnergyPaC or primary technoeconomic data have been used for life cycle cost assessment. Tariff for consumer also estimated based on electricity bill or Results show that the per unit electricity generation for this power plant is 4.55BDT. Estimated consumer tariff is ***. We compared the economical issue with Katakhali 50MW (Oil-based power plant). For gas and oil based we determined fuel cost. Then we determined the service cost. For service cost estimation we determined Operation and maintenance cost, Yearly Depreciation (for depreciation calculation we calculated Intangible plant, Production Plant & General Plant) Regulatory Working Capital, ECA Loan Calculation, Commercial Loan Calculation, Return on Equity Calculation. These are the non-fuel cost. Then we summation the fuel cost and non-fuel cost. Then we get the complete generating cost/Indicative cost for gas-based power plant and for oil-based power plant. Finally we compared them. We found that Gas-based power plant is cheaper than Oil-based power plant which is important.
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    Life Cycle Cost Assessment for Summit 35 MW (Gas-based Power Plant)
    (Daffodil International University, 2021) Abu Zubair, Shah; Islam, Md. Hasibul
    We have selected a power plant named Summit 35 MW Gas-Based power plant. To calculate or estimate unit generation cost. Financial and technical data has been collected from the EnergyPaC or primary technoeconomic data have been used for life cycle cost assessment. Tariff for consumer also estimated based on electricity bill or Results show that the per unit electricity generation for this power plant is 4.55 BDT. Estimated consumer tariff is ***. We compared the economical issue with Katakhali 50MW (Oil-based power plant). For gas and oil based we determined fuel cost. Then we determined the service cost. For service cost estimation we determined Operation and maintenance cost, Yearly Depreciation (for depreciation calculation we calculated Intangible plant, Production Plant & General Plant) Regulatory Working Capital, ECA Loan Calculation, Commercial Loan Calculation, Return on Equity Calculation. These are the non-fuel cost. Then we summation the fuel cost and non-fuel cost. Then we get the complete generating cost/Indicative cost for gas-based power plant and for oil-based power plant. Finally we compared them. We found that Gas-based power plant is cheaper than Oil-based power plant which is important.
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    Pharmacy Management System
    (Daffodil International University, 22-09-13) Ali, Md. Hazrat; Islam, Md. Hasibul
    Pharmacy management system is one of the most essential tools that are mostly used in medical store nowadays. It is mostly used to manage pharmacy related activities such as medical inventory, record keeping, sales management as well as managing the drug stock and information of the expired medicines. Many pharmacies in Bangladesh are still operating manually. They don’t have proper knowledge and software to manage the pharmacy on a digital way. Pharmacy assistant needs to check the date and stock every two or three day in a week; it take a lot of time to find out whether certain medicine are out of stock. In this project we tried to develop a computerized and web based Pharmacy management system. Our main motive is to allow the usage of this system for most of the pharmacy of our country. This system is designed to overcome all challenges related to the management of medicine that were used to be handled locally and manually. This system is manually difficult because of its information changeability and data completeness problem. This system is developed to maintain the manual system digitally or more efficient way. We want to manage the pharmacy on a digital way. By keeping it in mind we have developed this web based system that would replace the existing manual system.

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