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◆ REST Journal on Advances in Mechanical Engineering2025-12-01· Process (computing)

Data-Driven Assessment of Selection Criteria for Commercial Electric Scooters

Vimala Saravanan

原始摘要(英文原文)· Original abstract
With the growing concern for environmental sustainability and the rising demand for efficient urban mobility, electric scooters have emerged as a popular alternative to traditional gasoline-powered vehicles. This abstract presents a comprehensive overview of the process involved in selecting commercially available electric scooters. The selection of an electric scooter involves considering various factors such as performance, range, charging infrastructure, pricing, and reliability. These abstract highlights the key aspects that should be evaluated during the selection process to ensure a well-informed decision. Firstly, the performance characteristics of electric scooters, including motor power, top speed, and acceleration, are crucial considerations. Another important factor to consider is the availability and accessibility of charging infrastructure. Cost considerations, including the initial purchase price and ongoing maintenance expenses, are essential for both individual buyers and commercial fleet operators. The abstract emphasizes the need to assess the total cost of ownership, factoring in maintenance, insurance, and battery replacement costs, to determine the long-term affordability and economic viability of electric scooters. Lastly, the reliability and durability of electric scooters are critical aspects to ensure a satisfactory ownership experience. By considering these factors, potential buyers and fleet managers can make informed decisions when selecting from the range of commercially available electric scooters. In recent years, the landscape of urban transportation has undergone a significant transformation with the emergence of electric scooters. Electric scooters, also known as e-scooters, are two-wheeled vehicles powered by electric motors that offer a clean and efficient alternative to traditional gasoline-powered scooters or cars. These compact and lightweight vehicles have gained immense popularity among commuters, delivery services, and individuals seeking convenient and environmentally friendly transportation options. The appeal of electric scooters lies in their numerous advantages over conventional vehicles. Firstly, electric scooters produce zero emissions during operation, contributing to reduced air pollution and improved air quality in urban areas. This eco-friendly characteristic has positioned them as an attractive solution in the fight against climate change and the pursuit of sustainable transportation. Secondly, electric scooters are cost-effective to operate. Moreover, electric scooters are known for their ease of use and maneuverability. They are designed to be user-friendly, making them accessible to a wide range of riders, including those who are new to motorized vehicles. The compact size and agility of electric scooters allow riders to navigate through congested city streets, access narrow pathways, and park conveniently, saving time and reducing traffic congestion. The availability of electric scooters for shared mobility services has further increased their prominence. Rental services provided by companies allow users to conveniently rent and ride electric scooters for short distances, providing a flexible and on-demand transportation option for many urban dwellers Research plays a crucial role in advancing the technology of electric scooters. It helps in improving battery efficiency, motor performance, charging infrastructure, and safety features. By conducting research, scientists and engineers can explore innovative solutions and address technical challenges to enhance the overall functionality and performance of electric scooters. Research enables the optimization of electric scooter performance parameters such as range, speed, acceleration, and handling. By studying the interactions between various components and systems, researchers can identify ways to improve efficiency, increase range, and enhance overall user experience. This optimization ensures that electric scooters meet the evolving needs and expectations of riders. Research is crucial for electric scooters to drive technological advancements, optimize performance, promote sustainability, enhance safety, support infrastructure development, inform policies and regulations, and empower consumers. By conducting research in this field, we can unlock the full potential of electric scooters as a sustainable and efficient mode of transportation. The Weighted Aggregated Sum Product Assessment (WASPAS) method is a multi-criteria decision-making technique used to evaluate and rank alternatives based on multiple criteria. It is commonly applied in fields such as management, engineering, and economics to aid in decision-making processes. The WASPAS method provides a systematic approach for decision-makers to assess alternatives based on multiple criteria and arrive at a well-informed decision. It allows for the incorporation of subjective preferences and enables a comprehensive evaluation of the alternatives, considering both the relative importance of criteria and the performance of each alternative against those criteria. The method is flexible and can be adjusted to suit different decision contexts and problem domains. However, it should be noted that the results of the WASPAS method heavily depend on the accuracy of criteria weighting and the reliability of the rating assessments, both of which require careful consideration and input from decision-makers or experts. Overall, the WASPAS method is a valuable tool for multi-criteria decisionmaking, aiding decision-makers in selecting the most suitable alternative based on their preferences and the specific criteria involved in the decision TVS NTORQ 125, Honda Activa 6G, Suzuki Access 125, Yamaha Aerox 155, Hero Pleasure Plus, Aprilia SR 160,Vespa VXL 125,Keeway Vieste 300 Fuel Capacity L), Mileage (kmpl), Top Speed (kmph), Kerb Weight (kg), price (in 1000 rupees) The result of the selection of commercially available electric scooters using the WASPAS method would depend on the specific criteria, weights assigned to those criteria, and the ratings given to each alternative. As the WASPAS method allows for subjective assessments, the result can vary based on the decision-maker's preferences and the specific context of the decision. The specific result would provide a ranked list of commercially available electric scooters based on the selected criteria, their assigned weights, and the ratings given to each alternative. This result would assist decision-makers in making an informed decision about which electric scooter to choose based on their specific preferences and requirements. In conclusion, the selection of commercially available electric scooters is a crucial decision for individuals, businesses, and urban transportation planners aiming to embrace sustainable mobility. The process of selecting the most suitable electric scooter involves careful consideration of various factors, including performance, range, charging infrastructure, cost, reliability, and durability.
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