Fixed-wing Unmanned Aerial Vehicles (UAVs) have diverse applications across the industry. However, deployment of these UAVs, at remote locations & marine environment, is especially challenging due to requirement o...
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ISBN:
(纸本)9798350308266;9798350308259
Fixed-wing Unmanned Aerial Vehicles (UAVs) have diverse applications across the industry. However, deployment of these UAVs, at remote locations & marine environment, is especially challenging due to requirement of paved runways. Pneumatic-based launchers provide an efficient and scalable assistive launch or deployment method in such conditions. Pneumatic launcher is a multi-domain dynamic physical system, involving: rigid dynamics, solid mechanics, pneumatics, and thermodynamic processes. Therefore, effective design and development of pneumatic launchers necessitate thorough modelling of these multi-domain processes. In this paper, MATLAB/ Simulink based model of a high-pressure pneumatic launcher for small to medium weight UAVs, is presented. The model is developed with prime considerations for scalability of design, practicality of implementation and adaptability to suit a wide range of UAVs with varying sizes, weight & take-off or launch speeds. Multiple simulations are carried out assess the influence of various design parameters. Moreover, the model is validated through multiple experimental tests on a dedicated test bench. Based on experiments, a correction factor is applied to the model to enhance its accuracy and compatibility with the experimental results. The model provides a reference for future engineering design, development, optimization, and subsequent improvement of Pneumatic launchers for UAVs.
The Jade University of applied Sciences organises digital simulation games to teach students in the department of architecture the networked and digital planning methodology, building information modelling (BIM). BIM ...
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Over the years, researchers explored several approaches to improve system peak demand forecasting subjected to short-time series data. In this paper, we introduced a novel framework to address this problem. The framew...
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Demand-Side Management is a set of various optimization techniques and/or strategies based on techno-economic factors which focuses on planning, implementation and monitoring in power systems. In this context, energy ...
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作者:
Andriyanov, A.I.Department of Electronics
Radioelectronic and Electrotechnical Systems Bryansk State Technical University 7 Bulvar 50-let Oktyabrya Bryansk Russia
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