用于测量混合动力全电动动力系统效率的比例测试台

Q4 Engineering
Livio D'Alvia , Gabriele Gagliardi , Ludovica Apa , Carmine Cava , Emanuele Rizzuto , Domenico Borello , Zaccaria Del Prete
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引用次数: 0

摘要

在不断发展的交通格局中,可持续性和效率是优先考虑的问题。混合能源系统,集成电池、燃料电池或太阳能,提供了有前途的解决方案,但在准确测量效率方面提出了挑战。所提出的测量尺度台架对于评估混合动力牵引系统至关重要。它模拟了现实世界的场景,通过氢燃料电池和电池来平衡能源管理。该系统包括三个模块:一个用于燃料电池,一个用于电池,一个用于推进、氢消耗测量和电机性能评估。实验测试验证了它在复制城市和郊区循环方面的有效性,使其成为混合动力汽车的理想比例模型,遵循UNI EN 1986 - 1:20 98。它揭示了发动机能量需求、速度变化和能量存储响应之间的一致行为,为混合动力汽车的开发提供了有价值的见解。此外,长凳的模块化不仅支持不同的系统配置,还可以作为教育工具,激励和促进可持续交通的创新。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scaled test bench for the measurement of a hybrid full-electric powertrain efficiency
In the evolving landscape of transportation, sustainability and efficiency are priorities. Hybrid energy systems, integrating batteries, fuel cells, or solar power, offer promising solutions but pose challenges in accurately measuring efficiency. The proposed Measurement Scale Bench is crucial for evaluating traction systems powered by hybrid sources. It simulates real-world scenarios, balancing energy management through hydrogen fuel cells and batteries. The system comprises three blocks: one for fuel cells, one for batteries, and one for propulsion, hydrogen consumption measurement, and motor performance evaluation. Experimental tests validate its effectiveness in replicating urban and exurban cycles, making it an ideal scale model for hybrid vehicles, following the UNI EN 1986–1:1998. It reveals consistent behaviour between engine energy demand, speed variations, and energy storage responses, providing valuable insights for hybrid vehicle development. Moreover, the bench's modularity not only supports diverse system configurations but also serves as an educational tool, inspiring and promoting innovation in sustainable transportation.
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来源期刊
Measurement Sensors
Measurement Sensors Engineering-Industrial and Manufacturing Engineering
CiteScore
3.10
自引率
0.00%
发文量
184
审稿时长
56 days
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