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电动汽车驱动
★ 4.0
基于直接进气设计的质子交换膜燃料电池集成推进系统的飞行验证
The flight verification of an integrated propulsion system powered by PEMFCs with direct airflow intake design
| 作者 | Kehan Zhoua1 · Gonghe Zhanga1 · Haifei Bai · Yiming Wang · Mingjing Qi · Jianmei Huang · Zhiwei Liu · Xiaojun Yan |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 377 卷 |
| 技术分类 | 电动汽车驱动 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | A 1.5 kW PEMFC integrated propulsion system with direct airflow intake design is developed. |
语言:
中文摘要
摘要 推进与动力系统对无人机(UAV)的性能至关重要。随着以质子交换膜燃料电池(PEMFC)为动力的电推进系统快速发展,无人机推进与动力系统的技术创新不断推进。本研究开发了一套1.5 kW、采用直接进气设计的PEMFC集成推进系统(北航氢-1),并在翼展为3.6 m的无人机上进行了飞行试验验证。该推进系统可直接利用螺旋桨后方的来流空气为PEMFC阴极提供反应气体和冷却作用,同时将PEMFC产生的电能用于驱动螺旋桨。推进系统中还集成了DC-DC模块和锂离子电池组,以稳定输出电压,并在起飞、过渡和降落阶段提升瞬时功率输出能力。本文提出了一种“动态分配”能量管理策略,以增强系统的动态响应能力。飞行过程中对PEMFC集成推进系统的各项参数进行了详细测量与分析。飞行试验持续时间为18分钟,平均巡航高度为海拔101米,平均巡航速度为23米/秒。在巡航阶段,PEMFC的平均输出功率为1688瓦,单电池平均电压为0.65伏,对锂电池的平均充电功率为41瓦。此次成功的飞行试验验证了PEMFC集成推进系统设计的可行性,为后续PEMFC集成推进系统的优化设计与飞行测试提供了宝贵的数据支持,也为PEMFC驱动的电推进系统的发展与应用开辟了新的方向。
English Abstract
Abstract The propulsion and power systems are critical to the performance of unmanned aerial vehicles (UAVs). The rapid development of electrified propulsion systems powered by proton exchange membrane fuel cells (PEMFCs) has driven technological innovation of propulsion and power systems for UAVs. In this work, a 1.5 kW PEMFC integrated propulsion system with direct airflow intake design (Beihang Hydrogen-1) is developed and verified by flight test on a UAV with a wingspan of 3.6 m. The propulsion system can directly use the airflow behind the propeller to feed the PEMFC cathode for cooling and reaction and the power generated by the PEMFC is used to drive the propeller. A DC-DC module and a lithium battery pack are also added to the propulsion system to stabilize the output voltage and increase the instantaneous power for takeoff, transition, and landing stages. The “dynamic distribution” energy management strategy for the propulsion system is proposed to increase the system dynamic response ability. The detailed data of the PEMFC integrated propulsion system during the flight are measured and analyzed. The flight test continued for 18 min, with an average cruising altitude and an average cruising speed of 101 m above sea level and 23 m/s, respectively. During the cruise stage, the average PEMFC power is 1688 W, with an average single-cell voltage of 0.65 V. The average charging power of PEMFC for the lithium battery is 41 W. The successful flight test verifies the feasibility of the design of the PEMFC integrated propulsion system, provides valuable data for the following optimal design and flight test of the PEMFC integrated propulsion systems, and opens up a new direction for the development and application of PEMFC-powered electrified propulsion systems.
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SunView 深度解读
该PEMFC无人机推进系统的DC-DC模块与锂电池混合架构、动态分配能源管理策略,对阳光电源EV驱动系统及储能产品具有重要借鉴价值。其1.5kW燃料电池与锂电池协同工作模式,类似我司OBC充电机和储能PCS的功率调配逻辑。直接气流进气冷却设计可启发ST系列PCS的散热优化。动态响应策略可应用于PowerTitan储能系统的瞬时功率调度,提升GFM控制下的电网支撑能力。该混合动力架构验证了多能源协同技术在移动平台的可行性,为阳光电源拓展氢能-储能融合应用提供技术参考。