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Off-Road Vehicle Hybridization Methodology Applied to a Tractor Backhoe Loader

机译:越野车杂交方法应用于拖拉机反向铲装载机

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摘要

Hybrid electric systems have gained relevance in off-road applications because it allows the internal combustion engine to operate near its maximum efficiency region, ensuring reduction of gas emissions and fuel consumption. This paper presents a comprehensive approach for electrification projects applied to this sort of equipment, including the technical feasibility study for an existing tractor backhoe loader in a real work cycle. For the hybrid proposal, besides the gain of having the internal combustion engine near its maximum efficiency point with the addition of an energy storage device, the electrification approach includes the improvement of the hydraulic system operation by adding a variable speed drive, which reduces the losses due continuous oil flow recirculation presented on the conventional model. The methodology involves modeling of the conventional system and the design and modeling of the proposed hybrid system. Both models are submitted to experimental data gathered from real work cycle for analysis and comparison. A supercapacitor is considered as the energy storage device for this application due the low amount of energy required and high frequency of charge and discharge cycles. The fuel safe achieved with the electrification is up to 40% for the specific vehicle and duty cycle studied.
机译:混合电动系统在越野应用中获得了相关性,因为它允许内燃机在其最大效率区域附近运行,确保降低气体排放和燃料消耗。本文介绍了应用于这种设备的电气化项目的综合方法,包括实际工作周期中现有拖拉机反铲装载机的技术可行性研究。对于混合建议,除了在通过添加能量存储装置的最大效率点附近具有内燃机的增益之外,电气化方法包括通过添加变速驱动来改善液压系统操作,这减少了损耗在常规模型上提出了持续的载体流量再循环。该方法涉及传统系统的建模和所提出的混合系统的设计和建模。两种模型都提交给从实际工作周期收集的实验数据,以进行分析和比较。超级电容器被认为是该应用的能量存储装置,其由于所需的能量和电荷和放电循环的高频率。通过电气化实现的燃料安全可用于研究的特定车辆和占空比高达40%。

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