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Reducing fuel consumption of Front End Loader using regenerative hydro-static drive configuration-an experimental study

机译:利用再生静液压驱动装置降低前端装载机的油耗-实验研究

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Present paper highlights the effect of under-loading the engine and the hydraulic system of a Front End Loader (FEL). In this respect, a novel idea to modify load cycle of engine is applied in the Conventional Hydrostatic-Split Power Transmission (CH-SPT) drive by incorporating additional load on the drive through the DC generator. The load on modified system, called Regenerative Hydrostatic-split power transmission (RH-SAT) drive is the loading pump unit and DC generator unit, which is used for generating equivalent duty cycle of the FEL and electrical energy generation, respectively. The excess load of the DC generator is varied through the controller depending on engine's optimal efficient torque and the load torque. This assists the engine to operate in its efficient zone during under-loading conditions, Also, a MATLAB (R)/Simulink model is made and validated experimentally. The validated model is analysed to compare the performances and fuel consumption of conventional HST drive, CH-SPT drive and RH-SPT drive. It is concluded that with increase in fuel consumption of the RH-SPT system by 10% and 56% of the CH-SPT and conventional drive system, the electric power regeneration through the DC generator increases by 21% and 200% of the maximum power generated in the respective system. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本论文重点介绍了发动机和前端装载机(FEL)的液压系统负载不足的影响。在这方面,通过将附加负载合并到通过直流发电机的驱动器上,在常规的静液压分流动力传动(CH-SPT)驱动器中应用了一种修改发动机负载循环的新颖思想。改进的系统上的负载称为再生静液压分力传动(RH-SAT)驱动器,是负载泵单元和直流发电机单元,分别用于产生FEL的等效占空比和电能。直流发电机的超负荷通过控制器根据发动机的最佳有效转矩和负荷转矩而变化。这有助于发动机在欠载条件下在其有效区域内运行。此外,还制作并通过实验验证了MATLAB(R)/ Simulink模型。分析经过验证的模型,以比较常规HST驱动器,CH-SPT驱动器和RH-SPT驱动器的性能和燃油消耗。结论是,随着RH-SPT系统的燃油消耗量增加,分别是CH-SPT和常规驱动系统的10%和56%,通过直流发电机产生的电力再生增加了最大功率的21%和200%在相应系统中生成。 (C)2018 Elsevier Ltd.保留所有权利。

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