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Power management strategy for a parallel hybrid-power gas engine heat pump system

机译:并联混合动力燃气发动机热泵系统的电源管理策略

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Hybrid-power gas engine heat pump (HPGHP) system is a novel air conditioning system, which has two power sources, the gas engine and dual-use motor respectively. Based on the experimental tests on HPGHP system, the key component models of the system have been established in this paper. In order to keep the gas engine always running with high thermal efficiency and reducing the gas consumption, a preliminary rule-based control strategy is first described in the paper to distribute the power sources. Then, for obtaining better fuel economy, the equivalent gas consumption minimization mathematical models and power balance principle are established. At last, the equivalent gas consumption minimization strategy is put forward and the torque curves of the engine and motor are optimized under different operating modes, to minimize the equivalent gas consumption. The results show that the gas engine can always run in economical zone with high thermal efficiency above 0.25 in different working modes. The gas consumed rate reaches the minimum value of 284.62 g/(kW h), 286.93 g/(kW h), and 296.6 g/(kW h) in mode C, mode D and mode L, when the compressor speed is 950 rpm, 1450 rpm, and 2150 rpm, respectively. The average PER of HPGHP system is 0.894, 0.969, and 1.049 in mode C, mode D and mode L, respectively. (C) 2016 Elsevier Ltd. All rights reserved.
机译:混合动力燃气发动机热泵(HPGHP)系统是一种新颖的空调系统,它具有两个动力源,分别是燃气发动机和两用电动机。通过对HPGHP系统的实验测试,建立了该系统的关键组件模型。为了使燃气发动机始终保持高热效率运行并减少燃气消耗,本文首先介绍了一种基于规则的初步控制策略来分配动力源。然后,为了获得更好的燃油经济性,建立了等效耗气最小化数学模型和功率平衡原理。最后提出了当量耗气最小化策略,优化了不同工况下的发动机和电动机的转矩曲线,以使当量耗气最小。结果表明,在不同的工作模式下,燃气发动机始终可以在经济高效的区域内运行,热效率高于0.25。当压缩机速度为950 rpm时,在模式C,模式D和模式L下,气体消耗率达到最小值284.62 g /(kW h),286.93 g /(kW h)和296.6 g /(kW h)。 ,1450 rpm和2150 rpm。在模式C,模式D和模式L下,HPGHP系统的平均PER分别为0.894、0.969和1.049。 (C)2016 Elsevier Ltd.保留所有权利。

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