2019
DOI: 10.3103/s1052618819010102
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Comparative Study of Hybrid Vehicle Powertrains with Respect to Energy Efficiency

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Cited by 7 publications
(4 citation statements)
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“…Delaying the closing time of the intake valves causes the temperature of the mixture to be reduced as well as the load mixture fraction. Consequently, the indicated effective average pressure and net cyclic work is reduced [58]. To solve this issue, a variable valve timing mechanism could be used to increase the efficiency of the Miller cycle [59,60].…”
Section: Miller Cyclementioning
confidence: 99%
“…Delaying the closing time of the intake valves causes the temperature of the mixture to be reduced as well as the load mixture fraction. Consequently, the indicated effective average pressure and net cyclic work is reduced [58]. To solve this issue, a variable valve timing mechanism could be used to increase the efficiency of the Miller cycle [59,60].…”
Section: Miller Cyclementioning
confidence: 99%
“…Taking into account the above considerations and the previous studies performed by the authors (see, for example [18]) and other researchers [13,14], it was decided that for this study, the parallel topology would be selected for the analysis of powertrain hybridization.…”
Section: Selection Of the Hybrid Powertrain Topologymentioning
confidence: 99%
“…Lithium-Ion Batteries with Forced Air Cooling: Simulation and Laboratory Tests developed vehicle with sequential flowchart of hybrid power unit [9], [10] determined the required cumulative capacity of batteries to be about 20 kW*h. While developing high capacity lithium-ion batteries comprised of numerous cells, one of the most important issues is provision of uniformity and sufficiency of their cooling. In the case of excessive heating of single cell, it can fail due to temperature overrun which is extremely dangerous for the battery.…”
Section: Simulation Of Thementioning
confidence: 99%