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    Optimisation and comparison of different powertrain layouts for parallel hybrid electric vehicles equipped with continuous transmission

    , Article International Journal of Heavy Vehicle Systems ; Volume 24, Issue 1 , 2017 , Pages 45-64 ; 1744232X (ISSN) Delkhosh, M ; Foumani, M. S ; Lashgarian Azad, N ; Sharif University of Technology
    Inderscience Enterprises Ltd  2017
    Abstract
    The development of an efficient hybrid electric vehicle (HEV) platform needs an optimal design of its powertrain layout. This study is concerned with parallel HEVs (PHEVs) equipped with continuous transmission. First, different types of continuous transmissions, including continuously variable transmission (CVT), power-split CVT (PS-CVT) and multi-fixed ratio PS-CVT (MF-CVT), are discussed and their simulation models are presented. Also, various combinations of these continuous transmissions with PHEV configurations (namely, pre-transmission and posttransmission configurations) are introduced. Then, for a given PHEV model, several powertrain layouts resulting from combining the considered... 

    A modified control strategy for parallel hybrid electric vehicles equipped with continuously variable transmission

    , Article Scientia Iranica ; Volume 23, Issue 3 , 2016 , Pages 966-975 ; 10263098 (ISSN) Delkhosh, M ; Foumani, M. S ; Falahati, F ; Sharif University of Technology
    Sharif University of Technology  2016
    Abstract
    This paper aims to establish a control strategy for parallel hybrid electric vehicles equipped with full-toroidal Continuously Variable Transmission (CVT). First, the advantages of CVT are elucidated. Afterwards, a modified control strategy on the base of Baseline static Control Strategy (BCS) is proposed. Employing this strategy, in some moments, the engine operates in its fuel-optimal point to decrease the vehicle Fuel Consumption (FC). It is demonstrated that the modifications in BCS are applicable using a CVT as the power train. In order to investigate the implemented modification, an optimization on the proposed control strategy and BCS in SC03 driving cycle is accomplished and then,... 

    Feed-forward modelling and fuzzy logic based control strategy for powertrain efficiency improvement in a parallel hybrid electric vehicle

    , Article Mathematical and Computer Modelling of Dynamical Systems ; Volume 15, Issue 2 , 2009 , Pages 191-207 ; 13873954 (ISSN) Amiri, M ; Esfahanian, V ; Hairi Yazdi, M. R ; Esfahanian, M ; Fazeli, A. M ; Nabi, A ; Sharif University of Technology
    2009
    Abstract
    With the stricter limitations on both fuel consumption and air pollution, the advantages of a hybrid electric vehicle are becoming more evident than ever. In the present study, an energy management system for a hybrid electric vehicle is developed. Because the plant under consideration is nonlinear, multi-domain, time-varying, has multiple uncertainties and, in addition, the designed control strategy must be able to obey the driver's commands and achieve the par-internship for a new generation of vehicle regulations, the fuzzy logic approach is chosen. A feed-forward hybrid vehicle simulation model is used to demonstrate the validity and the convenience of the current approach and its...