1 |
On the Hybrid Minimum Principle: The Hamiltonian and Adjoint Boundary Conditions Pakniyat A, Caines PE IEEE Transactions on Automatic Control, 66(3), 1246, 2021 |
2 |
Optimal Control of Lossy Energy Storage Systems With Nonlinear Efficiency Based on Dynamic Programming and Pontryagin's Minimum Principle Chowdhury NR, Ofir R, Zargari N, Baimel D, Belikov J, Levron Y IEEE Transactions on Energy Conversion, 36(1), 524, 2021 |
3 |
Performance evaluation and optimization of a novel plug-in power-reflux hybrid electric vehicle powertrain Sun GL, Sun DY, Liu JL, Ma K International Journal of Energy Research, 44(5), 3412, 2020 |
4 |
Efficient model predictive control for real-time energy optimization of battery-supercapacitors in electric vehicles Yu SM, Lin D, Sun Z, He DF International Journal of Energy Research, 44(9), 7495, 2020 |
5 |
Pontryagin's Minimum Principle based model predictive control of energy management for a plug-in hybrid electric bus Xie SB, Hu XS, Xin ZK, Brighton J Applied Energy, 236, 893, 2019 |
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Model predictive energy management for plug-in hybrid electric vehicles considering optimal battery depth of discharge Xie SB, Hu XS, Qi SW, Tang XL, Lang K, Xin ZK, Brighton J Energy, 173, 667, 2019 |
7 |
The geometric convexity on SE(3) and its application to the formation tracking in multi-vehicle systems Peng XH, Sun JY, Geng ZY International Journal of Control, 92(3), 528, 2019 |
8 |
The mean squared loss control problem for a partially observed Markov chain Lai Y, Elliott RJ International Journal of Control, 92(3), 585, 2019 |
9 |
Regenerative braking energy recovery strategy based on Pontryagin's minimum principle for fell cell/supercapacitor hybrid locomotive Li Q, Huang WQ, Chen WR, Yan Y, Shang WL, Li M International Journal of Hydrogen Energy, 44(11), 5454, 2019 |
10 |
NMPC using Pontryagin's Minimum Principle-Application to a two-phase semi-batch hydroformylation reactor under uncertainty Aydin E, Bonvin D, Sundmacher K Computers & Chemical Engineering, 108, 47, 2018 |