[HTML][HTML] Port-Hamiltonian framework in power systems domain: A survey

M Tõnso, V Kaparin, J Belikov - Energy Reports, 2023 - Elsevier
Many nonlinear physical phenomena, including various power systems, can be modeled,
analyzed, and controlled using the framework of port-Hamiltonian systems. Moreover, this …

Robust hamiltonian energy control based on lyapunov function for four-phase parallel fuel cell boost converter for DC microgrid applications

P Thounthong, P Mungporn… - IEEE Transactions …, 2021 - ieeexplore.ieee.org
Rapid developments in hydrogen fuel cell (FC) energy and DC microgrid systems have
extended the applications of multiphase parallel interleaved step-up converters for …

Path-tracking cascade control of hydraulic-tracked vehicles based on port-controlled Hamiltonian model

J Gong, S Guo, H Shen, W Wei… - IEEE Transactions on …, 2024 - ieeexplore.ieee.org
Path-tracking control represents a crucial technology for achieving autonomous driving in
tracked vehicles. This paper presents a novel cascade control approach based on a port …

High step-up IPOS DC/DC converter based efficiency optimization control strategy

F Lu, L He, B Cheng - IEEE Transactions on Industrial …, 2022 - ieeexplore.ieee.org
This article introduces a symmetrical, high step-up, input-parallel output-serial (IPOS), dc–dc
converter based on voltage multiplier (VM) cells and active clamp circuits to obtain a very …

Stability analysis and stabilization improvement of the DC power system for unmanned aerial vehicle based on the finite-time controller

C Yuan, Y Huangfu, H Bai, S Pang… - IEEE Transactions on …, 2023 - ieeexplore.ieee.org
In an unmanned aerial vehicle DC power system (UAV DCPS), the electric motor or point-of-
load converter can be considered a constant power load (CPL) with negative impedance …

Hamiltonian Energy Control with Energy Management Strategy for Fuel Cell Hybrid Power System

S Pang, Z Mao, X Li, Y Huangfu… - IEEE Transactions …, 2023 - ieeexplore.ieee.org
This article introduces an adaptive Hamiltonian energy control strategy for the proposed
Fuel Cell (FC) hybrid power electronics architecture. The proposed controller with added …

Improved adaptive Hamiltonian control law for constant power load stability issue in DC microgrid: Case study for multiphase interleaved fuel cell boost converter

P Thounthong, P Mungporn, B Nahid-Mobarakeh… - Sustainability, 2021 - mdpi.com
The cascaded connection of power converters in a DC microgrid may cause instabilities.
Indeed, power converters operating as external loads exhibit constant power load (CPL) …

Hamiltonian energy control with built-in integral term for fuel cell hybrid power system

S Pang, M Bahrami, JP Martin… - 2022 IEEE Industry …, 2022 - ieeexplore.ieee.org
This paper introduces an adaptive Hamiltonian energy control strategy for the proposed fuel
cell hybrid power electronics architecture. The proposed controller with added integrator …

Adaptive Hamiltonian-Based Energy Control with Built-In Integrator for PEMFC Hybrid Power Conversion Architecture

Y Li, B Cheng, K Zhang, X Li, S Pang, Z Mao - Energies, 2023 - mdpi.com
In this article, an Adaptive Hamiltonian-Based Energy Control (AHBEC) with a built-in
integrator is introduced for the Proton-Exchange Membrane Fuel Cell (PEMFC) hybrid …

Comparative study of adaptive Hamiltonian control laws for DC microgrid stabilization: An Fuel cell boost converter

D Guilbert, B Nahid-Mobarakeh… - Applied Science and …, 2022 - ph02.tci-thaijo.org
Future smart grids can be seen as a system of interlinked microgrids, including small-scale
local power systems. They consist of main power sources, external loads, and energy …