Skip to content
Open access

Design and Dynamic Response Characteristics Analysis of Hydrogen Fuel Cell Ship Combined Cooling and Power Supply System

Aug 2026 · Engineering Reports · Vol 8 · 0 citations · 30 references

Abstract

The proposed solution to the mismatch in spatial and temporal scales, as well as addressing the unstable bus voltage resulting from hydrogen fuel cell integration onboard marine vessels, is an integrated hybrid energy storage and complementary cogeneration system equipped with a Cold Electric Dynamic Power Smoothing system, designated as CE‐DPS. Utilizing a state‐space averaged model constructed in Matlab Simulink with the ode23t solver facilitates the transient analysis of multi‐physical phenomena through a multi‐tiered collaborative control structure. The bottom tier uses enhanced droop control and virtual mass inertia for stabilizing the bus; the top tier utilizes second‐order low‐pass filtering (LPF) in order to distribute the power and also makes use of the refrigeration thermal mass to reduce peak demand. Simulation results demonstrate that the CE‐DPS will keep the DC bus voltage from exceeding safe operating limits (712 V), eliminate overshoot of the voltage during transient operation, and retain system stability in addition to providing an estimated exergy efficiency of 68% and median hydrogen consumption of 12.1 kg/100 nm, providing an overall fuel savings rate of 15.6%.

Read PDF

Similar papers

Aug 2026

Evaluation of Automotive Battery Modules Using a Coupled Numerical Model With Hybrid Passive–Active Thermal Management

The increasing deployment of lithium‐ion batteries (LIBs) in electric vehicles (EVs) demands robust thermal management to ensure safety and performance, particularly, under high‐current discharge and dynamic load conditions. The present study evaluated a battery pack at the system level, using both detailed finite‐vo...

Tejas Kalvankar, G. Rao · 0 citations
Conference Open access Aug 2026

Modeling and optimization of power battery for hybrid aircraft

Aiming at the dual requirements of modeling accuracy and computational efficiency for power battery systems in the conceptual design of hybrid electric aircraft (HEA), this paper proposes a system-level trade-off-oriented battery modeling and design framework. Firstly, a grey-box equivalent circuit model (ECM) with phy...

Kai-Qi Jin, Jun Zhou · 0 citations
Open access Sep 2026

System-Level Dynamic Modeling and Cross-Domain Disturbance Propagation of an Electricity–Hydrogen–Heat Coupling Subsystem for Integrated Transportation Hubs

Integrated transportation hubs are characterized by fast-varying and strongly coupled electricity, hydrogen-refueling, and thermal demands driven by traffic activities. To characterize their short-term dynamic interactions, this paper develops a compact system-level model of a core electricity–hydrogen–heat coupling su...

Deng-Rui Zhu, Xue-Qin Zhang, Jun-Hao Liang et al. · 0 citations
Open access Sep 2026

Modelling a fixed-speed pumped hydro storage system for reactive power management in power grids with high penetration of inverter-based resources: A case study of Aotearoa New Zealand

The increasing penetration of inverter-based renewable energy resources (IBRs) presents significant challenges to power system voltage stability and reactive power management due to the declining contribution of conventional synchronous generation. This study investigates the reactive power support capability of a fixe...

Balasree Muraleedharan, Daniel Burmester · 0 citations
Open access Sep 2026

Robust finite-time sliding mode control for a multisource energy storage system in hybrid electric vehicles with real-time validation

Hybrid electric vehicles (HEVs) have emerged as a promising solution to reduce greenhouse gas emissions and mitigate the environmental impact of conventional internal combustion vehicles, while overcoming the range limitations of fully electric vehicles (EVs). This study presents a multisource energy storage system (...

U. Faiz, Kamran Zeb, Waqar Uddin et al. · 0 citations
Conference Aug 2026

Optimal Design and Control of a Hydrogen Fuel Cell–Lithium Battery Hybrid Power System for Unmanned Aerial Vehicles

Hydrogen fuel cells offer a promising pathway toward zero-emission, long-endurance operation for high-power unmanned aerial vehicles (UAVs), but their efficiency, degradation, and dynamic response are strongly affected by complex missions and low-temperature environments. This study investigates the optimal design and...

Bo Pang, Yuxuan Su, Zu-Yong Yang et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.