Dynamic model and robust control for the PEM fuel cell systems DOI Creative Commons
Jie Ying Tan, Raja Kamil,

Mohd Shawal Jadin

et al.

Results in Engineering, Journal Year: 2024, Volume and Issue: 22, P. 102247 - 102247

Published: May 9, 2024

In response to the escalating challenges posed by climate change, global energy sector has witnessed a paradigm shift towards sustainable alternatives. The promising fuel cell technology known as proton exchange membrane (PEMFC) found widespread use in variety of mobile and stationary applications. This paper presents super-twisting sliding mode (STSM) control for maximum power point tracking (MPPT) on system incorporated floating interleaved boost converter (FIBC). work aims extract from PEMFC means robust conjunction with FIBC improve current ripple. proposed controller is designed combining STSM MPPT methods. tracks down system, corresponding values act reference controller. results show that incorporating can result ripple reduction when compared traditional (IBC). obtained demonstrate capability closed-loop maintain system's robustness under parameter variations.

Language: Английский

A review of green hydrogen production by renewable resources DOI Creative Commons
Qusay Hassan, Sameer Algburi, Aws Zuhair Sameen

et al.

Energy Harvesting and Systems, Journal Year: 2023, Volume and Issue: 11(1)

Published: Nov. 6, 2023

Abstract This comprehensive review delves into the burgeoning field of green hydrogen production through utilization renewable resources. As global demand for clean and sustainable energy escalates, has emerged as a promising solution, garnering significant attention due to its potential decarbonize various sectors. The study encapsulates thorough exploration key methodologies employed in harnessing sources such wind, solar, hydroelectric power generation. analysis encompasses both technological aspects environmental implications, shedding light on efficiency, scalability, feasibility. Moreover, evaluates economic viability policy frameworks that underpin integration existing systems. By synthesizing findings from multitude research endeavors, this underscores current advancements, challenges, future prospects realm production. Ultimately, not only contributes deeper understanding pathways but also provides insights can guide evolution technologies toward more environmentally conscious energy-abundant future.

Language: Английский

Citations

16

Hydrogen diffusion behavior within microstructures near crack tip: A crystal plasticity study DOI
Kaidi Li, Bin Tang,

Mengqi Zhang

et al.

Mechanics of Materials, Journal Year: 2024, Volume and Issue: 195, P. 105032 - 105032

Published: May 7, 2024

Language: Английский

Citations

5

Implement and evaluate resilient energy infrastructures capable of withstanding spatial, temporal, and annual weather fluctuations in Saudi Arabia by 2050 DOI Creative Commons
Qusay Hassan, Sameer Algburi, Marek Jaszczur

et al.

Sustainable Futures, Journal Year: 2024, Volume and Issue: 7, P. 100182 - 100182

Published: March 15, 2024

The study delves into the development of a sustainable energy framework for Saudi Arabia, aimed at being fully operational by year 2050. It highlights critical role integrating variable renewable (VRE) sources, which are inherently influenced diverse weather patterns across different timescales. Through advanced modelling techniques, explores various scenarios to assess feasibility VRE solutions in coping with unpredictability conditions. seeks strike delicate balance among cost-effectiveness, security, and environmental sustainability, aligning national aspirations Arabia Vision 2030 international efforts combat climate change. findings illuminate vital considerations strategic choices necessary transitioning VRE-dominant, low-carbon landscape. research identifies both hurdles prospects increasing integration, suggesting comprehensive strategies fortify infrastructure against backdrop fluctuating phenomena. By aiming design resilient, system 2050, contributes significantly ongoing dialogue on face climatic variability, highlighting transformative potential technologies fostering sustainable, future. Moreover, innovative 'soft-linked' approach provides in-depth insights evolution, emphasizing imperative trade-offs mitigation required establish an that harmonizes carbon reduction objectives, resilience, meteorological even limited interconnectivity.

Language: Английский

Citations

4

Techno-economic optimization of a photovoltaic-wind energy-based hydrogen production system: A case study of different cities of Saudi Arabia DOI
Ibrahim B. Mansir, Paul C. Okonkwo, Naeim Farouk

et al.

Energy & Environment, Journal Year: 2024, Volume and Issue: unknown

Published: April 18, 2024

The study employed Hybrid Optimization of Multiple Electric Renewables software and two-hybrid energy systems configurations to ascertain the most effective approach for generating hydrogen electrical power in designated three cities Dammam, Jeddah Tabuk Saudi Arabia. To reduce emissions greenhouse gases, improve security encourage sustainable development, this was motivated by need address urgent switch renewable sources like solar wind based on Arabian's Vision 2030 initiative. achieve these objectives, research investigates techno-economic feasibility producing from promote independence economic growth region novelty provides a regional view use production concentrating several Arabian cities. It is essential successful planning policy formation have insights suited unique settings as demonstrated study. According findings study, requirements selected Arabia can be fulfilled using sources, sufficient speed sunlight are available produce hydrogen. outcomes that electricity generated city Dammam were found significantly higher than other two resulting high at compared Jeddah. hybrid system identified practical option fulfilling Arabia's analysis optimization, with low net present cost, levelized cost values $235235, 0.316 $/kWh 4.16 $/kg, respectively. outcome suggests incorporating may diminish country's reliance fossil fuels decarbonize its transportation sector. results could members industry increased make infrastructure more resilient sustainable.

Language: Английский

Citations

4

Dynamic model and robust control for the PEM fuel cell systems DOI Creative Commons
Jie Ying Tan, Raja Kamil,

Mohd Shawal Jadin

et al.

Results in Engineering, Journal Year: 2024, Volume and Issue: 22, P. 102247 - 102247

Published: May 9, 2024

In response to the escalating challenges posed by climate change, global energy sector has witnessed a paradigm shift towards sustainable alternatives. The promising fuel cell technology known as proton exchange membrane (PEMFC) found widespread use in variety of mobile and stationary applications. This paper presents super-twisting sliding mode (STSM) control for maximum power point tracking (MPPT) on system incorporated floating interleaved boost converter (FIBC). work aims extract from PEMFC means robust conjunction with FIBC improve current ripple. proposed controller is designed combining STSM MPPT methods. tracks down system, corresponding values act reference controller. results show that incorporating can result ripple reduction when compared traditional (IBC). obtained demonstrate capability closed-loop maintain system's robustness under parameter variations.

Language: Английский

Citations

4