研究目的
To study the optimal planning of distributed photovoltaic generation (DPVG) and energy storage system (ESS) for the traction power supply system (TPSS) of high-speed railway, aiming to cut the electricity bill, bring more profit to railway companies, and realize the decarbonization of high-speed railway industry.
研究成果
The integration of DPVG and ESS in the TPSS of high-speed railway can significantly reduce electricity purchasing costs and carbon emissions. The case study shows that DPVG can supply 48.5% of the electricity demand of high-speed trains, and the integration can save 4.5 billion CNY annually for the Beijing-Baoding high-speed railway. The study highlights the potential and applicability of DPVG and ESS in promoting sustainable development in the high-speed railway industry.
研究不足
The study assumes that the schedule of high-speed trains remains the same during the entire planning horizon and does not consider adjustments due to accidents. The model also assumes that railway companies can always purchase electricity from utility grid, ensuring power supply reliability regardless of DPVG and ESS integration.