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Evaluation of hydrogen storage technology in risk-constrained stochastic scheduling of multi-carrier energy systems considering power, gas and heating network constraints

机译:考虑功率,气体和加热网络约束的多载能量系统风险受限随机调度中储氢技术的评价

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摘要

The operation of energy systems considering a multi-carrier scheme takes several advantages of economical, environmental, and technical aspects by utilizing alternative options is supplying different kinds of loads such as heat, gas, and power. This study aims to evaluate the influence of power to hydrogen conversion capability and hydrogen storage technology in energy systems with gas, power, and heat carriers concerning risk analysis. Accordingly, conditional value at risk (CVaR)-based stochastic method is adopted for investigating the uncertainty associated with wind power production. Hydrogen storage system, which can convert power to hydrogen in off-peak hours and to feed generators to produce power at on-peak time intervals, is studied as an effective solution to mitigate the wind power curtailment because of high penetration of wind turbines in electricity networks. Besides, the effect constraints associated with gas and district heating network on the operation of the multi-carrier energy systems has been investigated. A gas-fired combined heat and power (CHP) plant and hydrogen storage are considered as the interconnections among power, gas and heat systems. The proposed framework is implemented on a system to verify the effectiveness of the model. The obtained results show the effectiveness of the model in terms of handling the risks associated with multi-carrier system parameters as well as dealing with the penetration of renewable resources. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:考虑多载波方案的能量系统的操作通过利用替代选项提供经济,环境和技术方面的几个优点是提供不同种类的载荷,例如热,气体和电力。本研究旨在评估能量系统在具有燃气,功率和热载体的能量系统中对氢转换能力和储氢技术的影响。因此,采用风险(CVAR)的随机转换方法的条件值来研究与风力发电相关的不确定性。储氢系统可以在非高峰时段转换为氢气的电力,并以达到峰值时间间隔产生电力的电力,是一种有效的解决方案,以减轻风力缩减风力缩减电力,因为风力涡轮机在电力中渗透网络。此外,研究了与气体和区加热网络相关的效果限制已经研究过多载波能量系统的操作。燃气燃烧的混合热量和功率(CHP)植物和储氢被认为是电力,气体和热系统之间的互连。所提出的框架在系统上实现,以验证模型的有效性。所获得的结果表明了该模型在处理与多载波系统参数相关的风险以及处理可再生资源的渗透方面的有效性。 (c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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