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Optimal operation of wind-solar-hydrogen storage system based on energy hub

机译:基于能量枢纽的风光储氢系统的优化运行

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Along with the exhaustion of fossil fuels and the environmental pollution problem, renewable energy will surely become the mainstream of the future energy sector in the world. The uncertainty of large-scale intermittent energy output brings a great challenge to the safe operation of power grids. In this paper, taking into account the volatility and randomness of wind power and solar energy, we present a multi-energy coupling model with the core of hydrogen energy based on energy hub. To maximize operational profits of multi-energy system, an optimization problem is formulated to achieve coordinated operation using matrix coupling methodology. The matrix coupling mode can represent the input-output relationship of energy carriers. The CPLEX software is used to obtain the optimal solution in the dispatching period. In contrast with the traditional operation mode without the utilization of hydrogen, simulation results indicate that the proposed model achieves the higher penetration of renewable energy and more profits.
机译:随着化石燃料的枯竭和环境污染问题的发展,可再生能源必将成为全球未来能源领域的主流。大规模间歇性电能输出的不确定性给电网的安全运行带来了巨大的挑战。在考虑风能和太阳能的波动性和随机性的基础上,我们提出了一个基于能量中心的以氢能为核心的多能量耦合模型。为了使多能源系统的运营利润最大化,使用矩阵耦合方法制定了一个优化问题以实现协调运行。矩阵耦合模式可以表示能量载体的输入-输出关系。 CPLEX软件用于在调度期间获得最佳解决方案。与传统的不使用氢的运行模式相比,仿真结果表明,该模型实现了更高的可再生能源渗透率和更多的利润。

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