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A Power System Optimal Dispatch Strategy Considering the Flow of Carbon Emissions and Large Consumers

机译:考虑碳排放量和大量消费者的电力系统最优调度策略

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The carbon emissions trading market and direct power purchases by large consumers are two promising directions of power system development. To trace the carbon emission flow in the power grid, the theory of carbon emission flow is improved by allocating power loss to the load side. Based on the improved carbon emission flow theory, an optimal dispatch model is proposed to optimize the cost of both large consumers and the power grid, which will benefit from the carbon emissions trading market. Moreover, to better simulate reality, the direct purchase of power by large consumers is also considered in this paper. The OPF (optimal power flow) method is applied to solve the problem. To evaluate our proposed optimal dispatch strategy, an IEEE 30-bus system is used to test the performance. The effects of the price of carbon emissions and the price of electricity from normal generators and low-carbon generators with regards to the optimal dispatch are analyzed. The simulation results indicate that the proposed strategy can significantly reduce both the operation cost of the power grid and the power utilization cost of large consumers.
机译:碳排放交易市场和大型消费者直接购买电力是电力系统发展的两个有希望的方向。为了追踪电网中的碳排放量,通过将功率损耗分配给负载侧来改进碳排放量的理论。基于改进的碳排放流量理论,提出了一种优化调度模型,以优化大型消费者和电网的成本,这将从碳排放交易市场中受益。此外,为了更好地模拟现实,本文还考虑了由大型消费者直接购买电力。应用OPF(最优潮流)方法来解决该问题。为了评估我们提出的最佳调度策略,使用了IEEE 30总线系统来测试性能。分析了碳排放价格以及普通发电机和低碳发电机的电价对最优调度的影响。仿真结果表明,所提出的策略可以显着降低电网运行成本和大用户用电成本。

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