通过高压直流灵活输送实现梯级水电的低碳调度方法

Yutong Wang, Chenyong Zhao, Heping Jia
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摘要

我国是水电资源丰富的国家,通过高压直流系统输送西南水电可以实现大范围的资源优化配置,但传统的高压直流输电方案往往以高低二值运行,难以充分发挥高压直流输电的灵活性,增加了电力系统的碳排放和运行成本。为充分挖掘高压直流输电方式的灵活性,降低系统碳排放,本文基于水电通过高压直流系统送往受端系统的场景,综合考虑受端火电机组低运行成本和二氧化碳排放、高压直流系统过载能力、高压直流系统无功补偿成本等因素,建立了混合整数编程模型。提出了一种梯级水电高压直流柔性输送系统的低碳调度方法。最后,以梯级水电站跨区输电系统为例,将本文提出的模型与传统 HVDC 系统的高低二元输电进行了比较。结果表明,本文提出的调度模式和高压直流系统的灵活运行可以促进新能源的消纳,减少系统的二氧化碳排放,实现低碳和经济运行并重的调度目标。
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A Low-carbon Dispatching Method for Cascade Hydropower via HVDC Flexible Delivery
As a country rich in hydropower resources, the transmission of Southwest hydropower through HVDC system can achieve a large range of optimal allocation of resources, but the traditional HVDC transmission plan is often operated in high and low binary value, which is difficult to give full play to the flexibility of HVDC transmission, and increase the carbon emission and operation cost of the power system. In order to fully explore the flexibility of HVDC transmission mode to reduce system carbon emissions, this paper builds a mixed integer programming model based on the scenario of hydropower being sent to the receiving system through the HVDC system, taking into account such factors as low operating costs and carbon dioxide emissions of thermal power units at the receiving end, overload capacity of the HVDC system, and reactive power compensation cost of the HVDC system. A low carbon scheduling method for cascade hydropower HVDC flexible delivery system is proposed. Finally, taking the cross-regional transmission system of cascade hydropower station as an example, the model proposed in this paper is compared with the high-low binary transmission of traditional HVDC system. The results show that the dispatch mode proposed in this paper and the flexible operation of the HVDC system can promote the consumption of new energy, reduce the CO2 emissions of the system and achieve the dispatch goal of both low carbon and economic operation.
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