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Multi-Source Trans-Provincial Coordinative Optimal Technology Considering Trans-provincial Transaction Costs

机译:考虑跨省级交易成本的多源跨省级协调最优技术

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The inherent intermittency and fluctuation of new energy bring great challenges to real-time dispatching and the controls in a power system with high penetration of renewable energy. It is difficult for traditional real-time dispatching of the power grid to deal with the conflicts among the consumption of new energy, the efficiency of the power grid and the carrying capacity of dispatchers. By constructing an intelligent trading system, which can realize the automatic adjustment and control of the provincial geographic tie line plan, a multi-source trans-provincial coordinated optimization control technology was proposed to achieve the optimization goal of the maximum utilization rate of new energy in the regional power grid, the maximum utilization rate of new energy transmission sections and the minimum transaction costs among provinces. Results of the operation in Northwest power grid show that this technology can effectively improve the utilization rates of new energy in various provinces and relevant new energy transmission sections, and effectively reduce the pressure on the carrying capacity of dispatchers caused by frequent transaction requirements between provinces as well. In this paper, the operation data of a typical day in Northwest power grid was selected to show the principle and effect of the multi-source trans-provincial coordinated optimization control technology proposed.
机译:新能源的固有间歇性和波动为实时调度和电力系统中的控制带来了极大的挑战,具有可再生能源的高渗透。传统的实时调度电网难以应对新能源消耗的冲突,电网的效率和调度员的承载能力。通过构建智能交易系统,可以实现省级地理拉线计划的自动调整和控制,提出了一种多源跨省级协调优化控制技术,以实现新能源最大利用率的优化目标区域电网,新能源传输部分的最大利用率和省份之间的最低交易成本。西北电网运行结果表明,该技术可以有效地提高各个省份新能源的利用率,有效地降低了省份之间频繁交易要求造成的调度员承载能力的压力。好。本文选择了西北电网典型日的运行数据,展示了多源跨省级协调优化控制技术的原理和效果。

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