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Coordinating Flexibility under Uncertainty in Multi-Area AC and DC Grids

机译:多区域交直流电网不确定条件下的协调灵活性

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摘要

In the future, mixed AC and DC grids, spanning multiple areas operated by different transmission system operators (TSO), are expected to offer the necessary controllability for integrating large amounts of intermittent renewable generation. This is facilitated by high voltage direct current transmission based on voltage source converter technology that can offer recourse actions in the form of preventive and corrective control of both active and reactive power. Market-clearing procedures, based on optimal power flow algorithms, need to be revised to account for DC transmission, flexibility and privacy requirements. To this end, we propose a decentralized two-stage stochastic market-clearing algorithm that incorporates meshed DC grids and allows the sharing of flexibility resources between areas. The benefit of this approach lies in its pricing mechanism, used for coordinating the different area subproblems and requiring only a moderate exchange of information while ensuring system-wide optimality. Case studies are presented to illustrate the methodology and to demonstrated the benefits of additional controllability provided by DC grids
机译:将来,跨越不同传输系统运营商(TSO)运营的多个区域的交流和直流混合电网有望为整合大量间歇性可再生能源发电提供必要的可控性。基于电压源转换器技术的高压直流电传输可以促进这一点,该技术可以以有功和无功功率的预防性和纠正性控制的形式提供追索措施。需要对基于最佳潮流算法的市场清理程序进行修改,以解决直流传输,灵活性和隐私要求。为此,我们提出了一种分散的两阶段随机市场清算算法,该算法结合了网格化的直流电网,并允许区域之间共享灵活性资源。这种方法的好处在于它的定价机制,该机制用于协调不同区域的子问题,并且仅需进行适度的信息交换,即可确保系统范围内的最优性。案例研究旨在说明方法论并展示直流电网提供的额外可控性的好处

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