论文标题

功率电网演员的强大和确定性调度

Robust and Deterministic Scheduling of Power Grid Actors

论文作者

Frost, Emilie, Veith, Eric MSP, Fischer, Lars

论文摘要

现代电力网格需要应对日益分散的,挥发性的能源以及由电池群构成的虚拟发电厂等新业务模型。这既需要对发电厂的大型日程安排的日益计划,又要进行短期合同来抵消预测偏差或适应日内市场的动态。此外,可再生能源的地理分布迫使计划算法的沟通链接质量截然不同。在本文中,我们提出了称为LPEP ++的轻型功率交换协议(LPEP)的扩展。它借鉴了LPEP的强度,以找到组合功率需求需求问题的最佳解决方案,并在可接受的时间内保证字符串,并通过长期计划,并行的谈判并减少其内存足迹的设施。此外,我们还显示出它对挥发性通信链接质量的稳健性。

Modern power grids need to cope with increasingly decentralized, volatile energy sources as well as new business models such as virtual power plants constituted from battery swarms. This warrants both, day-ahead planning of larger schedules for power plants, as well as short-term contracting to counter forecast deviations or to accommodate dynamics of the intra-day markets. In addition, the geographic distribution of renewable energy sources forces scheduling algorithms with a hugely different communication link qualities. In this paper, we present an extension to the Lightweight Power Exchange Protocol (LPEP), dubbed LPEP++. It draws on the strength of the LPEP to find the optimal solution of the combinatorial power demand-supply problem with string guarantees in acceptable time and extends it with facilities for long-term planning, parallel negotiations and reduces its memory footprint. We furthermore show its robustness towards volatile communication link quality.

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