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Risk aware net load balancing in micro grids with high DER penetration

机译:风险了解微网格中的净负载均衡,具有高分渗透率

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The rapid transformation of micro grids due to the accelerated integration of renewables, storage systems and IoT enabled monitoring and control has opened up new opportunities as well as challenges. Future micro grids will be characterized by high DER penetration and will require sophisticated net load balancing frameworks which explicitly consider the errors in prediction of load and generation due to uncertainty in weather conditions while making decisions. Traditional techniques for grid net load management which rely on isolated shaping of load and supply curves are inadequate and inefficient. For micro grids with high PV penetration, the intermittent and unpredictable nature of PV based energy generation can lead to dramatic and sudden supply demand imbalances thus requiring a holistic framework for balancing net load over the entire horizon. In this paper, we develop a sequential decision making framework for net load management that optimally balances the usage of storage and energy market transactions as a mechanism for mitigating supply demand imbalances (net load imbalances) over the horizon. Our framework specifically accounts for prediction uncertainty of future net load imbalances and minimizes the tail end risk of storage shortfall at the end of the horizon. Using qualitative analysis, we show that our framework achieves its objective of minimum cost net load balancing while accounting for the tail end risk.
机译:微电网由于可再生能源,存储系统和物联网的加速整合的快速转型中启用监控和控制开辟了新的机遇和挑战。未来的微电网将通过高渗透DER的特点和需要复杂的网络负载均衡,其中明确考虑负荷和发电的预测误差由于天气状况的不确定性,而决策框架。电网的净负荷管理依赖于负载和供给曲线的分离的成形传统技术是不够的和低效的。对于微电网具有较高光伏渗透率,基于光伏发电的间歇性和不可预测性会导致这样就需要对整个天际网平衡负载的整体框架戏剧性和突然的供需失衡。在本文中,我们开发了网络负载管理一个连续的决策框架,优化平衡存储和能源市场交易的使用作为在地平线上缓解供需失衡(净负载不平衡)的机制。我们的框架中所占据未来净负载不平衡的预测不确定性和地平线年底降低存储不足的尾部风险。采用定性分析,我们表明,我们的框架实现其目标成本最低的净负荷,而占尾部风险平衡。

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