分析需求响应资源聚合的实时市场波动--MISO 案例

Yikui Liu;Yonghong Chen;Robert Merring;Bing Huang;Lei Wu
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摘要

在观察分布式能源(DERs)的快速增长时,区域输电组织(rto)一直在研究即将到来的挑战和潜在的方法,以支持其更深程度的市场整合。本文研究了中部大陆独立系统运营商(MISO)基于分销因子的商业定价节点(Cpnode)-元素定价节点(Epnode)网络模型,分析了其在支持跨多个地点的DERs作为聚合需求响应资源(drr)的市场集成方面的适用性和潜在问题。具体来说,本文修改了MISO现有的DRR模型,通过分布因子将不同Epnodes上的组件资源聚合为Cpnodes上的可调度DRR。这些聚合的可调度drr将直接参与MISO的实时(RT)能源市场,并通过epnode级组件资源重新调度,在Cpnodes上遵循MISO的调度指令。然而,分配因子的不准确性可能会导致RT能源市场的边际价格(LMPs)和dr调度的波动。为此,讨论了影响振荡发生的因素,并研究了五种分布因子更新策略。此外,还提出了一种校正项来解决传输约束下的时序失调问题。通过MISO的RT安全约束经济调度(RT- sced)工具和MISO实际生产案例进行了数值模拟,以评估这些策略和影响因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analyzing Real-Time Market Oscillation of Demand Response Resource Aggregation—A MISO Case
In observing the rapid growth of distributed energy resources (DERs), regional transmission organizations (RTOs) have been investigating the upcoming challenges and potential methods to support their deeper market integration. This article studies the Midcontinent Independent System Operator's (MISO) distribution factor-based commercial pricing node (Cpnode)-elemental pricing node (Epnode) network model, analyzing its suitability and potential issues in supporting the market integration of DERs across multiple locations as aggregated demand response resources (DRRs). Specifically, this article modifies the MISO's existing DRR models to aggregate component resources on different Epnodes via distribution factors as dispatchable DRRs at Cpnodes. These aggregated dispatchable DRRs will directly participate in the MISO's real-time (RT) energy market and follow the MISO's dispatch instructions at Cpnodes through the Epnode-level component resource redispatch. However, distribution factor inaccuracy could cause oscillations in locational marginal prices (LMPs) and dispatches of DRRs in the RT energy market. To this end, influential factors contributing to the occurrence of oscillations are discussed, and five distribution factor updating strategies are studied. Moreover, a correction term is proposed to resolve the timing misalignment issue in transmission constraints. Numerical simulations via the MISO's RT Security-Constrained Economic Dispatch (RT-SCED) tool and actual MISO production cases are conducted to evaluate these strategies and influential factors.
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