论文标题
具有概率安全限制和自适应频率控制的自主动力系统中的最佳能源管理
Optimal Energy Management in Autonomous Power Systems with Probabilistic Security Constraints and Adaptive Frequency Control
论文作者
论文摘要
许多重型耗电的行业的脱碳取决于在孤立的自主电力系统中可再生能源和能源存储系统的整合。由于复杂性和稳定性要求的增加,可再生能源的不确定性,不同时间范围内的相互矛盾的目标,可靠的功率来源和能源存储有限的目标,此类方案中的最佳能源管理变得更加困难。当将能源存储用于多种服务时,电荷管理状态(例如最佳调度和频率支持)是在这种情况下最臭名昭著的问题之一。为了解决这个问题,本文提出了最佳的能源管理系统。它通过利用一种提供自适应主动功率需求不确定性量化的算法,对常规发电机和储能的调度时间进行优化,并进行了储能的调度时间表,对频率稳定性的理论保证以及为分配给能量存储系统的频率支持的储量范围。凸的重新印象得出,从而实现了涉及优化问题的有效解决方案,这是用于验证的孤立海上石油和天然气平台的测试案例。
The decarbonization of many heavy power-consuming industries is dependent on the integration of renewable energy sources and energy storage systems in isolated autonomous power systems. The optimal energy management in such schemes becomes harder due to the increased complexity and stability requirements, the rapidly varying operating conditions and uncertainty of renewable sources, the conflicting objectives across different timescales, the limited amount of reliable power sources and energy storage. The state of charge management when energy storage is used for multiple services, such as optimal scheduling and frequency support, is one of the most notorious problems in this context. To address this issue, an optimal energy management system is proposed in this paper. It co-optimizes the primary frequency control layer and the dispatch schedule of conventional generators and energy storage by taking advantage of an algorithm that provides adaptive active power demand uncertainty quantification, theoretical guarantees for frequency stability, and bounds for the reserves for frequency support assigned to the energy storage system. A convex reformulation is derived enabling the efficient solution of the involved optimization problem, being a test case of an isolated offshore oil and gas platform presented for validation.