论文标题
用于生物启发的强大功率网络设计的混合企业优化
Mixed-Integer Optimization for Bio-Inspired Robust Power Network Design
论文作者
论文摘要
电力系统容易受到包括飓风和洪水在内的自然威胁。现代电网也越来越受到网络攻击的威胁。有助于提高电力系统安全性和弹性的现有方法可能不够;在严重事件中,向所有客户提供能源的持续挑战证明了这一点。本文提出了一种通过生物启发的电力系统网络设计来应对这一挑战的方法,以提高系统的可靠性和抗障碍的弹性。受自然强大的生态系统的启发,本文考虑了最佳的生态鲁棒性,该组织认识到途径效率和冗余之间的独特平衡,以确保针对给定网络的破坏性事件的生存能力。本文提出了一种方法,该方法通过与电源系统约束制定混合企业非线性编程优化问题,从而最大程度地提高传输网络设计中的生态鲁棒性。结果表明,在N-X意外情况下,优化功率系统的鲁棒性和可靠性的提高,可靠性的提高。
Power systems are susceptible to natural threats including hurricanes and floods. Modern power grids are also increasingly threatened by cyber attacks. Existing approaches that help improve power system security and resilience may not be sufficient; this is evidenced by the continued challenge to supply energy to all customers during severe events. This paper presents an approach to address this challenge through bio-inspired power system network design to improve system reliability and resilience against disturbances. Inspired by naturally robust ecosystems, this paper considers the optimal ecological robustness that recognizes a unique balance between pathway efficiency and redundancy to ensure the survivability against disruptive events for given networks. This paper presents an approach that maximizes ecological robustness in transmission network design by formulating a mixed-integer nonlinear programming optimization problem with power system constraints. The results show the increase of the optimized power system's robustness and the improved reliability with less violations under N-x contingencies.