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Region model and application of regional integrated energy system security analysis

机译:区域综合能源系统安全性分析的区域模型与应用

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摘要

With the deep interconnection of multi-energy flow in the regional integrated energy system (RIES), the security problem after contingencies has gained wide attentions. Compared with the traditional time-consuming 'point-wise' simulation method, the 'region' method has become a new powerful approach to analyze the system security status, which can be calculated offline and applied online. Nowadays, the rapidly development of RIES automation level has laid foundation for the load transfer after faults. Therefore, faced with the RIES supplied by energy hubs (EHs), this paper proposes the concept and model of regional integrated energy system security region (RIESSR) based on the N - 1 security guideline. Furthermore, a practical RIESSR model is simplified to improve the solution efficiency, including the security boundary, security distance and security margin. In order to realize the RIESSR visual observation, a simulation fitting solution of practical RIESSR security boundary is presented. Based on the RIESSR, the framework of RIES security analysis is constructed to achieve the measurement of system status, obtaining the security information and controlling the energy generation of EHs. On this basis, the preventive control and optimizing control models are established to optimize the system security status. Finally, some numerical cases are simulated to verify the effectiveness and applicability of the proposed RIESSR model. The case study demonstrates that the security boundary of RIESSR could be described and the two-dimensional and three-dimensional visualizations of practical RIESSR are realized. Through the RIESSR, the analysis of security assessment and energy supply capability can be conducted rapidly and directly. After the preventive control, the insecure operating point could be adjusted to the secure status quickly. According to the demand of different security degree and efficiency degree, the set of Pareto fronts of optimizing control measures are presented, which provides guideline for the dispatchers.
机译:随着区域综合能源系统(RIES)中多能量流的深层互联,突发事件后的安全问题受到了广泛关注。与传统的费时的“逐点”仿真方法相比,“区域”方法已成为分析系统安全状态的强大新方法,可以离线计算并在线应用。如今,RIES自动化水平的快速发展为故障后的负荷转移奠定了基础。因此,面对能源枢纽(EH)提供的RIES,本文基于N-1安全准则,提出了区域综合能源系统安全区域(RIESSR)的概念和模型。此外,简化了实用的RIESSR模型以提高解决方案效率,包括安全边界,安全距离和安全裕度。为了实现RIESSR的视觉观察,提出了一种实用的RIESSR安全边界仿真拟合解决方案。基于RIESSR,构建了RIES安全分析框架,以实现系统状态的测量,获得安全信息并控制EH的能量产生。在此基础上,建立预防控制和优化控制模型,以优化系统安全状态。最后,通过仿真数值算例验证了所提出的RIESSR模型的有效性和适用性。案例研究表明,可以描述RIESSR的安全边界,并实现实际RIESSR的二维和三维可视化。通过RIESSR,可以快速,直接地进行安全评估和能源供应能力的分析。进行预防性控制后,可以将不安全的工作点迅速调整到安全状态。根据不同安全等级和效率等级的需求,提出了优化控制措施的帕累托前沿集合,为调度员提供指导。

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