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Seismic performance evaluation of high voltage disconnect switches using real-time hybrid simulation: Ⅰ. System development and validation

机译:基于实时混合仿真的高压隔离开关抗震性能评估:Ⅰ。系统开发与验证

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This paper presents the development and validation of a real-time hybrid simulation (RTHS) system for efficient dynamic testing of high voltage electrical vertical-break disconnect switches. The RTHS system consists of the computational model of the support structure, the physical model of the insulator post, a small shaking table, a state-of-the-art controller, a data acquisition system and a digital signal processor. Explicit Newmark method is adopted for the numerical integration of the governing equations of motion of the hybrid structure, which consists of an insulator post (experimental substructure) and a spring-mass-dashpot system representing the support structure (analytical substructure). Two of the unique features of the developed RTHS system are the application of an efficient feed-forward error compensation scheme and the ability to use integration time steps as small as 1 ms. After the development stage, proper implementation of the algorithm and robustness of the measurements used in the calculations are verified. The developed RTHS system is further validated by comparing the RTHS test results with those from a conventional shaking table test. A companion paper presents and discusses a parametric study for a variety of geometrical and material configurations of these switches using the developed RTHS system.
机译:本文介绍了实时混合仿真(RTHS)系统的开发和验证,该系统用于对高压电气垂直断开开关进行有效的动态测试。 RTHS系统由支撑结构的计算模型,绝缘子柱的物理模型,小型振动台,最新型控制器,数据采集系统和数字信号处理器组成。采用显式Newmark方法对混合结构的运动控制方程进行数值积分,该方法由绝缘子柱(实验子结构)和代表支撑结构(分析子结构)的弹簧质量阻尼器系统组成。已开发的RTHS系统的两个独特功能是有效的前馈误差补偿方案的应用以及使用小至1 ms积分时间步长的能力。在开发阶段之后,将验证算法的正确实现以及计算中使用的测量的鲁棒性。通过将RTHS测试结果与常规振动台测试的结果进行比较,进一步验证了开发的RTHS系统。随附的论文介绍并讨论了使用已开发的RTHS系统对这些开关的各种几何和材料配置进行的参数研究。

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