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A Cost-Effective Redundant Digital Excitation Control System and Test Bed Experiment for Safe Power Supply for Process Industry 4.0

机译:具有成本效益的冗余数字励磁控制系统和过程工业4.0安全电源的试验台实验

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Recently, the energy demand and supply situation in the Republic of Korea (ROK) has been largely affected by the fluctuations in the energy markets around the world. Such a situation has provided a basis for requiring improvements to power plant facilities. The automatic generator voltage control systems in large-scale power plants are adopting a rapid-response static excitation method to improve the transient stability. A domestic commercially developed large-scale triple-redundant excitation system is currently operated by the 1000 MW-class nuclear power plant and its efficiency has been verified at the same site. However, such a system is too costly for smaller power plants so that a reliable and low-cost redundant digital excitation control system was developed and introduced in this study to resolve the cost problem. The system has improved its stability and reliability at the same time through double (redundant) configuration. Additionally, the system’s performance was put to the test by conducting a series of control function tests after applying it to the gas turbine used in a thermal power station. This study includes the development of system hardware, simulations as well as on-site experiments and each element was validated as a result. Also, the study discusses and validates the method used for replacing the protective relays at the Kanudi power plant operating in Papua New Guinea. The replacement of 27 and 81 protective relays at the existing power plant was carried out as they did not function properly. New relays were installed after removing the power supply in the existing panel. The individual power output sections of new relays were connected in parallel with the existing properly functioning relays, as previous protective relays had only allowed monitoring without outputting the contents. Thus, the new protective system was designed to enable both existing and new relays to carry out the detection function. It was validated that the replacement was successful. The new system with the new relays is performing properly by protecting its power generator and preventing further accidents.
机译:最近,大韩民国(ROK)的能源供需形势受到世界各地能源市场波动的很大影响。这种情况为要求改进电厂设施提供了基础。大型电厂的发电机自动电压控制系统正在采用快速响应的静态励磁方法来提高暂态稳定性。 1000兆瓦级核电站目前正在运行国内商业开发的大规模三冗余励磁系统,其效率已在同一地点进行了验证。但是,这样的系统对于小型发电厂来说太昂贵了,因此开发了可靠且低成本的冗余数字励磁控制系统,并将其引入本研究中以解决成本问题。通过双重(冗余)配置,该系统同时提高了稳定性和可靠性。此外,在将系统应用于火力发电厂的燃气轮机后,通过进行一系列控制功能测试对系统的性能进行了测试。这项研究包括系统硬件的开发,仿真以及现场实验,因此对每个元素进行了验证。此外,该研究还讨论并验证了在巴布亚新几内亚运行的卡努迪电厂更换保护继电器的方法。由于它们的运行不正常,在现有电厂中更换了27个和81个保护继电器。拆除现有面板中的电源后,安装了新的继电器。新继电器的各个功率输出部分与现有的功能正常的继电器并联连接,因为以前的保护继电器仅允许监视而不输出内容。因此,设计了新的保护系统,以使现有的和新的继电器都能执行检测功能。确认更换成功。通过保护发电机并防止进一步的事故,带有新继电器的新系统可以正常运行。

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