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Coordination study of a realistic oil production area including variable frequency drives

机译:包括变频驱动在内的实际采油区的协调研究

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Nowadays, new technology of motor drives such as; the VFD (variable frequency drives) are much preferred than old technique of driving motors. However, a complete replacement operation is going to performed at most of oil production locations to run all motors based on VFD instead of the classic starting method (DOL). VFDs have many advantages such as; smoothly starting of motors (save a lot of high starting current), extending the motor life time, in addition to it directly affect in decreasing the total system short-circuit level (Max. & Min.), which will affect positively on all system breaking capacity level (cables, motors & transformers). However, the coordination of the system should be restudied with the reducing of the Min. short-circuit level. Consequently, a new short-circuit level will be developed based on the new impedance values of the system after adding the required VFD drives, here in this paper we are going to study & investigate a realistic power plant system @ Khalda Petroleum Company (KPC), which located at Egypt western desert. The main target is to prepare & evaluate a study of replacing motor MCC (Motor Control Center) by means of VFDs, all operations are executed using ETAP 12.6 software.
机译:如今,电机驱动的新技术包括: VFD(变频驱动器)比旧的驱动电动机技术更受青睐。但是,将在大多数采油地点执行一次完整的更换操作,以运行所有基于VFD而非经典启动方法(DOL)的电动机。 VFD具有许多优势,例如;平稳地启动电动机(节省大量的启动电流),延长电动机的使用寿命,除了直接影响减少总系统短路水平(最大和最小)外,这还将对整个系统产生积极影响分断能力等级(电缆,电动机和变压器)。但是,系统的协调性应随着Min的降低而重新研究。短路水平。因此,在添加所需的VFD驱动器之后,将基于系统的新阻抗值来开发新的短路等级,在本文中,我们将在Khalda Petroleum Company(KPC)上研究和研究实际的发电厂系统位于埃及西部沙漠。主要目标是准备并评估通过VFD更换电动机MCC(电动机控制中心)的研究,所有操作均使用ETAP 12.6软件执行。

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