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Transient stability analysis of one special type of AC microgrids with a gas reciprocating generator unit

机译:气体往复发电机单元一种特殊类型AC微电网的瞬态稳定性分析

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摘要

More and more gas reciprocating generator units are integrated into offshore platforms, due to their compact structure and high efficiency. This paper concentrates on the transient stability analysis of one special type of AC microgrids containing a gas reciprocating generator unit. Firstly, the operation principle for the gas reciprocating generator unit is presented, which mainly consists of a reciprocating internal combustion engine and a linear synchronous alternator (LSA). Afterwards, the mathematical model for the core part of the gas reciprocating generator unit LSA is proposed, based on the principle of armature reaction in traditional synchronous and asynchronous machines. Finally, the simplified model of the independent offshore power system with a gas reciprocating generator unit is derived, and numerical simulations on the transient stability of this typical AC microgrid are performed, from which the effectiveness and correctness of the LSA model are validated. The transient stability analysis method of the independent offshore power system and the mathematical model of LSA can provide beneficial guidance for the stable operation of other types of stand-alone AC microgrids.
机译:越来越多的气体往复发电机单元集成到海上平台上,由于它们的结构紧凑和高效率。本文专注于含有气体往复发电机单元的一种特殊类型的AC微电网的瞬态稳定性分析。首先,提出了气体往复发生器单元的操作原理,其主要由往复式内燃机和线性同步交流发电机(LSA)组成。之后,基于传统的同步和异步机器中的电枢反应原理,提出了气体往复发电机单元LSA的芯部的数学模型。最后,推导出具有气体往复发电机单元的独立海上电力系统的简化模型,并且执行了对该典型交流微电网的瞬态稳定性的数值模拟,从中验证了LSA模型的有效性和正确性。独立海上电力系统的瞬态稳定性分析方法及LSA的数学模型可以为其他类型独立AC微电网的稳定运行提供有益的指导。

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