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Average-value modeling of thyristor controlled line-commutated converter using voltage and current source formulations

机译:利用电压和电流源公式对可控硅换相转换器的平均值建模

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Line-commutated converters (LCC) can operate in both rectifier and inverter modes and are widely used in various high-power applications including the HVDC systems. So far, many average-value modeling (AVM) techniques have been introduced to model the rectifier operation of the LCCs. However, to extend these models for the inverter mode may be challenging. In this paper, the voltage-source and current-source average-value modeling (VS-AVM and CS-AVM) formulations are introduced based on the well-posedness of the underlying state equations. It is shown that the proposed CS-AVM will have advantages for modeling the thyristor controlled LCC operating as an inverter, whereas a more conventional VS-AVM may not result in a convergent model.
机译:线路换向转换器(LCC)可以在整流器和逆变器模式下运行,并广泛用于包括HVDC系统在内的各种大功率应用中。到目前为止,已经引入了许多均值建模(AVM)技术来对LCC的整流器操作进行建模。但是,将这些模型扩展为逆变器模式可能具有挑战性。本文基于基础状态方程的适定性,介绍了电压源和电流源平均值建模(VS-AVM和CS-AVM)公式。结果表明,所提出的CS-AVM具有建模作为逆变器的晶闸管控制LCC的优势,而更常规的VS-AVM可能不会产生收敛模型。

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