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Control technique for 15 kV SiC IGBT based active front end converter of a 13.8 kV grid tied 100 kVA transformerless intelligent power substation

机译:13.8 kV并网100 kVA无变压器智能变电站的基于15 kV SiC IGBT的有源前端转换器的控制技术

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This paper discusses the control technique adopted for a 3-Level Neutral Point Clamped (3L-NPC) converter, which is the rectifier stage of a 100 kVA solid state transformer known as the Transformerless Intelligent Power Substation (TIPS) interfacing with 13.8 kV grid. Due to high voltage (13.8 kV) and low power (100 kVA) specification for the rectifier, the control technique needs to be specially designed to control very low magnitude of line current (4.184 A r.m.s). Due to dead time in the converter and harmonic voltage present in the grid, the rectifier current is rich in lower order harmonics (6m±1). Moreover due to very high grid voltage, limiting starting inrush current within the converter current rating is a serious issue. A unified control technique is discussed to mitigate the above mentioned problems. Also the proposed control technique addresses the grid voltage unbalance and d.c bus mid-point voltage unbalance issue faced by the rectifier stage of TIPS. Simulation and SiC IGBT prototype experimental results verify the proposed techniques.
机译:本文讨论了用于三电平中性点钳位(3L-NPC)转换器的控制技术,该转换器是100 kVA固态变压器的整流器级,被称为与13.8 kV电网接口的无变压器智能变电站(TIPS)。由于整流器具有高电压(13.8 kV)和低功率(100 kVA)规格,因此需要对控制技术进行特殊设计,以控制极低的线路电流(4.184 A r.m.s)。由于转换器中的死区时间和电网中存在的谐波电压,整流器电流富含低阶谐波(6m±1)。此外,由于极高的电网电压,在转换器电流额定值范围内限制启动浪涌电流是一个严重的问题。讨论了用于减轻上述问题的统一控制技术。提出的控制技术还解决了TIPS整流器阶段面临的电网电压不平衡和直流母线中点电压不平衡的问题。仿真和SiC IGBT原型实验结果验证了所提出的技术。

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