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★ 5.0
一种基于门极电压识别晶闸管反向恢复状态的新方法
A Novel Method for Identifying the Reverse Recovery State of Thyristors Based on Gate Voltage
| 作者 | Jin Yang · Xiangyu Zhang · Rui Chang · Zhiwei Wu · Xiangxi Mu · Bowen Gu |
| 期刊 | IEEE Transactions on Industrial Electronics |
| 出版日期 | 2025年2月 |
| 技术分类 | 电动汽车驱动 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 晶闸管 关断状态检测 反向恢复状态 门极电压 新方法 |
语言:
中文摘要
作为直流输电系统中的关键电力电子器件,晶闸管因其导通损耗低、浪涌能力强、经济性好以及可靠的载流性能而备受青睐。然而,在换流变压器、有源逆变器和断路器等关键应用中,准确判断晶闸管的关断状态仍然是这些系统可靠运行面临的重大挑战。传统方法依靠检测流经晶闸管的反向恢复电流来判断其关断状态。这种方法常常面临检测困难、成本高和精度不足等问题,而且几十年来一直没有提出新的晶闸管关断状态检测方法。为解决晶闸管关断状态识别难题,本文提出了一种基于晶闸管门极电压识别其反向恢复状态的新方法。该方法无需测量一次侧的大电流,仅需测量二次侧的小电压即可准确判断晶闸管的反向恢复状态。实验验证了该方法的可行性。所提出的方法具有成本低、易于集成等优点,为现有设备中晶闸管反向恢复状态的识别提供了一种有效解决方案。
English Abstract
As a critical power electronic device in dc transmission systems, thyristors are highly favored for their low conduction loss, excellent surge capability, economic efficiency, and reliable current-carrying performance. However, in key applications such as commutation converters, active inverters, and circuit breakers, accurately determining the off-state of thyristors remains a significant challenge for the reliable operation of these systems. The traditional method relies on detecting the reverse recovery current flowing through the thyristor to determine its off-state. This method is often plagued by detection difficulties, high costs, and insufficient accuracy, and no new methods for detecting the off-state of thyristors have been proposed for decades. To address the difficulty in recognizing the off-state of thyristors, this article proposes a novel method for identifying the reverse recovery state of thyristors based on the gate voltage of the thyristor. This method eliminates the need to measure the high current on the primary side, requiring only the measurement of a small voltage on the secondary side to accurately determine the thyristor's reverse recovery state. Experimental validation confirms the feasibility of this approach. The proposed method offers advantages such as low cost and ease of integration, providing an effective solution for identifying the reverse recovery state of thyristors in existing equipment.
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SunView 深度解读
从阳光电源的业务视角来看,这项基于门极电压识别晶闸管反向恢复状态的新方法具有重要的应用价值。在我们的光伏逆变器、储能变流器以及柔性直流输电等核心产品中,晶闸管作为关键功率器件广泛应用于换流、有源逆变和断路保护等环节,其关断状态的准确判断直接关系到系统的可靠性和安全性。
该技术的核心创新在于摆脱了传统依赖主回路大电流检测的方式,转而通过测量门极侧的小信号电压来判断器件状态。这一突破对阳光电源具有多重战略意义:首先,在大功率储能系统中,传统电流检测方案往往面临成本高、集成难度大的问题,新方法的低成本和易集成特性可显著降低系统BOM成本并提升可靠性;其次,对于我们正在拓展的高压直流快速断路器和固态断路器产品线,精准的晶闸管状态识别能力将直接提升保护动作的准确性和响应速度;第三,在光伏逆变器的并网控制中,该技术有助于优化换流过程,减少开关损耗,进一步提升系统效率。
从技术成熟度评估来看,论文已完成实验验证,但工程化应用仍需关注几个关键问题:门极电压信号在强电磁干扰环境下的抗干扰能力、不同工况和温度条件下的判别阈值自适应、以及与现有控制系统的兼容性。建议我们的研发团队跟进该技术,开展针对性的应用验证,特别是在1500V高压储能系统和大容量集中式逆变器等产品上进行试点测试,评估其在实际工况下的可靠性和经济性,为产品差异化竞争力提供技术储备。