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储能系统技术 储能系统 IGBT 工商业光伏 可靠性分析 ★ 5.0

使用IGBT有源区的无电阻直流母线主动放电和动态制动方案分析与设计

Resistor-Less DC-Bus Active Discharge and Dynamic Braking Scheme Using IGBTs

语言:

中文摘要

在关机、紧急工况和动态制动期间,工业系统直流母线电容完全放电或直流母线电压钳位通常使用功率电阻和额外开关管理。传统方法增加系统成本、尺寸和复杂度。提出小型低成本无电阻方法用于低功率工业系统两个功能:(a)主动放电和(b)动态制动。该技术在低栅射电压(VGE)下使IGBT工作于有源区,在放电路径产生高阻抗限制电流。主动放电采用脉冲频率调制(PFM)恒功率策略,每个脉冲导通时间(ton)固定,脉冲频率上升加速能量耗散。该方法实现600V直流母线1秒内完全放电,完全由单个IGBT处理。在三个不同IGBT厂商验证该方法,显示一致结果和长期可靠性,超过20万次放电循环无参数退化。动态制动采用固定脉冲频率PFM方法实现50-150W连续功率耗散超过30分钟,有效替代传统内部制动电阻。系统还可容忍IGBT电流额定值50%的短暂过载10-20秒,提供足够制动时间而不失效。所有优势通过简单栅极驱动器修改实现,提供部分VGE电平(3-10V),消除笨重电阻,成本降低至少50%,节省空间,是大批量工业应用的理想方案。

English Abstract

During shutdowns, emergency conditions, and dynamic braking, fully discharging the dc-bus capacitor or clamping the dc-bus voltage in industrial systems is typically managed using power resistors and additional switches. This conventional approach increases system cost, size, and complexity. This paper introduces a compact, cost-effective, resistor-less method for two functions: (a) active discharge and (b) dynamic braking in low-power industrial systems. The proposed technique operates IGBTs in their active region with low gate-emitter voltages (VGE), creating high impedance in the discharge path to limit current. For active discharge, a constant-power strategy is implemented using pulse frequency modulation (PFM), where the on-time (ton) of each pulse is fixed and the pulse frequency is ramped up to accelerate energy dissipation. This approach enables complete discharge of a 600 V dc-bus within 1 second, handled entirely by a single IGBT. The method is validated across three different IGBT vendors, showing consistent results and long-term reliability with no parameter degradation after over 200,000 completed discharge cycles. For dynamic braking, the PFM method with fixed pulse frequency enables continuous power dissipation between 50 W and 150 W for over 30 minutes. It effectively replaces conventional internal braking resistors typically rated from 20 W to 200 W with resistance values of 5-120 Ω. The system can also tolerate brief overloads up to 50% beyond IGBT current ratings for 10-20 seconds, providing sufficient time to complete braking without failure, as confirmed by test results. All these benefits are achieved through a simple gate driver modification that supplies partial VGE levels (3-10 V), eliminating bulky resistors, reducing cost by at least 50%, and saving space-making the solution ideal for high-volume industrial applications.
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SunView 深度解读

该无电阻IGBT主动放电和动态制动技术对阳光电源逆变器和变换器产品有重要优化价值。IGBT有源区运行方案可应用于ST储能变流器和SG光伏逆变器的直流母线放电电路,消除泄放电阻并降低成本50%。PFM恒功率放电策略对阳光电源产品的安全关机和紧急放电有实用价值。20万次循环无退化可靠性对工商业储能系统的长寿命设计有借鉴意义,可提升系统经济性和维护性。