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储能系统技术 储能系统 SiC器件 可靠性分析 ★ 5.0

模块化双向固态电池断开器保护功能的实现

Implementation of Protection Features for a Modular Bidirectional Solid-State Battery Disconnector

语言:

中文摘要

针对电动汽车中高压电池系统对过流和短路故障保护的需求,本文提出一种紧凑、可复位、双向的固态直流断开器(SSD)。该断开器采用碳化硅开关反串联结构,具备快速响应和宽电压范围工作能力,可区分过流与短路故障,并支持可调触发电流阈值。通过电流模拟-数字转换采样与模拟硬件路径短路检测相结合,提升故障切断速度;基于I²t特性的可变反时限保护曲线有效避免了瞬态冲击电流误动作。此外,采用模块化设计,利用低功率器件和小电流传感器实现高可靠性与可扩展性。实验验证了单模块及双模块在800 V/30 A系统中对过流、短路及欠压的保护性能。

English Abstract

The growing adoption of batteries with high voltages (HVs), ranging from 400 to 800 V, in electric vehicles (EVs), coupled with the high load demand, necessitates enhanced circuit protection against overcurrent events and short-circuit faults. This is crucial to prevent damage to the connected wiring harness, battery, and loads. Conventional approaches like thermal fuses, dc contactors, and pyrofuses are constrained by factors such as slow response times, degradation with fault occurrences, and the need for regular maintenance and replacement, respectively. In response to these limitations, this article proposes the introduction of a compact, resettable, and bidirectional solid-state dc disconnector (SSD) as a solution to overcome these challenges. The proposed disconnector is based on an anti-series connection of silicon carbide (SiC) switches, which offer fast response times and operate under a wide voltage range. It can differentiate between overcurrent events and short-circuit faults and can be configured for different trip current threshold values. In addition to the current-analog-to-digital converter (ADC)-based sampling method for overcurrent detection, analog hardware path-based short-circuit detection has been implemented for faster fault interruption. A variable inverse time-current characteristic trip curve, based on the I2t profile, has been implemented to prevent unintentional tripping during transient inrush current events. The article also proposes a modular SSD to enhance reliability and scalability for high-current operation using low-power-rated devices and low-current-rated sensors in each module. The performance of the proposed SSD, with each module designed for a system rating of 800 V/30 A, has been experimentally validated using both single- and two-module operations for protection against overcurrent, short-circuit faults, and undervoltage protection.
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SunView 深度解读

该固态电池断开器技术对阳光电源储能系统和新能源汽车产品线具有重要应用价值。在PowerTitan大型储能系统中,模块化SiC双向断开器可替代传统熔断器和接触器,实现电池簇级快速故障隔离,基于I²t特性的可变反时限保护曲线能有效区分浪涌电流与真实故障,避免储能系统启动时的误动作。在车载OBC充电机中,该技术可提供800V高压电池的双向保护,模拟-数字混合检测路径将短路响应时间缩短至微秒级,显著提升功能安全等级。模块化设计理念与阳光电源ST系列储能变流器的并联扩容架构高度契合,低功率器件方案可降低辅助电源设计复杂度,提升系统可靠性和成本竞争力。