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Open-circuit Failure Detection and Localization of Full-bridge Submodules for MMCs with Single Ring Theorem

机译:具有单环定理的MMC全桥子模块的开路故障检测和定位

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The full-bridge submodule (FBSM) is regarded as an ideal submodule topology for the MMC due to its bidirectional current blocking capability. Compared with the half-bridge submodule (HBSM), the FBSM has more switching devices and is more prone to failure. Upon FBSM open-circuit failures, faulty FBSMs have higher average capacitor voltages than normal FBSMs. Hence, detection of FBSM open-circuit failures can be implemented with capacitor voltage consistency evaluation. To evaluate capacitor voltage consistency of numerous FBSMs efficiently in the MMC, the single ring theorem is applied to FBSM open-circuit failure detection in this paper. Besides, a statistical failure localization method is also proposed to identify faulty FBSMs. The proposed method requires no system information in advance and thus is immune to parameter uncertainties. No extra hardware is needed and the proposed method is compatible with various failure scenarios. Experimental results on a 13-level three-phase MMC prototype are proposed to verify the effectiveness of the proposed method under various failure scenarios.
机译:全桥子模块(FBSM)由于其双向电流阻止功能而被视为MMC的理想子模块拓扑。与半桥子模块(HBSM)相比,FBSM具有更多的交换设备,并且更容易出现故障。在FBSM开路故障时,有故障的FBSM的平均电容器电压要比正常FBSM的平均电容器电压高。因此,可以通过电容器电压一致性评估来实现FBSM开路故障的检测。为了有效地评估MMC中众多FBSM的电容器电压一致性,本文将单环定理应用于FBSM开路故障检测。此外,还提出了一种统计故障定位方法来识别故障FBSM。所提出的方法不需要预先的系统信息,因此不受参数不确定性的影响。不需要额外的硬件,并且所提出的方法与各种故障情况兼容。提出了在13级三相MMC原型上的实验结果,以验证该方法在各种故障情况下的有效性。

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