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首页> 外文期刊>Power Delivery, IEEE Transactions on >Reliability Analysis of Low-Voltage Metal-Oxide Surge Arresters Using Accelerated Failure Time Model
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Reliability Analysis of Low-Voltage Metal-Oxide Surge Arresters Using Accelerated Failure Time Model

机译:基于加速失效时间模型的低压金属氧化物避雷器可靠性分析

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Failure progression of metal oxide-based surge arresters in response to exposure to harmonics is modeled using the accelerated failure time model. Multistress accelerated ageing tests, with and without ac distorted voltage stress, are conducted on arrester samples sourced from different suppliers to obtain baseline and harmonic-factor logarithmic life and reliability functions. A maximum likelihood approach is taken to estimate the accelerated failure time model parameters based on the failure time data. The modeled harmonic-factor reliabilities prove metal oxide varistors life acceleration and show multiplicative failure progression of up to 41 times faster for a total harmonic distortion (THD) content of 8.52% in the applied voltage stress.
机译:使用加速失效时间模型对基于金属氧化物的电涌放电器响应于谐波暴露的失效进程进行建模。对来自不同供应商的避雷器样品进行了有无交流电压应力的多应力加速老化测试,以获得基线和谐波因数对数寿命及可靠性函数。基于故障时间数据,采用最大似然方法来估计加速故障时间模型参数。建模的谐波因数可靠性证明了金属氧化物压敏电阻的寿命加速,并且在施加的电压应力中,总谐波畸变(THD)含量为8.52%时,乘法故障进展速度高达41倍。

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