装备环境工程
裝備環境工程
장비배경공정
EQUIPMENT ENVIRONMENTAL ENGINEERING
2014年
5期
43-48
,共6页
张辉%王陶%李明%曾晨晖
張輝%王陶%李明%曾晨暉
장휘%왕도%리명%증신휘
电子产品%性能退化%仿真分析%加速退化试验
電子產品%性能退化%倣真分析%加速退化試驗
전자산품%성능퇴화%방진분석%가속퇴화시험
electronic product%performance degradation%simulation analysis%accelerated degradation test
目的:研究基于功能仿真对电子产品长期工作过程中性能退化问题进行分析的方法。方法以 DC-DC 电源模块为对象,一种方式是直接对电源模块进行加速退化试验,并基于试验数据进行可靠性分析;另一种方式是对电源模块中性能退化关键元器件进行加速退化试验,并将试验数据模型注入到电源模块功能仿真模型中,进行性能退化仿真与可靠性分析,最终对两种分析结果进行对比,验证仿真分析技术的有效性。结果对比显示,加速退化试验分析得到的电源模块平均寿命为281560 h,仿真分析得到的电源模块平均寿命为357290 h。结论由于仿真分析方法只考虑了性能退化的关键元器件,结果偏乐观,但是偏差在合理的范围内,证明该方法对于性能退化可靠性分析是有效的,并且应用该方法更便于进行设计改进和迭代分析。
目的:研究基于功能倣真對電子產品長期工作過程中性能退化問題進行分析的方法。方法以 DC-DC 電源模塊為對象,一種方式是直接對電源模塊進行加速退化試驗,併基于試驗數據進行可靠性分析;另一種方式是對電源模塊中性能退化關鍵元器件進行加速退化試驗,併將試驗數據模型註入到電源模塊功能倣真模型中,進行性能退化倣真與可靠性分析,最終對兩種分析結果進行對比,驗證倣真分析技術的有效性。結果對比顯示,加速退化試驗分析得到的電源模塊平均壽命為281560 h,倣真分析得到的電源模塊平均壽命為357290 h。結論由于倣真分析方法隻攷慮瞭性能退化的關鍵元器件,結果偏樂觀,但是偏差在閤理的範圍內,證明該方法對于性能退化可靠性分析是有效的,併且應用該方法更便于進行設計改進和迭代分析。
목적:연구기우공능방진대전자산품장기공작과정중성능퇴화문제진행분석적방법。방법이 DC-DC 전원모괴위대상,일충방식시직접대전원모괴진행가속퇴화시험,병기우시험수거진행가고성분석;령일충방식시대전원모괴중성능퇴화관건원기건진행가속퇴화시험,병장시험수거모형주입도전원모괴공능방진모형중,진행성능퇴화방진여가고성분석,최종대량충분석결과진행대비,험증방진분석기술적유효성。결과대비현시,가속퇴화시험분석득도적전원모괴평균수명위281560 h,방진분석득도적전원모괴평균수명위357290 h。결론유우방진분석방법지고필료성능퇴화적관건원기건,결과편악관,단시편차재합리적범위내,증명해방법대우성능퇴화가고성분석시유효적,병차응용해방법경편우진행설계개진화질대분석。
Objective To study the analysis method of performance degradation during long-term operation based on function simulation. Methods Accelerated degradation test was directly carried out on the power supply module, and the test data was used for reliability analysis. At the same time, accelerated degradation test was carried out on the key compo-nents of performance degradation in power supply circuit. The test data was injected into the function simulation model of power supply to simulate performance degradation and analyze the reliability. Finally, the results of the two kinds of analy-ses were compared to demonstrate the effectiveness of the proposed simulation method. Results Comparison showed that av-erage life span of power supply was 281 560 hours based on the accelerated degradation test while 357 290 hours based on the degradation simulation analysis. Conclusion The result of the simulation method was too optimistic, since it only con-sidered the performance degradation of the key components. But the deviation was within a reasonable range, which proved that the method was effective, and the application of this method could assist design improvement and iterative analysis.