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A novel matrix topology-based analysis method of thermal circuits for reliability optimization of HSER
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作者 Huimin LIANG Bo LI +3 位作者 Jiaxin YOU Shan JIANG Mengtong ZHU aobo wang 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2024年第4期479-492,共14页
Hermetically Sealed Electromagnetic Relay(HSER), used in aviation and aerospace,demands high reliability due to its critical applications. Given its complex operating conditions, efficient thermal analysis is essentia... Hermetically Sealed Electromagnetic Relay(HSER), used in aviation and aerospace,demands high reliability due to its critical applications. Given its complex operating conditions, efficient thermal analysis is essential for optimizing reliability. The commonly used Finite Element Method(FEM) is often time-consuming and may not be efficient or adaptable for complex multi-dimensional system calculations and design processes. This paper introduces an analysis method for thermal networks based on matrix perspective technology, encompassing matrix transformation, backpropagation of the heat path model, temperature rise calculation, solution comparison, and product implementation. Using the similarity theory of heat circuits, a basic thermal unit is established. Based on the fundamental connection between key components, a thermal network for a typical HSER is designed. An experimental system is set up, and the thermal network model's accuracy is confirmed using test data. Employing the topology analysis method, the topology of the thermal network is analyzed under both coil-energized and de-energized states. Potential thermal paths are identified, leading to optimized solutions for the HSER. Utilizing these solutions, the thermal path matrix topology model is backpropagated to the thermal path for temperature rise calculations. When compared to prototype HSER test data, the efficiency and accuracy of this matrix topology-based analysis method are confirmed. 展开更多
关键词 Thermal networks HSER(Hermetically Sealed Electromagnetic Relay) Heat-circuit topology model Heat-circuit matrix Optimization design
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舒更葡糖钠用于ASA分级Ⅲ或Ⅳ级高风险手术患者安全性的评价:随机双盲临床研究 被引量:4
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作者 W.Joseph Herring Yuki Mukai +6 位作者 aobo wang Jeannine Lutkiewicz John F.Lombard Li Lin Molly Watkins David M.Broussard Manfred Blobner 《中华麻醉学杂志》 CAS CSCD 北大核心 2022年第1期16-23,共8页
目的评价舒更葡糖钠用于ASA分级Ⅲ或Ⅳ级高风险手术患者术后拮抗神经肌肉阻滞的安全性。尤其着重评估了心脏不良事件以及其他预先指定的临床关注不良事件的影响。方法符合ASA分级Ⅲ或Ⅳ级标准的患者,根据ASA分级和神经肌肉阻滞剂(罗库... 目的评价舒更葡糖钠用于ASA分级Ⅲ或Ⅳ级高风险手术患者术后拮抗神经肌肉阻滞的安全性。尤其着重评估了心脏不良事件以及其他预先指定的临床关注不良事件的影响。方法符合ASA分级Ⅲ或Ⅳ级标准的患者,根据ASA分级和神经肌肉阻滞剂(罗库溴铵或维库溴铵)进行随机分组,新斯的明/格隆溴铵组:中度神经肌肉阻滞;舒更葡糖钠2 mg/kg组,中度神经肌肉阻滞;舒更葡糖钠4 mg/kg组,深度神经肌肉阻滞;舒更葡糖钠16 mg/kg组,深度神经肌肉阻滞(仅罗库溴铵)。主要研究终点包括治疗期间窦性心动过缓、窦性心动过速和其他心律失常的发生情况。结果344例患者进入随机化分配,331例患者接受了治疗[61%为男性,BMI(28.5±5.3)kg/m^(2),年龄(69±11)岁]。舒更葡糖钠2 mg/kg组治疗期间窦性心动过缓发生率显著降低,舒更葡糖钠2 mg/kg组和4 mg/kg组治疗期间窦性心动过速发生率显著降低(P<0.05)。4组间治疗期间其他心律失常发生率比较差异无统计学意义(P>0.05)。结论ASA分级Ⅲ或Ⅳ级高风险手术患者使用舒更葡糖钠拮抗罗库溴铵或维库溴铵诱导的中度和深度神经肌肉阻滞的安全性良好。 展开更多
关键词 舒更葡糖钠 安全性 ASA分级Ⅲ或Ⅳ级
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