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去技术化倾向:创客教育在法学科适用的思辨与实践 被引量:2
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作者 王频 《当代教育论坛》 2017年第3期92-97,共6页
现有创客教育的适用范围和作品类型的技术局限性,让创客教育呈现出技术化倾向。创客教育能激发学习动力,解决法学科教学难题,帮助实现国家人才培养政策要求,具有适用于法学科的可行性和必要性。根据法学科的特点遵循STEAM理念合理设计... 现有创客教育的适用范围和作品类型的技术局限性,让创客教育呈现出技术化倾向。创客教育能激发学习动力,解决法学科教学难题,帮助实现国家人才培养政策要求,具有适用于法学科的可行性和必要性。根据法学科的特点遵循STEAM理念合理设计法律创客课题,运用IDMSE创客教学法创意设计法律创客课题的情境、形式和过程,是去除创客教育技术化倾向,实现创客教育在法学科中良好适用的具体实践。 展开更多
关键词 创客教育 去技术化倾向 STEAM理念 法律创客课题 idmsE步骤 创客教学法
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Containership Structural Design and Optimization Based on Knowledge-Based Engineering and Gaussian Process
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作者 崔进举 王德禹 VLAHOPOULOS Nickolas 《Journal of Shanghai Jiaotong university(Science)》 EI 2014年第2期205-218,共14页
Knowledge-based engineering(KBE) has made success in automobile and molding design industry, and it is introduced into the ship structural design in this paper. From the implementation of KBE, the deterministic design... Knowledge-based engineering(KBE) has made success in automobile and molding design industry, and it is introduced into the ship structural design in this paper. From the implementation of KBE, the deterministic design solutions for both rules design method(RDM) and interpolation design method(IDM) are generated. The corresponding finite element model is generated. Gaussian process(GP) is then employed to build the surrogate model for finite element analysis, in order to increase efficiency and maintain accuracy at the same time, and the multi-modal adaptive importance sampling method is adopted to calculate the corresponding structural reliability.An example is given to validate the proposed method. Finally, the reliabilities of the structures' strength caused by uncertainty lying in water corrosion, static and wave moments are calculated, and the ship structures are optimized to resist the water corrosion by multi-island genetic algorithm. Deterministic design results from the RDM and IDM are compared with each separate robust design result. The proposed method shows great efficiency and accuracy. 展开更多
关键词 knowledge-based engineering(KBE) Gaussian process(GP) robust optimization rules design method(RDM) interpolation design method(IDM)
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Power Quality Assessment of Voltage Positive Feedback Based Islanding Detection Algorithm
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作者 Reza Bakhshi-Jafarabadi Reza Ghazi Javad Sadeh 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2020年第4期787-795,共9页
Islanding refers to a condition where distributed generators(DGs)inject power solely to the local load after electrical separation from power grid.Several islanding detection methods(IDMs)categorized into remote,activ... Islanding refers to a condition where distributed generators(DGs)inject power solely to the local load after electrical separation from power grid.Several islanding detection methods(IDMs)categorized into remote,active,and passive groups have been reported to detect this undesirable state.In active techniques,a disturbance is injected into the DG’s controller to drift a local yardstick out of the permissible range.Although this disturbance leads to more effective detections even in well-balanced island,it raises the total harmonic distortion(THD)of the output current under the normal operation conditions.This paper analyzes the power quality aspect of the modified sliding mode controller as a new active IDM for grid-connected photovoltaic system(GCPVS)with a string inverter.Its performance is compared with the voltage positive feedback(VPF)method,a well-known active IDM.This evaluation is carried out for a 1 k Wp GCPVS in MATLAB/Simulink platform by measuring the output current harmonics and THD as well as the efficiency under various penetration and disturbance levels.The output results demonstrate that since the proposed disturbance changes the amplitude of the output current,it does not generate harmonics/subharmonics.Thereby,it has a negligible adverse effect on power quality.It is finally concluded that the performance of the sliding mode-based IDM is reliable from the standpoints of islanding detection and power quality. 展开更多
关键词 Islanding detection method(IDM) power quality sliding mode controller total harmonic distortion(THD) voltage positive feedback(VPF)
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