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集成技术接受模型与UTAUT提升人机交互对学生使用电子学习系统意愿和感知成功的解释力
Integrating Technology Acceptance Model With UTAUT
| 作者 | Fareed Al-Sayid · Gokhan Kirkil |
| 期刊 | IEEE Access |
| 出版日期 | 2025年1月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | 电子学习系统 行为意图 学生成功 技术接受模型 人机交互因素 |
语言:
中文摘要
本研究旨在调查潜在人机交互因素HCI对学生使用电子学习系统的行为意愿BI和感知成功的影响。本文提出综合模型,集成技术接受模型TAM和技术接受与使用统一理论UTAUT。通过在线调查收集使用土耳其Kadir has大学Khas Learn系统的232名学生数据。采用多元线性回归检验所提假设。结果表明,学生成功SS的主要预测因子是行为意愿、易用性、有用性、视觉设计和学习者界面交互性,解释了53.6%的系统使用感知成功。而BI的主要预测因子是促进条件、努力期望、易用性和有用性,解释了71%的继续使用电子学习意愿方差。因此,实证研究结果为HCI主要因素扩展的技术-社会-心理维度提供有力支撑,显示在接受电子学习技术方面的高解释力,并提升SS,模型五个拟合优度值满足结构方程模型SEM的五个标准。
English Abstract
This study aimed to investigate the potential human-computer interaction factors (HCI) affecting students’ behavioural intentions (BI) to use the e-learning system and perceive success. This paper proposes a comprehensive model, integrating the technology acceptance model (TAM) and unified theory of acceptance and use of technology (UTAUT). The data were collected via an online survey conducted on 232 students utilizing the Khas Learn system of Kadir has University in Turkey. The proposed hypotheses were tested by multi-linear regression. The results illustrated that the main predictors of students’ success (SS) are behaviour intention, ease of use, usefulness, visual design, and learner interface interactivity which explained 53.6% of perceived success in using the system. While, the main predictors of BI are facilitating condition, effort expectancy, ease of use, and usefulness which explained 71% of the variance in continuance intentions to use e-learning. Therefore, the empirical findings provide strong backing to the technological-social-psychological dimensions extended by HCI main factors, which showed a high explanatory power in accepting e-learning technology and leads to enhance the SS, where five of the model’s goodness-of-fit values meet five criteria of structural equation modeling (SEM).
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SunView 深度解读
该用户体验研究对阳光电源智慧能源平台界面设计具有参考价值。阳光iSolarCloud云平台服务数百万用户,界面易用性和用户满意度直接影响平台使用率。该研究的TAM-UTAUT集成模型可应用于阳光云平台和运维APP的用户体验评估,识别影响用户接受度的关键因素。在光伏电站运维场景下,该研究的界面交互性和视觉设计发现可指导阳光EMS系统界面优化,提升运维人员工作效率。结合阳光智能设备的人机交互界面,该技术可改善用户体验,降低培训成本,提高平台粘性,推动智慧能源管理系统的广泛应用和用户满意度。