Aiming at the problems of lagging curriculum,weak practice,and single evaluation in the cultivation of HarmonyOS Development talents,this study constructs a“teacher-machine-student”ternary interactive teaching model...Aiming at the problems of lagging curriculum,weak practice,and single evaluation in the cultivation of HarmonyOS Development talents,this study constructs a“teacher-machine-student”ternary interactive teaching model based on the Congyou platform.Through the building block curriculum system,the HarmonyOS technology stack is decoupled into dynamic capability units,and a multi-disciplinary cross-case library is jointly built with Huawei,which significantly improves the synchronization of teaching content and industrial technology.This paper innovatively designs an AI collaborative teaching system,which employs knowledge graphs to plan learning paths,utilizes virtual equipment clusters to simulate development environments,and establishes a“diagnosis-feedback-enhancement”closed loop through AI-based review,thereby effectively improving students’development efficiency and code reuse rate.A three-dimensional evaluation model integrating task outcomes,process performance,and innovation is constructed,incorporating indicators such as code standardization and an innovation index to strengthen the cultivation of engineering thinking and innovative ability.Furthermore,a data-driven support platform is built to generate student competency profiles,open up the“credit-competency-certification”pathway,promote the transformation of course achievements into contributions to the Huawei ecosystem,and significantly shorten the job adaptation cycle for graduates.The research results provide a replicable paradigm for the cultivation of domestic operating system talents.展开更多
共享停车是应对汽车保有量增长导致的城市停车难题、充分利用现有停车位资源的重要举措。提出了一种基于HarmonyOS与窄带物联网(Narrow Band Internet of Things, NB-IoT)的城市共享停车体系,以HarmonyOS与NB-IoT设计共享停车融合终端、...共享停车是应对汽车保有量增长导致的城市停车难题、充分利用现有停车位资源的重要举措。提出了一种基于HarmonyOS与窄带物联网(Narrow Band Internet of Things, NB-IoT)的城市共享停车体系,以HarmonyOS与NB-IoT设计共享停车融合终端、云IoT平台作为共享停车的边缘服务平台。给出了基于云IoT平台的城市共享停车服务体系的架构设计,提出了基于HarmonyOS与NB-IoT的终端标准化设计以及端云一体化开发方法。对地面拉远和地下场景下的NB-IoT的穿透覆盖性能,以及不同运行环境下的HarmonyOS系统的线程响应时间分别进行了实测与性能评估,验证了所提系统的有效性与服务性能。为不同停车设备的智能化、互联与协同提供了统一的集成管理与开放方案,为提高现有停车设施的使用效率,推动我国智慧城市交通发展和提升新型城镇化建设质量提供可行的实施路径。展开更多
文摘Aiming at the problems of lagging curriculum,weak practice,and single evaluation in the cultivation of HarmonyOS Development talents,this study constructs a“teacher-machine-student”ternary interactive teaching model based on the Congyou platform.Through the building block curriculum system,the HarmonyOS technology stack is decoupled into dynamic capability units,and a multi-disciplinary cross-case library is jointly built with Huawei,which significantly improves the synchronization of teaching content and industrial technology.This paper innovatively designs an AI collaborative teaching system,which employs knowledge graphs to plan learning paths,utilizes virtual equipment clusters to simulate development environments,and establishes a“diagnosis-feedback-enhancement”closed loop through AI-based review,thereby effectively improving students’development efficiency and code reuse rate.A three-dimensional evaluation model integrating task outcomes,process performance,and innovation is constructed,incorporating indicators such as code standardization and an innovation index to strengthen the cultivation of engineering thinking and innovative ability.Furthermore,a data-driven support platform is built to generate student competency profiles,open up the“credit-competency-certification”pathway,promote the transformation of course achievements into contributions to the Huawei ecosystem,and significantly shorten the job adaptation cycle for graduates.The research results provide a replicable paradigm for the cultivation of domestic operating system talents.
文摘共享停车是应对汽车保有量增长导致的城市停车难题、充分利用现有停车位资源的重要举措。提出了一种基于HarmonyOS与窄带物联网(Narrow Band Internet of Things, NB-IoT)的城市共享停车体系,以HarmonyOS与NB-IoT设计共享停车融合终端、云IoT平台作为共享停车的边缘服务平台。给出了基于云IoT平台的城市共享停车服务体系的架构设计,提出了基于HarmonyOS与NB-IoT的终端标准化设计以及端云一体化开发方法。对地面拉远和地下场景下的NB-IoT的穿透覆盖性能,以及不同运行环境下的HarmonyOS系统的线程响应时间分别进行了实测与性能评估,验证了所提系统的有效性与服务性能。为不同停车设备的智能化、互联与协同提供了统一的集成管理与开放方案,为提高现有停车设施的使用效率,推动我国智慧城市交通发展和提升新型城镇化建设质量提供可行的实施路径。