理工科升学竞争日趋同质化,大考成绩已难以拉开差距。海外名校更青睐具备真实问题攻坚、研发能力的学生,完整的科创实操经历,是凸显理工素养、拉高申请辨识度的核心优势。
深大师院国际高中(AISSU)始终注重培养学生的理工科创素养,鼓励学生跳出课本局限,以实操实践锤炼专业能力。今年暑期,我校陈柏存同学深度参与可穿戴机器人科创项目,独立负责肘关节核心模块,完成上肢康复外骨骼系统的设计、建模、调试全流程研发,以实打实的科创成果丰富个人学术履历。
STEM applications are getting more and more alike—big exam scores alone just don’t set you apart anymore. Top overseas schools prefer students who can tackle real problems and actually build things. A complete, hands-on STEM innovation project is a key edge—it shows your science and engineering skills and makes your application stand out.
The Affiliated International School of Shenzhen University (AISSU) has always focused on building students’ STEM and innovation skills, encouraging them to go beyond textbooks and sharpen their expertise through hands-on work. This summer, our student Chen Baicun dove deep into a wearable robotics project, independently led the elbow joint core module, and completed the full R&D process for an upper-limb rehab exoskeleton system—design, modeling, and debugging—adding solid, real results to his academic profile.
Student Reflection | Chen Baicun
学生感悟|陈柏存
本次项目聚焦残障人群康复需求,致力于研发轻量化、低成本的上肢康复外骨骼设备。作为团队肘关节模块负责人,我全权负责方案选型、三维建模、硬件选配与样机调试等核心工作,独立完成整套肘部功能模块的研发落地。
This project focused on the rehab needs of people with disabilities, aiming to develop a lightweight, low-cost upper-limb rehab exoskeleton. As the team’s elbow joint module lead, I was fully in charge of solution selection, 3D modeling, hardware selection, and prototype debugging—independently taking the whole elbow function module from idea to working prototype.
超高场磁共振实验室参观学习
结合专业理论知识,我摒弃市面常见的连杆传动方案,选用直驱关节结构,有效解决传动滞后问题。借助SolidWorks完成全套零件建模与虚拟装配,为贴合人体生理结构,多次迭代优化模型,解决零件干涉、关节错位等问题。同时匹配大扭矩舵机与ESP32控制系统,最终实现肘关节0-150°稳定屈伸的助力效果。
This project focused on the rehab needs of people with disabilities, aiming to develop a lightweight, low-cost upper-limb rehab exoskeleton. As the team’s elbow joint module lead, I was fully in charge of solution selection, 3D modeling, hardware selection, and prototype debugging—independently taking the whole elbow function module from idea to working prototype.
项目硬件电路焊接调试
在校养成的严谨治学、任务拆解、复盘创新的良好习惯,是我高效完成研发的关键。我摒弃照搬网络方案的惯性,结合实际需求自主选型、迭代优化,以科学数据为支撑开展设计,彻底摆脱“纸上谈兵”的学习模式,养成了求真务实、灵活变通的工科研发思维。
This project focused on the rehab needs of people with disabilities, aiming to develop a lightweight, low-cost upper-limb rehab exoskeleton. As the team’s elbow joint module lead, I was fully in charge of solution selection, 3D modeling, hardware selection, and prototype debugging—independently taking the whole elbow function module from idea to working prototype.
颁发个人结项证书
项目团队结项合影留念
这次实践让我对工科研发有了全新认知,工程设计没有标准答案,唯有权衡取舍、反复迭代才能落地实用成果。同时我深刻明白,科创研发以人为本,技术研发需立足真实民生需求。未来我将持续深耕科创领域,精进工程实操能力,以专业实践探索更多科创可能。
This project focused on the rehab needs of people with disabilities, aiming to develop a lightweight, low-cost upper-limb rehab exoskeleton. As the team’s elbow joint module lead, I was fully in charge of solution selection, 3D modeling, hardware selection, and prototype debugging—independently taking the whole elbow function module from idea to working prototype.
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编辑 | 品宣组
图文 | 品宣组
English translation reviewed by UCCO
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