1.中科院特别研究助理资助项目,经人体腔道的气电混合驱动机理及自感知控制方法研究,2020-01至2022-1,60万,项目负责人,在研;
2.中国博士后科学基金面上项目,面向人体腔道内环境的气电混合软体驱动机理及其自感应控制策略,2020-12-31至2022-12-31,8万,项目负责人,在研;
3. 广东省基础与应用基础研究基金项目-青年基金项目,锥形介电弹性体驱动器中的孤立响应机理及基于自感知的规避方法研究,2020-10-01 至 2023-09-30,10万,项目负责人,在研;
[1] Cao, Chongjing, et al. (2021). On the mechanical power output comparisons of cone dielectric elastomer actuators. IEEE/ASME Transactions on Mechatronics. 出版中。10.1109/TMECH.2021.3054460.
[2] Cao, Chongjing, Gao, X., Burgess, S., & Conn, A. T. (2020). Power optimization of a conical dielectric elastomer actuator for resonant robotic systems. Extreme Mechanics Letters, 35,100619.
[3] Cao, Chongjing, Hill, T. L., Conn, A. T., Li, B., & Gao, X. (2019). Nonlinear dynamics of a magnetically coupled dielectric elastomer actuator. Physical Review Applied, 12(4), 044033.
[4] Cao, Chongjing, Gao, X., & Conn, A. T. (2019). A compliantly coupled dielectric elastomer actuator using magnetic repulsion. Applied Physics Letters, 114(1), 011904.
[5] Cao, Chongjing, Gao, X., & Conn, A. T. (2019). A Magnetically Coupled Dielectric Elastomer Pump for Soft Robotics. Advanced Materials Technologies, 4(8), p. 1900128.