半导体光电, 2020, 41 (2): 247, 网络出版: 2020-06-17  

面向毫克级仿昆扑翼微飞行器的力-力矩传感器

Lift-Torque Sensor Applied for Insect-Inspired Flapping-Wing Micro Air Vehicle
孟冉 1,2张卫平 1,*王晨阳 1,2周岁 1,2魏铭辰 1,2
作者单位
1 上海交通大学 1. 微米/纳米加工技术重点实验室
2 2. 电子信息与电气工程学院微纳电子学系, 上海 200240
引用该论文

孟冉, 张卫平, 王晨阳, 周岁, 魏铭辰. 面向毫克级仿昆扑翼微飞行器的力-力矩传感器[J]. 半导体光电, 2020, 41(2): 247.

MENG Ran, ZHANG Weiping, WANG Chenyang, ZHOU Sui, WEI Mingchen. Lift-Torque Sensor Applied for Insect-Inspired Flapping-Wing Micro Air Vehicle[J]. Semiconductor Optoelectronics, 2020, 41(2): 247.

参考文献

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[2] Zou Y, Zhang W, Ke X, et al. The design and microfabrication of a sub 100mg insect-scale flapping-wing robot[J]. Micro & Nano Lett., 2017, 12(5): 297-300.

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[4] Zhou S, Zhang W, Zou Y, et al. Piezoelectric driven insect-inspired robot with flapping wings capable of skating on the water[J]. Electron. Lett., 2017, 53(9): 579-580.

[5] Beyeler F, Muntwyler S, Nelson B J. A six-axis MEMS force-torque sensor with micro-newton and nano-newtonmeter resolution[J]. J. of Microelectromechanical Systems, 2009, 18(2): 433-441.

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[8] 高德亮, 范振华. 扭矩传感器原理及应用[J]. 科技传播, 2012(1): 99-107.

    Gao Deliang, Fan Zhenhua. The principle and application of torque sensor[J]. Science and Technology Communication, 2012(1): 99-107.

孟冉, 张卫平, 王晨阳, 周岁, 魏铭辰. 面向毫克级仿昆扑翼微飞行器的力-力矩传感器[J]. 半导体光电, 2020, 41(2): 247. MENG Ran, ZHANG Weiping, WANG Chenyang, ZHOU Sui, WEI Mingchen. Lift-Torque Sensor Applied for Insect-Inspired Flapping-Wing Micro Air Vehicle[J]. Semiconductor Optoelectronics, 2020, 41(2): 247.

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