A triboelectric nanogenerator sensor-based capture, positioning and release mechanism (CPRM) for test mass in TianQin Gravitational Wave detection Project
Abstract
Space-based gravitational wave (GW) detection offers a powerful platform for observing millihertz GW signals and probing extreme astrophysical phenomena. As an important part for GW detection, monitoring key state during test-mass (TM) capture, positioning, and release is essential. Here, we designed a capture, positioning, and release mechanism (CPRM) for TianQin project, and further constructed a monitoring system based on triboelectric nanogenerator (TENG) to achieve state recognition of TM during the three-stage process. Three nano-TENG sensors generate characteristic pulse signals (>0.5 V, >0.8 V, >2.5 V, respectively). Varied timing sequences and peak magnitudes of the signals characterize the mechanical motions of the CPRM, allowing effective feedback and state recognition throughout the multistage capture, positioning and release (CPR) process. This work provides a promising strategy for monitoring the TM states during the CPR process and broadens the application of TENGs in high-precision aerospace systems.
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Authors: Xuyan Hou, Zhonglai Na, Jixing Si, Jian Zhou, Yuhui Liu, Pingting Zhao, Huiyuan Jing, Rui Shi, Haohang Liu, Ruiwen Zhao, Meiyang Zhang, Fengyan Liu, Yifan Lu, Qing Li, Wenhai Tan, Fei Yang
Institutions: Sun Yat-sen University, Harbin Institute of Technology, Huazhong University of Science and Technology