Guobiao Hu: Publications

Journal Articles

  • J. Wang, S. Gu, D. Yurchenko, G. Hu*, R. Wei, 2022, “On the Investigation of Ash Deposition Effect on Flow-Induced Vibration Energy Harvesting”, Mechanical Systems and Signal Processing. (Accepted)

  • X. Li, G. Hu, Z. Guo, J. Wang, Y. Yang, J. Liang, 2022, “Frequency Up-Conversion for Vibration Energy Harvesting: A Review”, Symmetry-Basel, Vol.13, No.3, 631.

  • Z. Li, X. Peng, G. Hu, D. Zhang, Z. Xu, Y. Peng, S. Zhong, J. Luo, S. Xie, 2022, “Towards Real-Time Self-Powered Sensing with Ample Redundant Charges by a Piezostack-based Frequency-Converted Generator from Human Motions”, Energy Conversion and Management. (Accepted)

  • G. Hu, C. Lan, L. Tang, J. Liang, L. Zhao, 2022, “Theoretical Study of a Two-Degree-of-Freedom Piezoelectric Energy Harvester under Concurrent Aeroelastic and Base Excitation”, Journal of Intelligent Material Systems and Structures. (Online)

  • G. Hu, C. Lan, L. Tang, Y. Yang, 2022, “Dynamics and Power Limit Analysis of a Galloping Piezoelectric Energy Harvester Under Forced Excitation”, Mechanical Systems and Signal Processing, Vol.168, 108724.

  • G. Hu, C. Lan, L. Tang, Y. Yang, 2022, “Deep-Subwavelength Interface States in Mechanical Systems”. Mechanical Systems and Signal Processing, Vol. 169. 108598

  • G. Hu, C. Zhao, Y. Yang, X. Li, J. Liang, 2022, “Triboelectric Energy Harvesting based on an Origami-Inspired Structure”, Applied Energy, Vol. 306: 118037.

  • G. Hu, C. Lan, L. Tang, Y. Yang, 2022, “Local Resonator Stimulated Polarization Transition in Metamaterials and The Formation of Topological Interface States”, Mechanical Systems and Signal Processing, Vol.165: 108388.

  • G. Hu, J. Liang, L. Tang, J. Wang, 2022, “Improved Theoretical Analysis and Design Guidelines of a Two-Degree-of-Freedom Galloping Piezoelectric Energy Harvester”, Journal of Intelligent Material Systems and Structures.

  • Y. Jian, L. Tang&, G. Hu&, Z. Li, K. Aw, 2021, “Design of Graded Piezoelectric Metamaterial Beam with Spatial Variation of Electrodes”, International Journal of Mechanical Sciences, Vol. 218, 107068

  • J. Wang, D. Yurchenko, G. Hu*, L. Zhao, L. Tang, Y. Yang, 2021, “Perspectives in Flow-Induced Vibration Energy Harvesting”, Applied Physics Letters, Vol.119, 100502

  • Y. Gao, G. Hu&, B. Zhao, J. Liang&, 2021, “Synchronized Switch Piezoelectric Energy Harvesting Using Rotating Magnetic Ball and Reed Switches”, Smart Materials and Structures, Vol.30, No.10: 105023.

  • J. Wang, S. Sun, G. Hu&, Y. Yang, L. Tang, P. Li&, G. Zhang, 2021, “Exploring the Potential Benefits of Using Metasurface for Galloping Energy Harvesting”, Energy Conversion and Management, Vol. 243, 114414.

  • C. Lan, G. Hu*, L. Tang, Y. Yang, 2021, “Energy Localization and Topological Protection of a Locally Resonant Topological Metamaterial for Robust Vibration Energy Harvesting”, Journal of Applied Physics, Vol.129, 184502.

  • J. Wang, S. Sun, L. Tang&, G. Hu&, J. Liang, 2021, “On the Use of Metasurface for Vortex-Induced Vibration Suppression or Energy Harvesting”, Energy Conversion and Management, Vol.235, 113991.

  • G. Hu, L. Tang, J. Liang, C. Lan, R. Das, 2021 “Acoustic-Elastic Metamaterials and Phononic Crystals for Energy Harvesting: A Review”, Smart Materials and Structures, Vol.30, 085025.

  • G. Hu, J. Wang, L. Tang, 2021, “A Comb-like Beam based Piezoelectric System for Galloping Energy Harvesting”, Mechanical Systems and Signal Processing, Vol.29, No11.

  • C. Lan, Y. Liao, G. Hu, 2021, “A Unified Equivalent Circuit and Impedance Analysis Method for Galloping Piezoelectric Energy Harvesters”, Mechanical Systems and Signal Processing, Vol.165, 108339.

  • Y. Jian, G. Hu, L. Tang, J. Xu, K. Aw, 2021, “A Generic Theoretical Approach for Estimating Band Gap Bounds of Metamaterial Beams”, Journal of Applied Physics, Vol.130, 054501

  • X. Li, H. Tang, G. Hu, B. Zhao, J. Liang, 2021, “ViPSN-E: A Transient-Motion-Powered Human Motion Detector”,IEEE Internet of Things Journal. (Online first)

  • Z. Guo, G. Hu, V. Sorokin, L. Tang, X. Yang, 2021, “Low-Frequency Flexural Wave Attenuation in Metamaterial Sandwich Beam with Hourglass Lattice Truss Core”, Wave Motion, Vol.104, 102750.

  • G. Hu, J. Liang, C. Lan, L. Tang, 2020, “A Twist Piezoelectric Beam for Multi-Directional Energy Harvesting”, Smart Materials and Structures,Vol.28, No.4, 045018.

  • G. Hu, J. Wang, H. Qiao, L. Zhao, Z. Li, L. Tang, 2020, “An Experimental Study of a Two-degree-of-Freedom Galloping Energy Harvester”, International Journal of Energy Research, Vol.45, No.2, 3365-3374.

  • G. Hu, A. Austin, V. Sorokin, L. Tang, 2020, “Metamaterial Beam with Graded Local Resonators for Broadband Vibration Suppression”, Mechanical Systems and Signal Processing, Vol.146, 106982.

  • C. Lan&, G. Hu&, Y. Liao, W. Qin, 2020, “A Wind-Induced Negative Damping Method to Achieve High-Energy Orbits of a Nonlinear Vibration Energy Harvester”, Smart Materials and Structures, Vol.30, 02LT02.

  • C. Lan, Z. Chen, G. Hu, Y. Liao, W. Qin, 2020, “Achieve Frequency-Self-Tracking Energy Harvesting Using a Passively Adaptive Cantilever Beam”, Mechanical Systems and Signal Processing, Vol.156, 107672.

  • J. Xu, G. Hu, L. Tang, Y. Zhang, R. Yan, 2020, “Modeling and Analysis of Phononic Crystal with Coupled Lanes for Enhanced Elastic Wave Attenuation”, Journal of Vibration and Acoustics - Transactions of ASME, Vol.143, No.2, 021011.

  • J. Wang, S. Gu, C. Zhang, G. Hu, G. Chen, K. Yang, H. Li, Y. Lai, G. Litak, D. Yurchenko, 2020, “Hybrid wind energy scavenging by coupling vortex-induced vibrations and galloping”, Energy Conversion and Management, Vol.213, 112835.

  • K. Yang, K. Su, J. Wang, F. Wang, G. Hu, O. Gaidai, 2020, “Performance Evaluation of a Dual-Piezoelectric-Beam Vibration Energy Harvester with A Lever and Repulsive Magnets”, Smart Materials and Structures, Vol.29, No.7, 075010.

  • M. Zhang#, G. Hu#, J. Wang, 2019, “Bluff Body with Built-in Piezoelectric Cantilever for Flow-Induced Energy Harvesting”, International Journal of Energy Research, Vol.44, No.5, 3762-3777

  • J. Wang#, G. Hu#, L. Tang, L. Zhao, 2019, “A Cross-coupled Dual-beam for Multi-Directional Energy Harvesting from Vortex Induced Vibrations”, Smart Materials and Structures, Vol.28, No.12, 12LT02.

  • G. Hu, J. Xu, L. Tang, C. Lan, R. Das, 2019, “Tunable Metamaterial Beam by Using Negative Capacitor for Local Resonators Coupling”, Journal of Intelligent Material Systems and Structures,Vol.31, No.3, 389-407.

  • G. Hu, L. Tang, X. Cui, 2019, “On the Modelling of Membrane-coupled Helmholtz Resonator and its Application in the Design of Acoustic Metamaterial”, Mechanical Systems and Signal Processing,Vol.132, 595–608.

  • G. Hu, L. Tang, J. Xu, C. Lan, R. Das, 2019, “Metamaterial with Local Resonators Coupled by Negative Stiffness Springs for Enhanced Vibration Suppression”, Journal of Applied Mechanics - Transactions of ASME, Vol.86, No.8, 081009

  • G. Hu, L. Tang, J. Liang, R. Das, 2019, “Modelling of a Cantilevered Energy Harvester with Partial Piezoelectric Coverage and Shunted to Practical Interface Circuits”, Journal of Intelligent Material Systems and Structures, Vol.30, No.13, 1896–1912.

  • J. Jiang, G. Hu&, X. Li, X. Xu, P. Zheng, J. Stringer&, 2019, “Analysis and Prediction of Printable Bridge Length in Additive Manufacturing based on Back Propagation Neural Network”, Virtual and Physical Prototyping, Vol.14, No.3, 253-266

  • C. Lan, Y. Liao, G. Hu, L. Tang, 2019, “Equivalent Impedance and Power Analysis of Monostable Piezoelectric Energy Harvesters”, Journal of Intelligent Material Systems and Structures, Vol.31, No.14, 1697-1715.

  • Z. Guo, G. Hu, V. Sorokin, Y. Yang, L. Tang, 2019, “Sound Transmission through Sandwich Plate with Hourglass Lattice Truss Core”, Journal of Sandwich Structures and Materials, Vol.23, No.6, 1902-1928.

  • J. Jiang, J. Lou, G. Hu, 2019, “Effect of Support on Printed Properties in Fused Deposition Modelling Processes”, Virtual and Physical Prototyping, Vol.14, No.4, 308-315.

  • C. Lan, L. Tang, G. Hu, W. Qin, 2019, “Dynamics and Performance of a Two-Degree-of-Freedom Galloping-based Piezoelectric Energy Harvester”, Smart Materials and Structures, Vol.28, No.4, 045018

  • G. Hu, L. Tang, and R. Das, 2018, “General Framework for Modeling Multifunctional Metamaterial Beam based on a Derived One- dimensional Piezoelectric Composite Finite Element”, ASCE Journalof Aerospace Engineering, Vol.31, No.6, 04018088.

  • G. Hu, L. Tang, R. Das, 2018, “Internally Coupled Metamaterial Beam for Simultaneous Vibration Suppression and Low Frequency Energy Harvesting”, Journal of Applied Physics, Vol.123, No.5, 055107.

  • G. Hu, L. Tang, R. Das, P. Marzocca, 2018, “A Two-Degree-of-Freedom Piezoelectric Energy Harvester with Stoppers for Achieving Enhanced Performance”, International Journal of Mechanical Sciences, Vol.149, 500-507.

  • G. Hu, L. Tang, R. Das, S. Gao, H. Liu, 2017, “Acoustic Metamaterials with Coupled Local Resonators for Broadband Vibration Suppression”, AIP Advances, Vol.7, No.2, 025211.

  • G. Hu, L. Tang, A. Banerjee, R. Das, 2017, “Meta-structure with Piezoelectric Element for Simultaneous Vibration Suppression and Energy Harvesting”, Journal of Vibration and Acoustics – Transactions of ASME, Vol.139, No.1, 011012.

Conference Papers

  • X. Li, G. Hu, H. Tang, Y. Zhu, J. Liang, 2021, “Dynamics Analysis of a Transient Plucking Energy Harvester towards Batteryfree Motion-Sensing System”, The 3rd International Conference on Vibration and Energy Harvesting Applications (VEH2021), 9-12 July, Xi’an, China.

  • X. Li, H. Tang, G. Hu, and J. Liang, 2021, "Live demo of a transient-motion-powered human motion detector", Proceedings of the 2021 IEEE International Symposium on Circuits and Systems (ISCAS2021), 23-26 May, Daegu, Korea.

  • C. Lan, G. Hu, L. Tang, Y. Yang, 2021, “Structural Design of a Topological-Metamaterial-Based Vibration Energy Harvester”, The 8th International Conference on Vibration Engineering (ICVE2021), 23-26 July, Shanghai, China.

  • G. Hu, L. Tang, Y. Yang, 2021, “Modal Analysis Based Approach for Estimating Bandgap Formation in Timoshenko Metamaterial Beams”, The 8th International Conference on Vibration Engineering (ICVE2021), 23-26 July, Shanghai, China.

  • G. Hu, J. Wang, L. Tang, Y. Yang, 2021, “Metamaterial Beam based Piezoelectric System for Galloping Energy Harvesting”, International Conference on Advances in Energy Harvesting Technology (ICAEHT), 18-20, March.

  • D. Liu, C. Lan, G. Hu, L. Tang, T. Yang, 2021, “A Nonlinear Neutralizer with Self-Adaptation Capability”, SPIE Smart Structures and Nondestructive Evaluation, Digital Forum, 7-10, March.

  • C. Lan, G. Hu, L. Tang, 2021, “A Topological-Metamaterial-Based Vibration Energy Harvester”, SPIE Smart Structures and Nondestructive Evaluation, Digital Forum, 7-10, March.

  • G. Hu, J.Wang, C. Lan, L. Tang, J. Liang, 2021, “Deep-Learning Assisted Finite Element Model of a Galloping Piezoelectric Energy Harvester”, SPIE Smart Structures and Nondes tructive Evaluation, Digital Forum, 7-10, March.

  • Y. Jian, G. Hu, L. Tang, K. Aw, 2021, “Fast Estimation of Bandgaps of Lattice Metamaterial Systems”, Acoustical Society of NZ conference, Auckland, New Zealand, 15-16, February.

  • Y. Jian, G. Hu, L. Tang, K. Aw, 2020, “Band Gap Formation in Metamaterial Beam with Torsional Local Resonators for Vibration Suppression”, ASME Conference on Smart Materials, Adaptive Structures and Intelligent Systems (SMASIS), Irvine, CA, USA, 14-16 September.

  • G. Hu, L. Tang, Y. Yang, 2020, “A Lumped Parameter Approach for Analysing a Metamaterial Beam based Piezoelectric Energy Harvester Around Fundamental Resonance”, ASME Conference on Smart Materials, Adaptive Structures and Intelligent Systems (SMASIS), Irvine, CA, USA, 14-16 September.

  • C. Lan, Y. Liao, G. Hu, L. Tang, 2020, “Power and electromechanical coupling of nonlinear piezoelectric vibration energy harvesters”, SPIE Smart Structures/NDE, Anaheim, CA, USA,26-30 April.

  • G. Hu, L. Tang, J. Liang, R. Das, 2020, “A Tapered Beam Piezoelectric Energy Harvester with Extended Tip Mass and Shunted to P-SSHI Interface”, SPIE Smart Structures/NDE, Anaheim, CA, USA, 26-30 April.

  • G. Hu, L. Tang, Y. Yang, 2020, “Acoustic Metamaterial Containing an Array of Helmholtz Resonators Coupled with MassLoaded Membranes”, SPIE Smart Structures/NDE, Anaheim, CA, USA, 26-30 April.

  • G. Hu, L. Tang, J. Xu, C. Lan, R. Das, 2019, “Vibration Suppression of Metamaterial with Local Resonators Coupled by Negative Stiffness Springs”, SPIE Smart Structures/NDE, Denver, CO, USA, 3-7 March.

  • G. Hu, B. Zhao, L. Tang, J. Liang, R. Das, 2018, “Modeling of partially covered piezoelectric energy harvester connected to SEH interface circuit”, International Conference on Noise and Vibration Engineering, Leuven, Belgium, 17-19 September.

  • G. Hu, L. Tang, R. Das, 2018, “Metamaterial Beam with Coupled Local Resonators for Enhancing Vibration Suppression and Energy Harvesting”, IUTAM Symposium on Acoustic/elastic Metamaterials, Their Design and Applications, Beijing, China, 5-8 June.

  • C. Lan, L. Tang, G. Hu, W. Qin, 2018, “Dynamics of a Bistable Coupled Dual-Beam Energy Harvester and its Experimental Validation”, SPIE Smart Structures/NDE, Denver, CO, USA, 4-8 March.

  • G. Hu, L. Tang, R. Das, K. Aw, 2018, “Internally Coupled Piezoelectric Metamaterial Beam with Multi-Functionalities”, SPIE Smart Structures/NDE, Denver, CO, USA, 4-8 March.

  • G. Hu, L. Tang, R. Das, 2017, “Metamaterial-Inspired Piezoelectric System with Dual Functionalities: Energy Harvesting and Vibration Suppression”, SPIE Smart Structures/NDE, Vol. 101641, 101641X, Portland, OR, USA, 25-29 March.

  • G. Hu, L. Tang, R. Das, 2016, “An Impact-Engaged Two-Degrees-of-Freedom Piezoelectric Energy Harvester for Wideband Operation”, International Symposium on Plasticity and Impact Mechanics (IMPLAST 2016), New Delhi, India, 11 -14 December.

Posters / Abstracts

  • G. Hu, L. Tang, R. Das, 2017, “Acoustic Metamaterials with Coupled Local Resonators for Broadband Vibration Suppression”, 4th International Conference on Phononic Crystals/Metamaterials, Phonon Transport/Coupling and Topological Phononics (Phononics 2017), Changsha, China, 4-9 June.

  • C. Lan, Y. Liao, G. Hu, L. Tang, 2018, “Maximum Power and Power Limit of a Monostable Piezoelectric Energy harvester”, 1st International Conference on Vibration and Energy Harvesting Application (VEH 2018), Shenzhen, China, 2-4 November.