4.6 Review

Advances in spacecraft micro-vibration suppression methods

Related references

Note: Only part of the references are listed.
Article Engineering, Aerospace

Stringent three-axis stability control for novel non-contact satellite using embedded second-order noise estimator

He Liao et al.

Summary: This paper presents a design framework and controller scheme for satellite stability performance, describing and applying them to the payload module and bus module, and hardware experiments were conducted to verify the effectiveness and feasibility of the methods. The results show superior and reliable performance with low computational cost.

ADVANCES IN SPACE RESEARCH (2022)

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The Near-Infrared Spectrograph (NIRSpec) on the James Webb Space Telescope IV. Capabilities and predicted performance for exoplanet characterization

S. M. Birkmann et al.

Summary: The NIRSpec on the JWST is a versatile instrument that offers a wide range of spectroscopy capabilities, allowing scientists to study various science themes. Its capabilities in time-series observations and spectroscopy of exoplanets will provide unprecedented sensitivity and precision.

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Article Engineering, Aerospace

A Contactless Micro-Vibration Isolator Using the Flux Pinning Effect for Space Telescopes

Takuma Shibata et al.

Summary: Space telescopes are used to acquire images for understanding planets and the universe. The proposed contactless micro-vibration isolator using the flux pinning effect aims to suppress internal disturbances such as vibration and heat for future space observation missions by maintaining relative distance and attitude between a type II superconductor and a magnet. The isolator consists of permanent magnets, type II superconductors, and metal plates, and its feasibility is confirmed numerically.

JOURNAL OF SPACECRAFT AND ROCKETS (2022)

Article Engineering, Aerospace

Study on Damping Behavior of Electromagnetic Particle Dampers with a Ferromagnetic End Cover in Weightless Environments

Chao Zhang et al.

Summary: Particle damping technology is widely used for structural vibration absorption in normal gravity environments. However, its effectiveness decreases in weightless environments. To overcome this, an electromagnetic particle damper with a ferromagnetic end cover is introduced, providing damping similar to gravity. The study establishes a three-dimensional model and analyzes the effect of various factors on the damper's performance in weightless environments.

MICROGRAVITY SCIENCE AND TECHNOLOGY (2022)

Article Instruments & Instrumentation

Characteristic analysis under small-stroke and medium-high frequency of magneto-rheological damper with pressure controlled mechanism

X. M. Dong et al.

Summary: This paper proposes, analyzes, and tests a compact MR damper with a pressure controlled mechanism. By establishing a dynamic physic model and obtaining a critical model, the output characteristics of the damper under different excitations can be predicted. The experimental results show that increasing the applied current and pre-compression can improve the damping force, dynamic stiffness, and energy dissipation performance.

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Compound Attitude Maneuver and Collision Avoiding Control for a Novel Noncontact Close-Proximity Formation Satellite Architecture

He Liao et al.

Summary: This paper presents a compound control strategy for achieving attitude maneuver performance in the noncontact close-proximity formation satellite architecture. The strategy includes variable-parameter sliding mode control for the payload module and collision avoiding control with disturbance observer-based feedforward compensation to ensure synchronization of the separated modules within the small air clearance constraint of the noncontact Lorentz actuator. Experimental verification is conducted using a physical air-floating platform.

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Flux Pinning Docking Interfaces in Satellites Using Superconducting Foams as Trapped Field Magnets

Michael R. Koblischka et al.

Summary: This article introduces the potential applications of trapped field magnets in Flux-Pinning Docking Interfaces (FPDI) in satellite systems. Compared to traditional FPDI, TF-FPDI has stronger magnetic field strength and lighter weight, and can be used for both chasing and docking tasks. The use of superconducting foams as superconducting material can further reduce the system weight.

IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY (2022)

Article Materials Science, Multidisciplinary

The dynamics analysis of a magnetic fluid shock absorber with different inner surface materials

Yanwen Li et al.

Summary: The study introduced a novel magnetic fluid shock absorber to reduce the vibration of long overhanging structures on spacecraft in weightless environment. By investigating the influence of different inner surface materials on damping performance, the research provided important insights for the safety of such spacecraft. The experiments confirmed that capillary force had a significant impact on fluid resistance and chemigum showed better damping efficiency compared to fluororubber.

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Development of Active Microvibration Isolation System for Precision Space Payload

Yuchen Qian et al.

Summary: An active microvibration isolation system was developed for precision space payload, utilizing eight vibration isolation modules to achieve microvibration isolation. A hybrid control method involving feedback and feedforward controllers successfully reduced microvibrations from the level of mg to mu g.

APPLIED SCIENCES-BASEL (2022)

Article Engineering, Aerospace

Drag-free design based on Embedded Model Control for TianQin project

Chunyu Xiao et al.

Summary: With the ability to detect low-frequency gravitational waves (GWs), space-borne detectors will be crucial in future exploration of the universe. The TianQin project in China aims to detect millihertz GWs using a triangular constellation of three spacecraft. The design of this GW detector relies on a challenging drag-free control technology to suppress non-gravitational disturbances. A model-based control methodology, the Embedded Model Control (EMC), is proposed for the two-degree-of-freedom drag-free control along the sensitive axes. Numerical simulations validate the performance and stability of the control system.

ACTA ASTRONAUTICA (2022)

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Pointing, acquisition, and tracking for the TBIRD CubeSat mission: system design and pre-flight results

Kathleen M. Riesing et al.

Summary: The Terabyte InfraRed Delivery (TBIRD) program aims to establish a high-speed communication link between a nanosatellite and a ground station. The integration of the TBIRD payload with the satellite bus has been successful, as evidenced by pre-flight testing. With fine pointing corrections provided by its quad sensor, TBIRD can achieve accurate pointing and tracking.

FREE-SPACE LASER COMMUNICATIONS XXXIV (2022)

Article Engineering, Multidisciplinary

Vibration isolation and energy harvesting integrated in a Stewart platform with high static and low dynamic stiffness

Ze-Qi Lu et al.

Summary: An electromagnetic Stewart platform with high static and low dynamic stiffness is explored to reduce vibration in six degrees of freedom (6-DOFs) and harvest energy simultaneously. The use of stiffness nonlinearity improves vibration isolation efficiency, leading to lower frequencies for vibration isolation and considerable power output. Analytical and numerical results both support the extension of vibration isolation frequency band and reduced vibration transmissibility with increased energy harvesting.

APPLIED MATHEMATICAL MODELLING (2021)

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Research on dynamic stiffness of the damping element in bellows-type fluid viscous damper by a simplified model

Xiaolei Jiao et al.

Summary: This paper proposes a simplified model of the damping element in a bellows-type fluid viscous damper to analyze hydraulic stiffness in the damper. The damper shows stable hydraulic stiffness in the medium- and high-frequency domains, and excessive dynamic stiffness in the high-frequency domain can cause poor vibration isolation performance. Adding compensation bellows may be an effective solution to improve vibration isolation performance.

ENGINEERING COMPUTATIONS (2021)

Article Thermodynamics

A quasi-zero-stiffness device capable of vibration isolation and energy harvesting using piezoelectric buckled beams

Chaoran Liu et al.

Summary: A novel quasi-zero-stiffness (QZS) device is proposed for vibration isolation and energy harvesting by converting vibrational energy into electrical energy and reducing energy transmitted to the vibration receiver. Experimental results demonstrate the device's advantages of low isolation frequency and high energy output.

ENERGY (2021)

Article Engineering, Mechanical

Research on nonlinear stiffness and damping of bellows-type fluid viscous damper

Xiaolei Jiao et al.

Summary: A simplified model was proposed in this study to extract nonlinear stiffness and damping of bellows-type fluid viscous damper under different design parameters. The results showed that the velocity term is the cause of nonlinear damping and stiffness.

NONLINEAR DYNAMICS (2021)

Article Engineering, Aerospace

Micro-vibration suppression methods and key technologies for high-precision space optical instruments

Lin Li et al.

Summary: Micro-vibration caused by disturbance sources onboard spacecraft can severely degrade the working environment of high-precision space optical instruments (HPSOIs) in orbit. Notable micro-vibration suppression methods have been developed in recent decades, mainly focusing on disturbance source suppression, payload isolation, and transfer path suppression. Passive isolation techniques are commonly used in aerospace engineering, while active isolators are proposed for dealing with low-frequency vibrations in spacecraft. Additionally, emerging advanced suppression methods utilizing the advantages of IOS have also been reported.

ACTA ASTRONAUTICA (2021)

Article Materials Science, Multidisciplinary

Design of self-supporting lattices for additive manufacturing

Hao Zhou et al.

Summary: This study proposes an innovative design strategy for self-supporting lattice units that considers the geometric constraints of additive manufacturing, deriving the elastic constitutive relation using the nodal displacement method. This design strategy has been employed in the design of novel ultra-light spacecraft structures.

JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS (2021)

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Ground performance tests and evaluation of RF ion microthrusters for Taiji-1 satellite

Jian-Wu He et al.

Summary: The Taiji-1 satellite is a test satellite for China's space gravitational wave detection project, incorporating key technologies like spacecraft drag-free control. In order to improve microgravity levels on spacecraft, a high-precision and continuously adjustable micronewton-level thrust was needed, leading to the development of a micronewton-level RF ion propulsion system.

INTERNATIONAL JOURNAL OF MODERN PHYSICS A (2021)

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Key technologies analysis and design of ultra-clean & ultra-stable spacecraft for gravitational wave detection

Kun Chen et al.

Summary: The observation of gravitational waves has allowed humans to explore the origin, formation, and evolution of the universe, going beyond the general theory of relativity. The groundbreaking discovery of gravitational waves by the Laser Interferometer Gravitational-Wave Observatory has provided a new way of observation, particularly in the field of space detection. Key technologies such as space laser interferometry, drag-free control, micro thrusters, ultra-clean and ultra-stable spacecraft are crucial for successful spaceborne gravitational wave detection.

INTERNATIONAL JOURNAL OF MODERN PHYSICS A (2021)

Article Automation & Control Systems

A non-contact spacecraft architecture with extended stochastic state observer based control for gravity mission

Liu Sheng et al.

Summary: This study introduces a novel non-contact spacecraft architecture for disturbance rejection control of a gravity satellite, utilizing precise actuators and an extended stochastic state observer to simplify controller design and tuning for the payload module. Extensive numerical simulations validate the feasibility and effectiveness of the proposed approach.

JOURNAL OF SYSTEMS ENGINEERING AND ELECTRONICS (2021)

Article Acoustics

A dual-functional metamaterial for integrated vibration isolation and energy harvesting

Ze-Qi Lu et al.

Summary: This paper proposes a dual-functional metamaterial for integrated low-frequency vibration isolation and energy harvesting, achieved by implanting a rolling-ball with coils into a spherical magnetic cavity. Numerical results demonstrate that a cavity mass arrayed beam with a periodic array of nonlinear energy harvesters has more and wider low-frequency band-gaps compared to traditional metamaterials.

JOURNAL OF SOUND AND VIBRATION (2021)

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Development of a variable stiffness magnetorheological damper with self-powered generation capability

Xiaojing Zhu et al.

JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES (2020)

Article Physics, Applied

Effect of Composite Superconductor Structure on Dynamic Properties of Superconducting Interface and Formation in Space Application

Mingliang Bai et al.

JOURNAL OF SUPERCONDUCTIVITY AND NOVEL MAGNETISM (2020)

Article Engineering, Mechanical

Design and experiment of dual micro-vibration isolation system for optical satellite flywheel

Shanbo Chen et al.

INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES (2020)

Article Acoustics

Integrated vibration isolation and energy harvesting via a bistable piezo-composite plate

Ze-Qi Lu et al.

JOURNAL OF VIBRATION AND CONTROL (2020)

Article Mathematics, Applied

A hybrid multi-degree-of-freedom vibration isolation platform for spacecrafts by the linear active disturbance rejection control

Weichao Chi et al.

APPLIED MATHEMATICS AND MECHANICS-ENGLISH EDITION (2020)

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The first round result from the TianQin-1 satellite

Jun Luo et al.

CLASSICAL AND QUANTUM GRAVITY (2020)

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Vibration isolation by novel meta-design of pyramid-core lattice sandwich structures

Zheng-Yang Li et al.

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Design and optimization of the micro -vibration isolation system for large space telescope

Chao Qin et al.

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Enhancing the dissipative properties of particle dampers using rigid obstacle-grids

C. Gnanasambandham et al.

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Perfect collocation using self-sensing electromagnetic actuator: Application to vibration control of flexible structures

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A dual-purpose vibration isolator energy harvester: Experiment and model

S. M. Mandi Mofidian et al.

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Development of Hybrid Vibration Isolator by Inertial Type Actuator and Wire Mesh Mount

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Analysis and optimal design of a vibration isolation system combined with electromagnetic energy harvester

Uchenna Diala et al.

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Energy harvesting via nonlinear energy sink for whole-spacecraft

Zhang YeWei et al.

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Attitude Jitter Compensation for Remote Sensing Images Using Convolutional Neural Network

Zhaoxiang Zhang et al.

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Modeling and collision avoidance control for the Disturbance-Free Payload spacecraft

Hongjie Yang et al.

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Advanced Space-based Solar Observatory (ASO-S): an overview

Wei-Qun Gan et al.

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A new design of drag-free and attitude control based on non-contact satellite

He Liao et al.

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Hongye Zhang et al.

IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY (2019)

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Investigating the dissipative effects of liquid-filled particle dampers using coupled DEM-SPH methods

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Capability of Fengyun-3D Satellite in Earth System Observation

Zhongdong Yang et al.

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Gao Rui-hong et al.

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LISA Pathfinder platform stability and drag-free performance

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Development of a Magnetorheological Damper of the Micro-vibration Using Fuzzy PID Algorithm

Lei Zhang et al.

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Simulation and experiment on the performance of a passive/active micro-vibration isolator

Chaoxin Wang et al.

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Vibration Tests of 3D Printed Satellite Structure Made of Lattice Sandwich Panels

Xiaoyu Zhang et al.

AIAA JOURNAL (2018)

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Linearized Dynamics of General Flux-Pinned Interfaces

Frances Zhu et al.

IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY (2018)

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Nonlinear dynamic characteristics of a micro-vibration fluid viscous damper

Xiaolei Jiao et al.

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High-frequency attitude jitter correction for the Gaofen-9 satellite

Guo Zhang et al.

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Design and analysis of strut-based lattice structures for vibration isolation

Wahyudin P. Syam et al.

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Collision modeling and two-echelon collaborative control of non-contact ultra-quiet Stewart spacecraft

He Liao et al.

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Application of RBF neural network in prediction of particle damping parameters from experimental data

P. Veeramuthuvel et al.

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Self-Sensing Electromagnetic Transducer for Vibration Control of Space Antenna Reflector

Bo Yan et al.

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Modeling and experimental study of a honeycomb beam filled with damping particles

Nazeer Ahmad et al.

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A 2-collinear-DoF strut with embedded negative-resistance electromagnetic shunt dampers for spacecraft micro-vibration

Alessandro Stabile et al.

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Experimental Validation of Fly-Wheel Passive Launch and On-Orbit Vibration Isolation System by Using a Superelastic SMA Mesh Washer Isolator

Seong-Cheol Kwon et al.

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Coupling characteristics analysis for the disturbance free payload spacecraft

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Co-Design of Strain-Actuated Solar Arrays for Spacecraft Precision Pointing and Jitter Reduction

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Axial Force and Passive Stability of a Flux Pinned Space System

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