Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Design and Characterization of a Non-Linear Variable Inerter in Vehicle Suspension System

View through CrossRef
Inerter is a two-terminal component in suspension system such that the force at the two terminals is directly proportional to the relative acceleration of these two points. Studies have shown that the inerter can provide satisfactory vibration isolation for a number of suspension applications, including train suspension, building suspension and vehicle suspension. In the context of vehicle suspension, the existing passive inerter has been shown to provide benefits to vehicle dynamics performance measures, such as ride comfort and road holding ability. However, a basic passive inerter has fixed characteristic, and hence its potential is limited. This study overcome this limitation by incorporating variable inertia in inerter flywheel, however its non-linear characteristic needs to be determined. The method of achieving variable inertia in inerter flywheel is through introduction of movable masses or sliders attached with springs into inerter flywheel. The change of moment of inertia is caused by position change of sliders due to centrifugal force when the flywheel is rotating. Results showed that the proposed variable inerter exhibits a non-linear force-acceleration relationship with respect to its operating rotational speed. A vehicle suspension system equipped with a variable inerter is also able to further reduce vertical vehicle body acceleration and vehicle’s dynamic tire load when compared with vehicle suspension system without inerter and equipped with a passive inerter, which indirectly relates to a better vehicle ride and handling performance improvements. Hence, it can be proved that the proposed variable inerter is better than a passive inerter and is able to provide better ride comfort and road holding ability to a vehicle.
Title: Design and Characterization of a Non-Linear Variable Inerter in Vehicle Suspension System
Description:
Inerter is a two-terminal component in suspension system such that the force at the two terminals is directly proportional to the relative acceleration of these two points.
Studies have shown that the inerter can provide satisfactory vibration isolation for a number of suspension applications, including train suspension, building suspension and vehicle suspension.
In the context of vehicle suspension, the existing passive inerter has been shown to provide benefits to vehicle dynamics performance measures, such as ride comfort and road holding ability.
However, a basic passive inerter has fixed characteristic, and hence its potential is limited.
This study overcome this limitation by incorporating variable inertia in inerter flywheel, however its non-linear characteristic needs to be determined.
The method of achieving variable inertia in inerter flywheel is through introduction of movable masses or sliders attached with springs into inerter flywheel.
The change of moment of inertia is caused by position change of sliders due to centrifugal force when the flywheel is rotating.
Results showed that the proposed variable inerter exhibits a non-linear force-acceleration relationship with respect to its operating rotational speed.
A vehicle suspension system equipped with a variable inerter is also able to further reduce vertical vehicle body acceleration and vehicle’s dynamic tire load when compared with vehicle suspension system without inerter and equipped with a passive inerter, which indirectly relates to a better vehicle ride and handling performance improvements.
Hence, it can be proved that the proposed variable inerter is better than a passive inerter and is able to provide better ride comfort and road holding ability to a vehicle.

Related Results

Active suspension using a PID controller with an inerter device
Active suspension using a PID controller with an inerter device
This article is dedicated to a thorough investigation of the behavior of an active suspension system that incorporates the PID controller in a vehicle quarter, adding an inerter co...
Seismic response of structures with friction pendulum inerter system (FPIS) under near-fault earthquakes
Seismic response of structures with friction pendulum inerter system (FPIS) under near-fault earthquakes
Near-fault ground motions with high acceleration peaks and long-period velocity pulses pose a serious threat to the reliability of engineering structures. To reduce the displacemen...
Broadband and Enhanced Energy Harvesting Using Inerter Pendulum Vibration Absorber
Broadband and Enhanced Energy Harvesting Using Inerter Pendulum Vibration Absorber
Abstract Inerter-based vibration energy harvesters (VEHs) have been widely studied to harvest energy from large-scale structural vibrations. Recently, there have bee...
Data-Driven Nonlinear Iterative Inversion Suspension Control
Data-Driven Nonlinear Iterative Inversion Suspension Control
The commercial operation of the maglev train has strict requirements for the reliability and safety of the suspension control system. However, due to a large number of unmodeled dy...
Design
Design
Conventional definitions of design rarely capture its reach into our everyday lives. The Design Council, for example, estimates that more than 2.5 million people use design-related...
Vehicle Theft Detection and Locking System using GSM and GPS
Vehicle Theft Detection and Locking System using GSM and GPS
A vehicle tracking system is very useful for tracking the movement of a vehicle from any location at any time. An efficient vehicle tracking system is designed and implemented for ...
Quarter Car Suspension System Modelling, Simulation, And Performance Analysis under Dynamic Conditions
Quarter Car Suspension System Modelling, Simulation, And Performance Analysis under Dynamic Conditions
Abstract The motor vehicle is constructed up of numerous systems. The suspension system is one of them. The primary purposes of the automotive suspension system are to effe...
Modeling and simulation on interaction between pedestrians and a vehicle in a channel
Modeling and simulation on interaction between pedestrians and a vehicle in a channel
The mixed traffic flow composed of pedestrians and vehicles shows distinct features that a single kind of traffic flow does not have. In this paper, the motion of a vehicle is desc...

Back to Top