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The phrase "a steering control for" is correct and usable in written English.
It can be used when describing a device or mechanism that allows for the direction or guidance of a vehicle or machine.
Example: "The new model features a steering control for enhanced maneuverability in tight spaces."
Alternatives: "a steering mechanism for" or "a steering system for".
Exact(1)
This application requires a steering control for simulating a realistic nonlinear four-wheel vehicle model and for performing a speed extrapolation test to evaluate the physical limits of a vehicle in a bend.
Similar(59)
In this article, a robust steering control for the last phase of the rolling process in a hot strip mill is proposed.
A nested PID steering control for autonomous vehicles equipped with artificial vision systems is designed so that the driver can override the automatic lane-keeping action and obtain a complete control of the vehicle lateral dynamics without any switching strategy.
Based on the analyses, a new method which showed the information on the recommended timing and angles of steering control for driving along the recommended route, in addition to the recommended route shown on the in-vehicle display, was proposed and evaluated.
When subjects took the diphenhydramine, they strayed out of their lanes more often and had worse steering control, for instance, than when they took the fexofenadine, which is a non-sedating antihistamine, or after drinking alcohol.
Steering control for vehicle lane keeping has attracted significant attention from both automotive industries and researchers.
The problem of automatic steering control for electric automotive vehicles is considered.
A four-wheels configuration with slip steering was chosen; to compare this solution with the more conventional strategy based on steering wheels, simulations were performed on some trajectories computed through the well known 'potential' method, using both slip steering and conventional steering control, for different vehicle speeds.
We present an adaptive steering control design for uncertain cargo ship dynamics subject to input constraints while avoiding performance compromises under changing environmental conditions.
We present an adaptive steering control design for uncertain ship dynamics subject to input constraints while avoiding performance compromises under changing environmental conditions.
This paper presents two different kinds of steering control strategies for a system of extended nonholonomic double integrator, which is an example of nonholonomic control systems with drift.
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CEO of Professional Science Editing for Scientists @ prosciediting.com