Auto Assists Car Safety Car Safety: Stability Control The automobile industry is one of the sectors experiencing rapid technological advancement. As competition amongst vehicle manufactures increases, the demand for classy and automatic cars equally takes precedence. Statistical records indicate that more than half of the drivers would prefer their vehicles...
Auto Assists Car Safety Car Safety: Stability Control The automobile industry is one of the sectors experiencing rapid technological advancement. As competition amongst vehicle manufactures increases, the demand for classy and automatic cars equally takes precedence. Statistical records indicate that more than half of the drivers would prefer their vehicles fitted with auto assist devices. These devices are of different types and serve different purposes.
They include aspects like notifying that a car or person is in a blind spot, collision-warning system that sounds an alarm in time for the driver to consider braking, and cruise control that senses the distance between two cars and automatically slows down when the car ahead slows. It also includes voice-activated cell phone dialing, texting, and self-parking features. This study seeks to discuss and analyze some of these automatic features, including auto-parking, cruise control, and rear view camera.
The main objective is to understand their principles of operation coupled with their pros and cons. Auto Parking Parallel parking is an experience that many drivers would love to avoid as much as they can. This is evident in small spaces where parking space is limited and, squeezing the car into a tiny space requires indispensable driving skills. It is rarely an easy task as it can lead to traffic tie-ups and frazzled nerves.
Luckily, with the level of technological advancements, cars currently have the ability of "parking themselves" by guiding the driver. This real technology allows the driver to press a button, sit back, and relax as the car maneuvers to a perfect parking location. In fact, this technology can successfully be applied for collision avoidance system and eventually, self-driving automobiles (Stolarz, 2005). Automakers have embarked on marketing of self-parking cars thanks to the ever-rising sense of consumer demand.
Parallel parking stands out as one of most dreaded parts of the driver's test, and it is inevitable for any person who desires to be a driver at one point of their lives. People residing in big cities may be forced to do this exercise every day. Eliminating the complexity and uncertainty is undoubtedly an experience to behold. Self-parking cars not only saves the drivers from parking ordeal, but it also helps to solve some of parking and traffic challenges in heavily populated areas.
Evidently, parking a car is often subject to the skills that a driver possesses. Contrary to this condition, self-parking cars can fit into relatively smaller space that a majority of the drivers can manage on their own. Evidently, the problem of finding a parking space is eliminated: this permits the same number of cars to occupy fewer spaces (Sculle, & Jakle, 2004). In most cases, paralleling parking results in a blockage of a traffic lane for some considerable time. This situation is even.
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