1. Field of the Invention
This invention relates to systems for monitoring a vehicle, and, more particularly, to a system and method for monitoring a vehicle by generating a variety of monitoring mechanisms according to the speed of the vehicle.
2. Description of Related Art
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Therefore, how to design a method for monitoring vehicle in movement and a system thereof that take safety considerations from all aspects shall be an important issue in the art.
In view of the above-mentioned problems of the prior art, it is a primary objective of the present invention to provide a vehicle monitoring system in order to provide safety considerations from all aspects for monitoring a vehicle in movement. Therefore, any moving or static object can be detected as well in order to avoid collision. The lane departure warning voluntarily warns under the conditions of the line of visual of a driver being away from the front direction of the vehicle, such as tired driving, bowing to pick up or see something, to cause lane departure.
It is another objective of the present invention to provide a system and method for monitoring a vehicle by generating a variety of monitoring mechanisms according to the speed of the vehicle.
The present invention provides a system for monitoring a vehicle, comprising a digital signal processor, a plurality of monitoring device and an event recorder, wherein the digital signal processor includes a measuring module that measures the speed of a vehicle and generates measurement data; and an analyzing module that analyzes the measurement data to obtain a monitoring instruction corresponding to the speed of the vehicle, at least one of which is actuated by the monitoring instruction output by the digital signal processor to generate monitoring data, and the event recorder receives the monitoring data and displays and records the monitoring data.
The present invention further provides a method for monitoring a vehicle, comprising: measuring the speed of the vehicle and generating measurement data; analyzing the measurement data to obtain a monitoring instruction corresponding to the speed of the vehicle; actuating at least a monitoring device according to the monitoring instruction to generating monitoring data; and receiving the monitoring data output by the at least a monitoring device and displaying and recording the monitoring data.
Compared with the prior art, the present invention monitors a vehicle by generating a variety of monitoring mechanism according to the speed of the vehicle, and takes safety considerations from all aspects.
The invention can be more fully understood by reading the following detailed description of the preferred embodiments, with reference made to the accompanying drawings, wherein:
The following illustrative embodiments are provided to illustrate the disclosure of the present invention, these and other advantages and effects can be apparently understood by those in the art after reading the disclosure of this specification. The present invention can also be performed or applied by other different embodiments. The details of the specification may be on the basis of different points and applications, and numerous modifications and variations can be devised without departing from the spirit of the present invention.
Referring to
The digital signal processor 11 includes a measuring module 112 and an analyzing module 114. The measuring module 112 measures the speed of the vehicle and generates measurement data. The analyzing module 114 analyzes the measurement data to obtain a monitoring instruction corresponding to the speed of the vehicle. For instance, when the speed of the vehicle is less than 10 kilometers per hour, the measuring module 112 measures the speed of the vehicle and generates measurement data that indicate that “the speed is 10 kilometers per hour and the vehicle is not reversing,” for example. The analyzing module 114 analyzes the measurement data to obtain an monitoring instruction corresponding to the speed of the vehicle. In an embodiment, the monitoring instruction actuates a front camera, a front sonar sensor, a parking line detection device and/or an around view monitoring device.
One of the plurality of monitoring devices 13 is actuated according to the monitoring instruction of the digital signal processor 11 to generate monitoring data. For example, the digital signal processor 11 outputs the monitoring instruction to the monitoring device and actuates the monitoring device to generate the monitoring data, including a variety of video contents and detection data.
The event recorder 12 receives the monitoring data output by the at least a monitoring device of the monitoring devices and displays and records the monitoring data. For example, the event recorder 12 receives the above monitoring data output by the above monitoring device, and the monitoring data are displayed on the display and recorded in a storage.
The digital signal processor 11 further comprises a processing module 116. The processing module 116 receives the monitoring data output by at least a monitoring device of the monitoring devices, and provides a warning signal or addresses an event corresponding to the monitoring data. For example, the processing module 116 receives the above monitoring data output by the above monitoring device, and processes according to the monitoring data to provide a warning signal or address an event corresponding to the monitoring data.
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In an embodiment, when a vehicle is actuated, the digital signal processor 21 and the event recorder 22 are also actuated immediately. The digital signal processor 21 manages all conditions of the moving vehicle and controls the event recorder 22 to record the conditions (which is detailed in
Refer to
The method begins in step S301, in which the speed of the vehicle is measured and measurement data are generated. The method proceeds to step S303.
In step S303, the measurement data are analyzed to obtain monitoring instruction corresponding to the speed of the vehicle. The method proceeds to step S305.
In step S305, at least a monitoring device is actuated according to the monitoring instruction to generate monitoring data. The method proceeds to step S307.
In step S307, the monitoring data output by the at least a monitoring device are received and the monitoring data are displayed and recorded.
Prior to step S301, a digital signal processor and an event recorder installed in the vehicle are actuated.
After step S307, the monitoring data output by the at least a monitoring device are received and a warning signal is provided or an event corresponding to the monitoring data is addressed.
Before the digital signal processor and the event recorder installed in the vehicle are turned off, the method keep executing step S301.
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Given the above, it is understood that the system for monitoring a vehicle according to the present invention monitors all the events that the vehicle may encounter from leaving a parking lot, moving on the road and stopping at another parking lot, by mounting a modularized monitoring system onto the vehicle. When the vehicle is actuated, the digital signal processor 11 and the event recorder 12 are also actuated immediately, to begin to monitor and address the events that the vehicle may encounter thereafter. The events are described in the following paragraphs.
Event One: When the vehicle is just actuated and the speed of the vehicle is less than 10 km/hr, the vehicle has to move forward and backward to leave a parking lot. When the vehicle is reversing, the moving object detection device 231 detects moving objects around the vehicle, especially the object moving toward the vehicle. When the moving object detection device 231 detects such objects, the digital signal processor 21 provides necessary instructions to address the events. The rear sonar sensor 232 senses objects behind the vehicle. If the rear sonar sensor 232 senses that the objects are close to the vehicle, the digital signal processor 21 provides necessary instructions to address the events, such as providing a warning sound. The parking line detection device 233 detects of the edge of a traffic island. When the vehicle is moving to a parking lot and is close to the edge of a traffic island, the parking line detection device 233 provides a warning signal via the digital signal processor 21. The around view monitoring device 234 detects objects around the vehicle when the vehicle is reversing, to detect vehicles, kids, people and animals that enter into a moving range of the reversing vehicle. When the around view monitoring device 234 detects some objects around the reversing vehicle, the digital signal processor 21 provides a warning signal and addresses the events. When the vehicle moves forward again, the front camera 235 is actuated to detect objects in front of the vehicle. If a vehicle ahead of the forward moving vehicle is going to be hit by the forward moving vehicle, such an event will be displayed on the display installed in the vehicle. The front sonar sensor 236 detects a vehicle in front of the forward moving vehicle, and measures a distance therebetween. If the vehicle is very close to the forward moving vehicle, the digital signal processor 21 provides a warning signal. The parking line detection device 233 and the around view monitoring device 234 have functions as described previously.
Event Two: When the vehicle is just actuated and no object exists at a distance behind the parking lot, the speed of the vehicle can be greater than 10 km/hr and less than 30 km/hr, and the around view monitoring device 234 will be actuated immediately, to detect an environment around the vehicle and whether other vehicles, kids, people or animals enter into an area where the reversing vehicle is going to approach. If some moving objects approach the vehicle, the digital signal processor 21 provides a warning signal and addresses such events accordingly. When the vehicle is moving forward, the around view monitoring device 234 is still actuated, in order to ensure that the vehicle safely interacts with ambient environment.
Event Three: When the speed of the vehicle is greater than 30 km/hr, indicating that the vehicle is accelerating and getting into a dangerous state, the front camera 235, the left-side camera 237, the right-side camera 237a, the rear camera 237b and the mirror camera 237c are all actuated, to display the environments in front, rear, left and right of the vehicle. The front sonar sensor 236 is also actuated, to detect an environment distant from the vehicle. If some objects are detected, the digital signal processor 21 provides a warning signal and addresses such events.
Event Four: When the speed of the vehicle is greater than 60 km/hr, indicating that the vehicle is moving at a high speed, the lane departure warning device 238 and the blind spot detection system 239 are actuated, to detect whenever the vehicle is off the lane or some objects are very close to the vehicle and cannot be monitored by the driver's eyes or the front camera 235, the left-side camera 237, the right-side camera 237a, the rear camera 237b, or the mirror camera 237c, and enable the digital signal processor 21 to provide a warning signal and address corresponding events.
The present invention provides techniques that have thorough monitoring and troubleshooting to the plural conditions of the movement, acceleration, deceleration, and parking (the second stationary status) while the vehicle starts to move in a parking space at the first stationary status. Further, any moving or static object can be detected as well in order to avoid collision. The lane departure warning voluntarily warns under the conditions of the line of visual of a driver being away from the front direction of the vehicle, such as tired driving, bowing to pick up or see something, to cause lane departure. Therefore, the present invention takes the considerations from all aspects, such as from the first stationary status to the second stationary status, the all equipped devices, etc. Accordingly, the present invention monitors a vehicle by generating a variety of monitoring mechanisms according to the speed of the vehicle.
The foregoing descriptions of the detailed embodiments are only illustrated to disclose the features and functions of the present invention and not restrictive of the scope of the present invention. It should be understood to those in the art that all modifications and variations according to the spirit and principle in the disclosure of the present invention should fall within the scope of the appended claims.
Number | Date | Country | Kind |
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101115327 | Apr 2012 | TW | national |