1. Field of the Invention
The present invention relates to a navigation apparatus having three-dimensional gravity sensor and a navigation method thereof, and more particularly to a navigation apparatus having three-dimensional gravity sensor and a navigation method thereof capable of sensing three-dimensional acceleration and storing road condition information.
2. Description of the Related Art
Lots of navigation apparatuses have functions of planning routes, recommending routes and searching roads. The accuracy of the conventional navigation apparatus tends to be influenced by worse receiving of GPS signals. Thus, higher level navigation apparatuses may be equipped with gyroscopes to help positioning in order to continuously perform navigation and positioning while receiving no GPS signals.
The gyroscope is used for figuring out instantaneous relative acceleration, relative direction and angle variations by detecting movement status of objects such as velocity, braking or turning according to the law of inertia. The gyroscope can help the navigation system to exactly detect the movement velocity and direction of vehicles by calculation processing, such as Taiwan patent number 200811419.
Although the conventional gyroscope can calculate the movement velocity and direction of vehicles, it is unable to record or remind drivers to determine whether road conditions, such as roughness, unevenness, over-curvature or crowded road sections, are avoided. The drivers are also unable to receive warning in advance or avoid specific road sections while facing the specific road sections.
As far as market requirements are concerned, designing a navigation apparatus having a three-dimensional gravity sensor and navigation method thereof to have efficacy of avoiding specific road sections or warning reminder except that it effectively senses three-dimensional acceleration and records road conditions has become an important issue in market applications.
In view of the shortcomings of the prior art, the inventor(s) of the present invention based on years of experience in the related industry to conduct extensive researches and experiments, and finally developed a navigation apparatus having a three-dimensional gravity sensor and navigation method thereof as a principle objective to overcome the problems that are unable to record specific road conditions, send warning messages and re-plan navigation routes in route information in the prior art.
To achieve the foregoing objective, a navigation apparatus is provided and comprises an input module, a sensing module, a processing module and a storage module. The input module is used for inputting a starting point, a destination and a specific road section to be avoided or warned. The sensing module senses a three-dimensional acceleration. The processing module calculates road condition information based upon the three-dimensional acceleration. The storage module stores the road condition information and map information.
The navigation apparatus further comprises a signal module. The signal module sends a signal based upon the road condition information.
The road condition information further comprises specific road condition information.
The specific road condition information comprises roughness, slope rise, over-curvature or crowded road section.
The input module is used for inputting a command of determining whether the specific road section is to be avoided or warned.
The processing module plans route information based upon the starting point, the destination and the specific road section to be avoided or warned and map information.
The navigation apparatus further comprises a display module. The display module displays the road condition information and the route information.
To achieve the foregoing objective, a navigation method applied to a navigation apparatus having an input module, a sensing module, a processing module and a storage module is also provided and comprises the following steps: using the input module to input a starting point, a destination and a specific road section to be avoided or warned; sensing a three-dimensional acceleration through the sensing module; utilizing the processing module to calculate road condition information based upon the three-dimensional acceleration; and storing the road condition information and map information through the storage module.
The method further comprises a step of using a signal module to send a signal based upon the road condition information.
The method further comprises a step of using the signal module to send the signal based upon specific road condition information.
The method further comprises a step of inputting a command of determining whether the specific road section is avoided or warned through the input module.
The method further comprises a step of planning route information based upon the starting point, the destination and the specific road section to be avoided or warned and map information.
The method further comprises a step of displaying the road condition information and the route information through a display module.
The navigation apparatus having a three-dimensional gravity sensor and navigation method thereof of the invention have at least one or more advantages as the following:
The foregoing and other technical characteristics of the present invention will become apparent with the detailed description of the preferred embodiments and the illustration of the related drawings.
When the navigation apparatus 10 is shaken, rocked or vibrated due to changed road condition, the sensing module 12 can sense the three-dimensional acceleration generated by the shaking, rock or vibration corresponding to every kind of road condition.
It should be noted that in step S14, results calculated and sensed by step S13 and step S12 are stored in the storage module to provide backup information while the user passes through the same road section or confronts the same road condition information next time. Finally, as shown in step S16, displaying the road condition information through a display module.
According to the first embodiment, the invention further provides a second embodiment for detail depiction.
It should be noted that in step S25, the processing module plans the route information based upon a GPS signal, the road condition information and the map information inputted and stored by the input module and the storage module.
While the user determines to avoid the specific road sections, as shown in step S26 to step 28, step S26: sensing a three-dimensional acceleration through the sensing module; step S27: storing the road condition information and the map information through the storage module; and step S28: displaying the route information through the display module.
Therefore, while moving along the route information, the three-dimensional acceleration and the newest road condition are sensed and stored respectively through the sensing module of step S26 and the storage module of step S27.
The present invention further provides a third embodiment for further illustration, besides the first and the second embodiment.
S31: using an input module to input a starting point and a destination;
S32: using the input module to input a command of not avoiding a specific road section;
S33: reading map information through a storage module; and
S34: utilizing a processing module to plan route information.
It should be noted that in step S34, the processing module plans the route information based upon a GPS signal, content inputted by the input module and the map information.
Next, as shown in step S35 to step S37, S35: sensing the three-dimensional acceleration through a sensing module; S36: utilizing the processing module to calculate the road condition information based upon the three-dimensional acceleration; and S37: using a signal module to send a signal based upon the road condition information. Finally, as shown in step S38: displaying the road condition information and the route information through a display module.
Accordingly, the road condition information and the map information stored by the storage module are read in step S34. While approaching the specific road sections such as roughness, slope rise, over-curvature or crowded road section, a user will be notified of being about to pass through the specific road sections by sending signals of step S37 and using the display module of step S38, thereby having warning and reminder effects.
The user can utilize the navigation method having a three-dimensional gravity sensor to allow the navigation apparatus to have the function of sensing three-dimensional acceleration. It does not only provide route planning for a driver, but also has efficacy of having warning and reminder with respect to current road condition information.
The invention improves over the prior art and complies with patent application requirements, and thus is duly filed for patent application. While the invention has been described by device of specific embodiments, numerous modifications and variations could be carried out without departing from the scope by those generally skilled in the art and the spirit of the invention is intended to be limited only by the appended claims.
Number | Date | Country | Kind |
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201110218606.9 | Aug 2011 | CN | national |