The present invention relates to a sensing device, especially to a parking information sensing device and a providing method thereof.
Cars or motorbikes are the most common kinds of transportation. But it's getting difficult to find out a parking space in a parking lot, especially in a parking lot of shopping malls, department stores or other places. Most users of the parking lot now uses tickets to record status of the parking space. Users only know the number of available parking space through a display panel on an entry of the parking lot. However, they can't get precise location of the available parking space immediately and users can only find out the empty parking space in sight. Once there are only few cars in the parking lot, it's easy to get a parking space. If there is a lot of cars occupied the parking space, it's getting difficult to find out available space.
In order to solve above problems, a parking information system is disclosed. Referring to U.S. Pat. No. 6,147,624, Method and apparatus for parking management system for locating available parking space, a parking management system is provided so that users learn available parking space quickly and park their car easily. However, a sensing device being used is infrared sensor and the infrared sensor itself has low detection sensitivity. It can only detect there is a car on the parking space roughly.
Thus there is a need to develop a parking information sensing device and a providing method thereof that improves precision of checking of parking space status by more sensitive way with lower cost and maintenance fee. Thus people know available parking space easily and precisely.
Therefore it is a primary object of the present invention to provide a parking information sensing device and a providing method thereof that use a light-gathering member with a wire harness to receive the reflected light for checking whether there is a car on the parking space. Light emitted from a light emitting unit and reflected by a reflecting element within a circle area πr2 whose radius is the wire harness length is all collected and is sent to a light sensing unit. The light-gathering member with wire harness is convenient for installment and adjustment.
It is another object of the present invention to provide a parking information sensing device and a providing method thereof that use a transmitting/receiving unit to send sensing results of parking space for showing users and managing personnel availability of the parking space. And a plurality of transmitting/receiving units forms a wireless mesh network that detects parking space in the parking lot.
In order to achieve above objects, a parking information sensing device and a providing method thereof according to the present invention are disclosed. The parking information sensing device includes a driving control circuit coupled to a light emitting unit as well as an light sensing unit. The driving control circuit drives the light emitting unit emitting a light to a parking space while a reflecting element such as a mirror is arranged on the parking space and is located on a path of the light emitted from the light emitting unit. The light sensing unit receives the light reflected by the reflecting element. After receiving the reflected light, the light sensing unit generates a sensing signal that is sent to the driving control circuit so that the driving control circuit judges whether there is a car on the parking space according to the sensing signal. Moreover, judging results of the driving control circuit can be displayed by indicating light units. A first transmitting/receiving unit of each parking information sensing device communicates with one another and forms a wireless mesh network.
This invention further includes a monitoring device disposed with a second transmitting/receiving unit corresponding to the first transmitting/receiving unit of the parking information sensing device. Through the wireless mesh network formed by a plurality of first transmitting/receiving units, the second transmitting/receiving unit receives judging results of the parking space for showing users the results. Furthermore, the monitoring device actively sends command signals so as to make the parking information sensing system report the status itself through the wireless mesh network to the monitoring device and the status is displayed. Therefore, managing personnel can easily do tasks of system fees calculation, management and quickly maintenance.
This invention further includes a parking information display panel disposed with a third transmitting/receiving unit corresponding to the first transmitting/receiving unit of the parking information sensing device. Through the wireless mesh network formed by a plurality of first transmitting/receiving units, the third transmitting/receiving unit receives judging results of the parking space. The parking information display panel not only shows amount of available parking space but also displays precisely parking spaces on each floor of the parking lot for users' convenience.
A method for providing parking information includes a plurality of steps. Emitting a light to a parking space, and then detecting the light being reflected from the parking space. Judging whether the parking space is occupied by a car in accordance with a sensing result. When the reflected light is reflected by the reflecting element, a first sensing signal is generated so as to judge that there is no car on the parking space. On the contrary, it is judged that there is a car on the parking space. In addition, the judging result of the parking space is transmitted to the monitoring device or the parking information display panel by wire or wireless for being displayed.
The structure and the technical means adopted by the present invention to achieve the above and other objects can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying drawings, wherein
Referring to
As shown in
When the parking space 32 is not occupied by any vehicle, the light sensing unit 16 receives light reflected by the reflecting element 14 through the light-gathering member 162 and generates correspondingly a first sensing signal that is sent to the driving control circuit 18. According to the first sensing signal, the driving control circuit 18 drives an indicating light unit 184 so as to show a signal of available space. Furthermore, the driving control circuit 18 further transmits this checking result by a first transmitting/receiving unit 182, received by the next first transmitting/receiving unit 182 of the Parking information sensing device 10 nearby in the parking lot 30 and being transmitted again, finally arriving at monitoring device 20 and a parking information display panel 22 for parking spaces. For example, when there is a car on the parking space 32, the car blocks (interrupts) light emitted from the light emitting unit 12 so that the reflecting element 14 reflects no light to the light sensing unit 16. Thus there is no first sensing signal generated by the light sensing unit 16. Then the driving control circuit 18 checks if there is a car on the parking space 32. Similarly, when there is no obstacle interrupts, light from the light emitting unit 12 is reflected by the reflecting element 14 and arrives the light sensing unit 16. Thus the light sensing unit 16 generates the first sensing signal that is sent to the driving control circuit 18 so as to judge that there is no vehicle on the parking space 32. Moreover, the light sensing unit 16 detects the received light according to a threshold value. When the light sensing unit 16 detects that the intensity of the received light no more less than the threshold value, it correspondingly generates the first sensing signal to make the driving control circuit 18 judge there is no vehicle on the parking space 32. When the light sensing unit 16 senses the intensity of the received light is less than the threshold value, it correspondingly generates a second sensing signal that enables the driving control circuit 18 to judge that there is a car occupied the parking space 32. The roof of the car reflects or scatters light emitted from the light emitting unit 12 so that the light sensing unit 16 detects no reflected light or just scattered light. Thus the light sensing unit 16 receives the light whose intensity is lower than a threshold value and then drives the driving control circuit 18 to recognize that there is a car on the parking space 32 according to sensing results thereof. At last, the first transmitting/receiving unit 182 transmits the checking result of the driving control circuit 18 so as to show status of the parking space 32.
The driving control circuit 18 is further coupled to the indicating light unit 184 that displays light signals corresponding to checking results of the driving control circuit 18. For example, when the driving control circuit 18 checks there is no car on the parking space 32, the indicating light unit 184 turns on a light for showing empty status. When the driving control circuit 18 checks there is a car occupied the parking space 32, the indicating light unit 184 lights a light showing occupied status.
Furthermore, the first transmitting/receiving unit 182 supports communication protocol of Zigbee or IEEE802.15.4 so that all of the parking information sensing devices 10 within a parking lot 30 form a wireless mesh network 34 through communications among the first transmitting/receiving units 182. Similarly, a second transmitting/receiving unit and a third transmitting/receiving unit can also support communication protocol of Zigbee or IEEE802.15.4.
Referring to
Referring to
Thus numbers of parking information sensing devices 10 forming the wireless mesh network 34, the monitoring device 20 and the parking information display panel 22 according to the present invention displays real time status of the parking space 32 so as to make users learn where there is a vacancy.
Referring
Referring to
When there is a car on the parking space 32, the car roof will reflect or scatter the light emitted from the light emitting unit 12. That means the light is reflected or scattered at the position of the line AA′ and thus the light sensing unit 16 can't sense the light reflected by the car roof or only senses the light scattered by the car roof. Therefore, the light intensity received by the light sensing unit 16 is lower than the threshold so that the driving control circuit 18 judges that there is a car on the parking space 32 according to the sensing result of the light sensing unit 16.
Additional advantages and modifications will readily occur to those skilled in the art. Therefore, the invention in its broader aspects is not limited to the specific details, and representative devices shown and described herein. Accordingly, various modifications may be made without departing from the spirit or scope of the general inventive concept as defined by the appended claims and their equivalents.
Number | Name | Date | Kind |
---|---|---|---|
5432508 | Jackson | Jul 1995 | A |
6229455 | Yost et al. | May 2001 | B1 |
6885312 | Kirkpatrick | Apr 2005 | B1 |
6946973 | Yanda | Sep 2005 | B1 |
20050280555 | Warner | Dec 2005 | A1 |
Number | Date | Country | |
---|---|---|---|
20090027231 A1 | Jan 2009 | US |