Apparatus for detecting road surface condition
An apparatus includes first and second measuring instruments placed on tires of right and left wheels of the vehicle; and a receiver placed in the vehicle. The first measuring instrument includes a first acceleration sensor for measuring vibration of the tire of the right wheel to generate first vibration data; a first measuring instrument controller for processing the first vibration data to generate first roughness information for the road surface; and a first measuring instrument communication module for transmitting the first roughness information to the receiver, and the second measuring instrument includes a second acceleration sensor for measuring vibration of the tire of the left wheel to generate second vibration data; a second measuring instrument controller for processing the second vibration data to generate second roughness information for the road surface; and a second measuring instrument communication module for transmitting the second roughness information to the receiver.
1 . An apparatus for detecting road surface condition, which is installed in a vehicle, of a road on which the vehicle is driving, comprising:
a first measuring instrument placed on a tire of a right wheel of the vehicle;
a second measuring instrument placed on a tire of a left wheel of the vehicle; and
a receiver placed in the vehicle,
wherein the first measuring instrument comprises:
a first acceleration sensor for measuring vibration of the tire of the right wheel to generate first vibration data;
a first measuring instrument controller for processing the first vibration data to generate first roughness information for the road surface; and
a first measuring instrument communicator configured to transmit the first roughness information to the receiver,
wherein the second measuring instrument comprises:
a second acceleration sensor for measuring vibration of the tire of the left wheel to generate second vibration data;
a second measuring instrument controller for processing the second vibration data to generate second roughness information for the road surface; and
a second measuring instrument communicator configured to transmit the second roughness information to the receiver, and
wherein the receiver comprises:
an in-vehicle communicator configured to receive the first roughness information and the second roughness information;
a receiver controller configured to process the first roughness information and the second roughness information to generate final roughness information; and
an external communicator configured to transmit the final roughness information to the outside,
wherein the first measuring instrument further comprises a first geomagnetic sensor for generating first geomagnetic data by measuring geomagnetism of the ground traveling by the tire of the right wheel, and
wherein the second measuring instrument further comprises a second geomagnetic sensor for generating second geomagnetic data by measuring geomagnetism of the ground traveling by the tire of the left wheel.
2 . The apparatus for detecting road surface condition of claim 1 , wherein the receiver further comprises a position sensor for measuring a position of the vehicle to generate position information, and the external communicator transmits the position information together with the final roughness information to the outside.
3 . The apparatus for detecting road surface condition of claim 1 , wherein the in-vehicle communicator communicates with the first measuring instrument communicator and the second measuring instrument communicator in a short-range wireless communication method.
4 . The apparatus for detecting road surface condition of claim 1 , wherein the external communicator performs communication in a wireless communication method.
5 . The apparatus for detecting road surface condition of claim 1 , wherein the first roughness information comprises a first IRI (International Roughness Index) calculated from the first vibration data, and the second roughness information comprises a second IRI calculated from the second vibration data.
6 . The apparatus for detecting road surface condition of claim 5 , wherein the receiver controller calculates an average IRI from the first IRI and the second IRI, and normalizes the average IRI by using at least one of a speed of the vehicle, an air pressure of the tire of the right wheel, and an air pressure of the tire of the left wheel as a factor, and the final roughness information comprises the normalized IRI.
7 . The apparatus for detecting road surface condition of claim 1 ,
wherein the first measuring instrument controller determines that a first impact has occurred if the first vibration data is out of a reference vibration range, and determines whether the first geomagnetic data at the time when the first impact occurs is within a reference geomagnetic range, and
wherein the second measuring instrument controller determines that a second impact has occurred if the second vibration data is out of a reference vibration range, and determines whether the second geomagnetic data at the time when the second impact occurs is within the reference geomagnetic range.
8 . The apparatus for detecting road surface condition of claim 7 ,
wherein if the first geomagnetic data at the time when the first impact occurs is within the reference geomagnetic range, the first measuring instrument controller determines the impact as a pothole and generates first pothole information; the first measuring instrument communicator transmits the first pothole information to the in-vehicle communicator; and the in-vehicle communicator receives the first pothole information, and
wherein if the second geomagnetic data at the time when the second impact occurs is within the reference geomagnetic range, the second measuring instrument controller determines the impact as a pothole and generates second pothole information; the second measuring instrument communicator transmits the second pothole information to the in-vehicle communicator; and the in-vehicle communicator receives the second pothole information.
9 . The apparatus for detecting road surface condition of claim 8 , wherein when the second pothole information is not received within a predetermined time range after receiving the first pothole information or when the first pothole information is not received within the predetermined time range after receiving the second pothole information, the receiver controller determines that a pothole exists and generates pothole recognition information.
10 . The apparatus for detecting road surface condition of claim 9 , wherein when the pothole recognition information is generated, the receiver controller generates pothole size information by calculating a size of the pothole using at least one of a speed of the vehicle, a pressure of the tire of the right wheel, and a pressure of the tire of the left wheel as a factor.
11 . The apparatus for detecting road surface condition of claim 8 , wherein if both the first pothole information and the second pothole information are received within a predetermined time range, the receiver controller determines that a pothole does not exist on the road surface.
12 . The apparatus for detecting road surface condition of claim 8 , wherein if both the first pothole information and the second pothole information are received within a predetermined time range, the receiver controller determines that at least one of a bump and a joint exists on the road surface.
13 . An apparatus for detecting road surface condition, which is installed in a vehicle, of a road on which the vehicle is driving, comprising:
a first measuring instrument placed on a tire of a right wheel of the vehicle;
a second measuring instrument placed on a tire of a left wheel of the vehicle; and
a receiver placed in the vehicle,
wherein the first measuring instrument comprises:
a first acceleration sensor for measuring vibration of the tire of the right wheel to generate first vibration data; and
a first measuring instrument communicator configured to transmit the first vibration data to the receiver,
wherein the second measuring instrument comprises:
a second acceleration sensor for measuring vibration of the tire of the left wheel to generate second vibration data; and
a second measuring instrument communicator for transmitting the second vibration data to the receiver, and
wherein the receiver comprises:
an in-vehicle communicator configured to receive the first vibration data and the second vibration data;
a receiver controller configured to process the first vibration data and the second vibration data to generate final roughness information; and
an external communicator configured to transmit the final roughness information to the outside,
wherein the first measuring instrument further comprises a first geomagnetic sensor for generating first geomagnetic data by measuring geomagnetism of the ground traveling by the tire of the right wheel, and the first measuring instrument communicator transmits the first geomagnetic data to the in-vehicle communicator, and
wherein the second measuring instrument further comprises a second geomagnetic sensor for generating second geomagnetic data by measuring geomagnetism of the ground traveling by the tire of the left wheel, and the second measuring instrument communicator transmits the second geomagnetic data to the in-vehicle communicator.
14 . The apparatus for detecting road surface condition of claim 13 ,
wherein the receiver controller determines that a first impact has occurred if the first vibration data is out of a reference vibration range, and determines whether the first geomagnetic data at the time when the first impact occurs is within a reference geomagnetic range, and
wherein the receiver controller determines that a second impact has occurred if the second vibration data is out of a reference vibration range, and determines whether the second geomagnetic data at the time when the second impact occurs is within the reference geomagnetic range.
15 . The apparatus for detecting road surface condition of claim 14 , wherein the receiver controller generates pothole recognition information if the second impact does not occur within a predetermined time range from the time when the first impact occurs and the first geomagnetic data at the time when the first impact occurs is within the reference geomagnetic range or if the first impact does not occur within a predetermined time range from the time when the second impact occurs and the second geomagnetic data at the time when the second impact occurs is within the reference geomagnetic range.
16 . The apparatus for detecting road surface condition of claim 15 , wherein when the pothole recognition information is generated, the receiver controller generates pothole size information by calculating a size of the pothole using at least one of a speed of the vehicle, a pressure of the tire of the right wheel, and a pressure of the tire of the left wheel as a factor.
17 . The apparatus for detecting road surface condition of claim 14 , wherein if the occurrence time of the first impact and the occurrence time of the second impact are within a predetermined time range, the receiver controller determines that a pothole does not exist on the road surface.
18 . The apparatus for detecting road surface condition of claim 14 , wherein if the occurrence time of the first impact and the occurrence time of the second impact are within a predetermined time range, the receiver controller determines that at least one of a speed bump and a joint exists on the road surface.