Barrier transfer machine telematic device
A telematics device for a barrier transfer machine with machine sensors that capture operational data of the barrier transfer machine associated with a barrier segment includes a processing element, a communication element, and a memory element. The processing element is configured to receive the captured operational data. The communication element is in communication with the processing element and is configured to wirelessly transmit a signal representative of at least a portion of the captured operational data. The memory element is in communication with the processing element and is configured to store at least a portion of the captured operational data.
1 . A telematics device for a barrier transfer machine with machine sensors that capture operational data that includes vibrational data of a capstan and one or more conveyor roller of the barrier transfer machine and sensor data associated with successful deployment of barriers, the telematics device comprising:
a processing element configured to receive the captured operational data;
a communication element in communication with the processing element and configured to wirelessly transmit a signal representative of at least a portion of the captured operational data; and
a memory element in communication with the processing element and configured to store at least a portion of the captured operational data,
wherein the processing element is configured to receive acceleration data associated with an acceleration rate of a conveyor system of the barrier transfer machine,
wherein the processing element is configured to determine a percentage successful deployments of barriers based on the sensor data associated with successful deployment of the barriers.
2 . The telematics device of claim 1 , wherein the communication element is configured to transmit the captured operational data to a cloud network.
3 . The telematics device of claim 1 , further comprising a location sensor configured to capture position data of the barrier transfer machine.
4 . The telematics device of claim 3 , wherein the processing element is configured to associate the captured operational data with the position data.
5 . The telematics device of claim 1 , wherein the processing element is configured to detect when the captured operational data exceeds a predefined threshold.
6 . The telematics device of claim 5 , wherein the processing element is configured to direct the communication element to transmit the signal and to store the captured operational data on the memory element at predefined time intervals.
7 . The telematics device of claim 6 , wherein the processing element is configured to shorten the predefined time intervals when the processing element detects captured operational data that exceeds the predefined threshold.
8 . The telematics device of claim 5 , wherein the communication element is configured to transmit a signal representative of a notification that the captured operational data exceeds the predefined threshold.
9 . The telematics device of claim 1 , wherein the processing element is configured to analyze the captured operational data to determine a trend.
10 . The telematics device of claim 9 , wherein the processing element is configured to utilize artificial intelligence algorithms to determine the trend.
11 . The telematics device of claim 1 , wherein the operational data comprises at least one of image data, radar data, lidar data, speed data, force sensor data, hydraulic pressure data, engine load data, engine RPM data, position data of an entry snout, position data of an exit snout, or engine temperature data.
12 . A computer-implemented method of relaying operational data including vibrational data of a capstan and one or more conveyor roller of a barrier transfer machine and deployment data associated with successful deployment of barriers, the computer-implemented method comprising:
capturing, via sensors of the barrier transfer machine, the operational data including vibrational data of the capstan and the one or more conveyor roller of the barrier transfer machine and the deployment data associated with successful deployment of barriers;
receiving, via a processing element of a telematics device of the barrier transfer machine, the captured operational data;
storing, via the processing element of the telematics device of the barrier transfer machine, the captured operational data on a memory element of the telematics device;
transmitting, via a communication element of the telematics device, the captured operational data via wireless communication; and
determining, via a cloud server processing element, a percentage of successful deployments of barriers based on the deployment data associated with successful deployment of the barriers.
13 . The computer-implemented method of claim 12 , further comprising storing, via the cloud server processing element, the captured vibrational data on a cloud database.
14 . The computer-implemented method of claim 13 , further comprising analyzing, via the cloud server processing element, the captured vibrational data to detect a trend.
15 . The computer-implemented method of claim 12 , further comprising analyzing, via the processing element of the telematics device, the captured vibrational data to detect a trend.
16 . A barrier transfer machine for moving along a string of roadway barrier segments, the barrier transfer machine comprising:
an entry snout configured to receive the string of roadway barrier segments at a first location,
an exit snout through which the string of roadway barrier segments exits at a second location,
a conveyor system configured to serially shift the string of roadway barrier segments from the first location to the second location as the barrier transfer machine moves along the string, the conveyor system including one or more conveyor roller configured to engage one or more barrier segments of the string of roadway barrier segments;
a capstan comprising two or more wheels mounted alongside the conveyor system and one or more hydraulic cylinders configured to urge the two or more wheels against the string of roadway barrier segments while the string of roadway barrier segments is being transported by the conveyor system;
sensors configured to capture operational data comprising vibrational data of the capstan and the one or more conveyor roller and deployment data associated with successful deployment of the barrier segments; and
a telematics device comprising:
a processing element in communication with the sensors and configured to receive the captured operational data;
a memory element in communication with the processing element and configured to store at least a portion of the captured operational data; and
a communication element in communication with the processing element and configured to wirelessly transmit a signal representative of at least a portion of the captured operational data,
wherein the processing element is configured to determine a percentage of successful deployments of barrier segments based on the captured deployment data.
17 . The barrier transfer machine of claim 16 , wherein the processing element is configured to analyze the captured vibrational data to determine a trend.
18 . The barrier transfer machine of claim 17 , wherein the processing element is configured to utilize artificial intelligence algorithms to determine the trend.
19 . The barrier transfer machine of claim 16 , wherein the processing element is configured to determine the captured vibrational data exceeds a predefined threshold.
20 . The barrier transfer machine of claim 17 , wherein the communication element is configured to transmit a signal representative of a notification that the captured vibrational data exceeds the predefined threshold.