System, method and apparatus for real-time measurement of vehicle performance
First Claim
1. A system for real-time measurement of vehicle performance, comprising:
- at least one sensor module mounted on a rotating member of the vehicle wherein the rotating member is a torsion disc having a first face, a second face, an outer circumferential face and an inner circumferential face, wherein the first and second faces are divided into a plurality of raised sectors projecting axially from the first and second faces, extending from the inner circumferential face to the outer circumferential face and separated by a plurality of recessed sectors, the sensor module comprising at least one sensor communicatively coupled to a microcontroller, at least one wireless communications device communicatively coupled to the microcontroller, and a power source; and
a central module disposed in the vehicle, the central module comprising a central processor, memory, a central wireless communications device communicatively coupled to the central processor and to the at least one wireless communications device of the sensor module, wherein the at least one sensor is mounted on one of the plurality of raised sectors or plurality of recessed sectors.
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Abstract
A system for real-time measurement of vehicle performance. The system can include at least one sensor module mounted on a rotating member of the vehicle and a central module disposed in the vehicle. The sensor module can include a plurality of sensors communicatively coupled to a microcontroller, at least one wireless communications device communicatively coupled to the microcontroller, and a power source. The central module can include a central processor, memory, a central wireless communications device communicatively coupled to the central processor and to the at least one wireless communications device of the sensor module. The rotating member of the vehicle can be a wheel, a brake rotor, or a torsion disc disposed between an axle of the vehicle and a wheel of the vehicle.
22 Citations
15 Claims
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1. A system for real-time measurement of vehicle performance, comprising:
- at least one sensor module mounted on a rotating member of the vehicle wherein the rotating member is a torsion disc having a first face, a second face, an outer circumferential face and an inner circumferential face, wherein the first and second faces are divided into a plurality of raised sectors projecting axially from the first and second faces, extending from the inner circumferential face to the outer circumferential face and separated by a plurality of recessed sectors, the sensor module comprising at least one sensor communicatively coupled to a microcontroller, at least one wireless communications device communicatively coupled to the microcontroller, and a power source; and
a central module disposed in the vehicle, the central module comprising a central processor, memory, a central wireless communications device communicatively coupled to the central processor and to the at least one wireless communications device of the sensor module, wherein the at least one sensor is mounted on one of the plurality of raised sectors or plurality of recessed sectors. - View Dependent Claims (3, 4, 5, 7, 8, 9, 10)
- at least one sensor module mounted on a rotating member of the vehicle wherein the rotating member is a torsion disc having a first face, a second face, an outer circumferential face and an inner circumferential face, wherein the first and second faces are divided into a plurality of raised sectors projecting axially from the first and second faces, extending from the inner circumferential face to the outer circumferential face and separated by a plurality of recessed sectors, the sensor module comprising at least one sensor communicatively coupled to a microcontroller, at least one wireless communications device communicatively coupled to the microcontroller, and a power source; and
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2. A method for real-time measurement of vehicle performance, comprising:
- receiving first measurement data from a plurality of sensors of a sensor module coupled to a rotating member of a vehicle wherein the rotating member is a torsion disc having a first face, a second face, an outer circumferential face and an inner circumferential face, wherein the first and second faces are divided into a plurality of raised sectors projecting axially from the first and second faces, extending from the inner circumferential face to the outer circumferential face and separated by a plurality of recessed sectors, the sensor module comprising a plurality of sensors mounted on the plurality of raised sectors and plurality of on recessed sectors and communicatively coupled to a microcontroller, at least one wireless communications device communicatively coupled to the microcontroller, and a power source;
relaying the first measurement data to a central module disposed in the vehicle, the central module comprising a central processor, memory, a central wireless communications device communicatively coupled to the central processor and to the at least one wireless communications device of the sensor module;
receiving second measurement data from a data bus of the vehicle; and
processing one or more of the first measurement data and the second measurement data to obtain calculated data for real-time horsepower and torque values at the rotating member. - View Dependent Claims (6, 11, 12, 13, 14, 15)
- receiving first measurement data from a plurality of sensors of a sensor module coupled to a rotating member of a vehicle wherein the rotating member is a torsion disc having a first face, a second face, an outer circumferential face and an inner circumferential face, wherein the first and second faces are divided into a plurality of raised sectors projecting axially from the first and second faces, extending from the inner circumferential face to the outer circumferential face and separated by a plurality of recessed sectors, the sensor module comprising a plurality of sensors mounted on the plurality of raised sectors and plurality of on recessed sectors and communicatively coupled to a microcontroller, at least one wireless communications device communicatively coupled to the microcontroller, and a power source;
Specification