Difference between revisions of "Sensors"

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PWM sensors vary the width of pulses at a fixed frequency to represent the measurement value. A simple analog filter can allow a PWM sensor to be approximated into an analog signal.
 
PWM sensors vary the width of pulses at a fixed frequency to represent the measurement value. A simple analog filter can allow a PWM sensor to be approximated into an analog signal.
 
====Serial====
 
====Serial====
Some "smart" sensors transmit their measurement value(s) over a [[Communication Protocols|communication protocol]]
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Some "smart" sensors transmit their measurement value(s) over a [[Communication Protocols|communication protocol]] such as CAN Bus, I<sup>2</sup>C, or SPI. This allows multiple values to be transmitted without additional wiring.
 
 
 
 
such as CAN Bus, I<sup>2</sup>C, or SPI. This allows multiple values to be transmitted without additional wiring.
 
 
[[Category:Data Acquisition]]
 
[[Category:Data Acquisition]]
 
 
 
 
 
 
 
  
 
==Some Common Applications==
 
==Some Common Applications==

Revision as of 16:52, 28 September 2020

Sensors measure physical properties, and convert their measurements into electrical signals to be captured by the data logger and used for running the vehicle, diagnosing the vehicle, verifying that the vehicle is running properly, and/or helping to tune the vehicle.

Sensor Types

Sensing location/movement of vehicle

These sensors are used to tell where the vehicle is, and how it is moving. Dataloggers often have some or more of these sensors built in. With these sensors, where they are mounted on the car may change how useful the data is. For instance, you may find that you want to mount them as close to the center of gravity as possible.

Accelerometer

Measures its acceleration in one or more axes. This may or may not be the actual acceleration of the vehicle, depending on how it's mounted.

Gyroscope

Measures its angular velocity (change in an angle over time) on one or more axes. Again, you'll probably want these axes to line up with those of the vehicle.

Magnetometer

Measures the strength and direction of the magnetic field. Useful for measuring the yaw of the vehicle.

IMU

Standing for Inertial Measurement Unit, it measures orientation, velocity, and acceleration in all three axes, utilizing accelerometers, gyroscopes, and magnetometers.

GPS Receivers

Obtains GPS data. This is usually used for logging the position of the car, so that you can see where the car is going and compare lines through corners.

Sensing Movement of a Single Component

Hall Effect Sensors

Detect the presence of a magnetic field. These are typically switches, that are either on or off (i.e., not analog). These are most commonly used to detect and measure rotation, e.g. of a gear. Unlike a VR sensor, they require an external magnetic force.

Variable Reluctance Sensors

Known also as VR sensors, they detect a change in the magnetic field. Unlike hall effect sensors, they do not require an external magnetic field, so many OEMs use them for cam and crank position sensors.

Potentiometers

Variable resistor ladders that measure movement. The can be used as driver controls (e.g., for adjusting radio volume), or in linear form for measuring shock travel (among other uses).

Rotary Position Sensors

These act as more accurate rotary potentiometers. Often they are contactless, meaning they last much longer and for many more cycles than potentiometers do. These are useful as pedal position sensors and steering angle sensors.

Knock Sensors

Sensors that detect engine knocking. These will bolt directly to the engine block, and will usually come with the engine.
there are a buncha different kinds of knock sensors - i'll try to get something sketched out here this week -simon

O2 Concentration Sensors

O2 sensors measure how much oxygen is in the exhaust. This allows you to figure out the air-fuel ratio of the engine. Narrowband O2 sensors can only tell you if you are rich, lean, or at the stoichiometric efficiency of the engine, whereas wideband O2 sensors tell you your air-fuel ratio within a much broader range. Narrowband O2 sensors are usually used by the OEMs for troubleshooting catalytic converters, but most racecars use wideband O2 sensors to help tune the engine.

A wideband O2 sensor needs a wideband controller to connect to an ECU. Sometimes this is embedded inside the ECU, but sometimes it has to be purchased separately.

Potentiometers

Rotary Potentiometers

Linear Potentiometers

String Potentiometers

Pressure Sensors

Liquid Pressure Sensors

Air Pressure Sensors

Strain Gauges

Temperature Sensors

Liquid Temperature Sensors

Air Temperature Sensors

Infrared Temperature Sensors

Signal Types

Analog Sensors

2-Wire

3-Wire

Active

Digital Sensors

Pulsed

Pulsed sensors send a series of digital pulses where the frequency of the pulses represents the measurement value. Commonly seen in shaft speed sensors.

PWM

PWM sensors vary the width of pulses at a fixed frequency to represent the measurement value. A simple analog filter can allow a PWM sensor to be approximated into an analog signal.

Serial

Some "smart" sensors transmit their measurement value(s) over a communication protocol such as CAN Bus, I2C, or SPI. This allows multiple values to be transmitted without additional wiring.

Some Common Applications

Driver Training

Sensor name Use Sensor type
GPS Visualize and compare driving lines, visual aid for displaying data on an overlay of the course GPS
Throttle position sensor (TPS) Visualize and compare driver's throttle pedal control Rotary position sensor or potentiometer
Accelerator pedal position sensor (APPS) Visualize and compare driver's throttle pedal control Rotary position sensor or potentiometer
Brake pressure sensor Visualize and compare driver's braking Liquid pressure sensor
Steering angle sensor Visualize and compare driver's steering Rotary position sensor or potentiometer

Aerodynamics

Sensor name Use Sensor type
Air pressure sensor
Validating aero simulations
Air speed sensor
Calibrating downforce calculations for headwind Pitot tube
Shock length sensor Determining downforce at front vs. rear Linear potentiometer

Brakes

Sensor name
Use
Sensor type
Brake pressure sensor (front and rear)
Validate braking system design, determine brake bias
Liquid pressure sensor

Chassis

Sensor name Use Sensor type
Strain gauges
Validating chassis simulations
Strain gauge

Powertrain

Sensor name
Use
Sensor type
Cam position Determine ignition/fuel timing VR sensor
Crank position Determine ignition/fuel timing and determine engine speed (aka RPM) VR sensor
Accelerator pedal position sensor (APPS) Required for ETC Rotary position sensor or potentiometer
Throttle position sensor (TPS)
Required for ETC, helps determine how much fuel the engine needs Rotary position sensor or potentiometer
Manifold/intake air pressure (MAP/IAP)
Determines how much fuel the engine needs
Air pressure sensor
Manifold/intake air temperature (MAT/IAT)
Calibrates AFR for the temperature of the air
Air temperature sensor
Coolant temperature (CLT)
Verify that the engine isn't about to blow up, tune engine for cold start
Liquid temperature sensor
Coolant pressure Verify that the cooling system works, diagnosing problems Liquid pressure sensor
Fuel pressure
Verify that the fuel system works, diagnosing problems
Liquid pressure sensor
Wideband O2 Tuning the car, diagnosing misfires (AFR will appear higher if a misfire is occurring) O2 sensor
Gear sensor Display what gear the transmission is to the driver IDK, CBR600's don't have these
Neutral switch Tell the driver if they're in neutral or not Switch
Rear wheel speed sensors
Verify differential performance
Hall effect, VR, inductive proximity sensor
Vehicle speed sensor (at transmission output)
Verify differential performance, calculating what gear you're in Hall effect sensor

Suspension

Sensor name
Use
Sensor type
Shock length sensor
Suspension tuning
Linear potentiometer
Strain gauges Verify loads on suspension members
Strain gauge
IMU Suspension tuning
IMU