Chassis dynamometer
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A chassis dynamometer, informally referred to as a rolling road[1] or a dyno, is a mechanical device that uses one or more fixed roller assemblies to simulate different road conditions within a controlled environment, and is used for a wide variety of vehicle testing and development purposes.

There are many types of chassis dynamometer according to the target application - for example, emissions measurement, miles accumulation chassis dynamometer (MACD), Noise-Vibration-Harshness (NVH or "Acoustic") Application, Electromagnetic Compatibility (EMC) testing, end of line (EOL) tests, performance measurement and tuning. Another basic division is by type of vehicle - motorcycles, cars, trucks, tractors or the size of the roller - mostly 25", 48", 72", but also any other.[2] Modern dynamometers used for development are mostly one roller to the wheel construction, and the vehicle wheel is placed on the top of the roller. Older constructional solutions are two roller per wheel and the vehicle is place between these rollers - this design solution is cheaper and simpler, however, due to the requirements for accuracy and strict limits is no longer used for the development of new vehicles, but only as a test dynamometer at the end of the line or to measure the performance of the engine without dismantling,[3] or performance tuning in "garage" companies.[4]
Basic modes


- Tractive force control/Force constant - in this mode the dynamometer holds set force regardless of speed or other parameters. The specified Force can be distributed evenly between the axles or in different amounts between different axles in the case of multiple axles chassis dynamometers.
- Speed control/Velocity constant - dynamometer holds the set speed regardless of force or other parameters. For example, if a vehicle tries to accelerate in this mode, dynamometer applies opposite force to maintain set constant speed. This mode is used for example in the static power measurement.
- Road load simulation - dynamometer simulates road according to set parameters (according to desired simulation parameters = F0, F1, F2 or ABC parameters, simulated inertia and gradient).