The assessment of the quality of a musical instrument, both from a physical and a perceptual point of view, has been the object of much research in the past and in more recent years. These studies have tried to associate peculiarities in the instrument's mechanical behavior (i.e. its vibrations) to its sound properties, and to how these are perceived by a performer or audience.
A key aspect in the interaction with a musical instrument that is increasingly being investigated is the haptic feedback that results from the mechanical interaction between performer and instrument. Haptic perception is an umbrella term that encompasses both the tactile and proprioceptive sense, and it is known to be a crucial element in expert music performance.
Even though haptic perception plays such a critical role in musical interaction, relatively little effort has been invested so far into characterizing the haptic behavior of a musical instrument and into how this affects musicians' perception.
The goal of HAPTIFEEL is to develop a methodological framework to characterize the haptic behavior of a piano keyboard, and later of several traditional musical instruments as perceived by a player. Our methodology will be based on several perceptually-informed physical measurements together with user-based studies which will make use of tactile-augmented digital musical interfaces.
There are several points of novelty:
- building of a comprehensive database of tactile cues recorded on several piano keyboards of different qualities. The perceptual effect of these cues can be simultaneously assessed in user-based tests. This can provide, for the first time, a perceptual projection of the mechanical behavior of the instrument.
- The specific effect of haptic feedback on the perceived properties of an instrument has been speculated at length, but so far uncovered only to a limited extent. This multisensory centered methodology can significantly advance the understanding of the role of haptics in musical interaction.
- A tactile-augmented keyboard can be developed based on our results. This would be the first-of-a-kind device, allowing dynamic tactile feedback rendering to simulate the behavior and quality of several piano keyboards.
- Our findings can enable innovation in the context of haptic and specifically tactile rendering for augmented musical interfaces. Research and instrument builders will be able to design haptic feedback so to achieve their desired qualities in the behavior of the instrument as perceived by the player.