This paper introduces and evaluates a novel methodologyfor the estimation of bow pressing force in violin performance, aiming at a reduced intrusiveness while maintaininghigh accuracy. The technique is based on using a simplifiedphysical model of the hair ribbon deflection, and feeding thismodel solely with position and orientation measurements ofthe bow and violin spatial coordinates. The physical modelis both calibrated and evaluated using real force data acquired by means of a load cell
International audienceString players devote a large part of their early training to smoothing out bo...
We present a machine learning approach to modeling bowing control parameter/ncontours in violin perf...
As first noticed by Helmholtz, strings vibrate in a “V-shape” when they are bowed correctly and a fu...
A method for estimation of bow pressing force is proposed. Infra-red motion capture data are process...
This thesis addresses sound production in bowed-string instruments from two perspectives: the physic...
In earlier motion capture studies of fast repetitive bowing patterns across two and three strings in...
The quality of a violin bow is generally thought to be essentially determined by the wood used to ma...
Playing a string instrument, such as the violin, requires solving many problems in controlling the b...
Excitation-continuous music instrument control patterns are often not explicitly represented in curr...
The action of bowing a violin string to play a properly sounding note produces a stick-slip action b...
We present a framework for modeling right-hand gestures in bowed-string instrument playing, applied ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, School of Architecture and Planning, Program...
In this paper, we test the hypothesis proposed in a companion paper submitted to this conference (se...
Violinists display a high incidence of task-specific musculoskeletal problems. Sources pertaining to...
By comparing the oscillations of a string subject to a load to the oscillations of that string witho...
International audienceString players devote a large part of their early training to smoothing out bo...
We present a machine learning approach to modeling bowing control parameter/ncontours in violin perf...
As first noticed by Helmholtz, strings vibrate in a “V-shape” when they are bowed correctly and a fu...
A method for estimation of bow pressing force is proposed. Infra-red motion capture data are process...
This thesis addresses sound production in bowed-string instruments from two perspectives: the physic...
In earlier motion capture studies of fast repetitive bowing patterns across two and three strings in...
The quality of a violin bow is generally thought to be essentially determined by the wood used to ma...
Playing a string instrument, such as the violin, requires solving many problems in controlling the b...
Excitation-continuous music instrument control patterns are often not explicitly represented in curr...
The action of bowing a violin string to play a properly sounding note produces a stick-slip action b...
We present a framework for modeling right-hand gestures in bowed-string instrument playing, applied ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, School of Architecture and Planning, Program...
In this paper, we test the hypothesis proposed in a companion paper submitted to this conference (se...
Violinists display a high incidence of task-specific musculoskeletal problems. Sources pertaining to...
By comparing the oscillations of a string subject to a load to the oscillations of that string witho...
International audienceString players devote a large part of their early training to smoothing out bo...
We present a machine learning approach to modeling bowing control parameter/ncontours in violin perf...
As first noticed by Helmholtz, strings vibrate in a “V-shape” when they are bowed correctly and a fu...