Method for positioning a shaker and use of the shaker for vibration control
A method for positioning a shaker in a seat includes a headrest and a backrest. The headrest has a bass loudspeaker. The shaker is positioned in the headrest. The seat is typically a seat in a motor vehicle or a seat in a theatre or a massage chair or an entertainment chair.
1 . A method for characterizing a loudspeaker in a seat comprising a headrest and a backrest by means of a shaker positioned in the headrest, the headrest further comprising said loudspeaker, the method comprising:
characterizing the shaker by transmitting a second given signal to the shaker over a secondary audio path comprising the shaker, and determining, from the second signal and an output signal of the shaker, a set of coefficients representative of the shaker,
characterizing said loudspeaker in said headrest, by transmitting a first given signal over a primary audio path comprising said loudspeaker, and
determining, from said first signal, an output signal of said loudspeaker and the set of coefficients representative of the shaker, a set of coefficients representative of said loudspeaker.
2 . The method for characterizing a loudspeaker as in claim 1 , wherein said output signal of said loudspeaker and, optionally said output signal of said shaker, are measured by an accelerometer having a measurement axis parallel to an axis of movement of said loudspeaker and, optionally, of said shaker.
3 . The method for characterizing a loudspeaker as in claim 1 , wherein said first signal and/or said second signal is a digital noise signal.
4 . The method for characterizing a loudspeaker as in claim 1 , wherein said set of coefficients representative of said loudspeaker and, optionally, said set of coefficients representative of said shaker are stored in a memory.
5 . The method for characterizing a loudspeaker as in claim 1 , comprising a step of correlating said output signal of said shaker with said output signal of said loudspeaker.
6 . The method according to claim 1 , wherein power train vibrations of a motor vehicle are correlated with said output signal of said shaker.
7 . The method for characterizing a loudspeaker as in claim 1 , wherein the shaker is placed at most 40 cm from a top edge of the seat, when the headrest is placed in its highest position.
8 . The method for characterizing a loudspeaker as in claim 1 , wherein the headrest and the backrest are integrated.
9 . The method for characterizing a loudspeaker as in claim 1 , wherein the shaker has an axis of movement substantially aligned with a movement axis of the loudspeaker.
10 . The method for characterizing a loudspeaker as in claim 1 , wherein the loudspeaker is designed to have a frequency response in a frequency range higher than 200 Hz.
11 . The method for characterizing a loudspeaker as in claim 1 , wherein the shaker is comprised in a bass unit containing the loudspeaker.
12 . The method for characterizing a loudspeaker as in claim 1 , wherein the shaker is configured to generate a haptic message which is not correlated with an audio stream applied to the loudspeaker.
13 . A method for performing active control of vibrations output by a loudspeaker in a seat comprising a headrest and a backrest, the headrest further comprising said loudspeaker and a shaker, the method comprising:
characterizing the shaker by transmitting a second given signal to the shaker over a secondary audio path comprising the shaker, and determining, from the second signal and an output signal of the shaker, a set of coefficients representative of the shaker,
characterizing said loudspeaker in said headrest, by transmitting a first given signal over a primary audio path comprising said loudspeaker, and determining, from said first signal, an output signal of said loudspeaker and the set of coefficients representative of the shaker, a set of coefficients representative of said loudspeaker, and
applying an audio source to a first audio path comprising said loudspeaker and to a second audio path comprising said shaker and a filter derived from said set of coefficients representative of said shaker and said set of coefficients representative of said loudspeaker, said second audio path having an adjustable gain.
14 . The method according to claim 13 , wherein said adjustable gain is variable in a range between −1 and +1.
15 . The method according to claim 13 , wherein said adjustable gain is set fixed.