1. Field of the Invention
The present invention relates to programming equipment for the programming of a hearing aid. Such equipment is commonly known as a fitting equipment or fitting system. More specifically, the invention relates to such a system wherein information on the momentary actions of the hearing aid is transmitted to the fitting system. In addition, the present invention relates to a hearing aid adapted for interaction with such a system and a method of programming such a hearing aid.
2. The Prior Art
Modern hearing aids often include one or more highly complex signal processing systems. Examples on such signal processing systems are directional input systems, feedback cancellation systems and transposing systems. The person responsible for the adaptation of such a hearing aid to the individual user, commonly known as the fitter, faces a difficult task, since a lot of different parameters are to be coded into the hearing aid for this adaptation. This difficulty is enhanced by the fact that some of the signal processing systems applied in high-end hearing aids adapt their operation over time. Especially, during fitting to situations that the user find problematic, the fitter may be concerned that one or more of the complex signal processing systems change their state of operation during this stage of the fitting procedure and will want a way of verifying the current state of operation, in order to guide the fitter to those settings that will have an impact in the current situation.
Accordingly, there is a need for a fitting system where information on the state of operation of the hearing aid can be presented graphically to the person responsible for the fitting procedure.
The invention, in a first aspect, provides a programming equipment for the programming of a hearing aid, the hearing aid having at least a first signal processing system adapted for changing a state of operation over time, the programming equipment comprising means for reading data from the hearing aid, and means for deriving at least a first parameter representing a current state of operation of said signal processing system, means for calculating, on the basis of said first parameter, a model of said signal processing system, and means for displaying a graphical representation of the current state of operation of said signal processing system.
By providing this programming equipment, a graphical representation on the state of operation of at least one signal processing system, included in the hearing aid, may be presented to the fitter.
According to an embodiment, the hearing aid is adapted for transmitting such information to the fitting equipment.
The invention, in a second aspect, provides a hearing aid adapted for being programmed by a programming equipment, and having at least a first signal processing system adapted for changing a state of operation over time, said equipment being adapted for reading data from the hearing aid, said hearing aid being adapted for generating information on the current state of operation of said first signal processing system, in order to enable said equipment to receive the information and display a graphical representation of the current state of operation of said first signal processing system.
The invention in a third aspect, provides a method of programming a hearing aid, said hearing aid being adapted for changing a state of operation over time, the method comprising the steps of reading data from the hearing aid, coding parameters to the hearing aid, deriving information on the current state of operation of at least a first signal processing system included in the hearing aid, calculating, on the basis of the derived information, models for the current state of operation of said first signal processing system, and presenting a graphical representation of this model to the user of the programming equipment.
According to a preferred embodiment of the invention, the information presented graphically to the fitter relates to the operation of a directional system. In this way, information on which signal sources are attenuated by the directional system is available to the fitter.
According to another preferred embodiment of the invention, the information presented graphically to the fitter relates to the operation of a feedback cancellation system. In this way, information on which signal components are attenuated by the cancellation system is available to the fitter.
According to yet another preferred embodiment of the invention, the information presented graphically to the fitter relates to the operation of a transposing system. In this way, information on which signal components are added to other signal components by the transposing system is available to the fitter.
The invention will now be described in greater detail based on non-limiting examples of preferred embodiments and with reference to the appended drawings. In the drawings,
According to the invention, a graphical representation 20 of the state of operation of one or more signal processing systems, is presented to the fitter on the monitor 4.
As shown on
The model currently in use may then be presented graphically by mapping these parameters 5 against the frequency values 6. Such a mapping could be by names as indicated in
As shown on
It should be noted that, in order to illustrate that the number of frequency bands represented in the graphic display is merely a matter of design in the hearing aid 2 to be fitted, both
In this case the parameters to be transmitted from the hearing aid 2 to the fitting equipment would be which bands are to be shifted to which bands, and with what weight. If all of the transposed bands are to be shifted, three bands down, as in the illustrated example, a single parameter would suffice for them all, similarly a single parameter would suffice if they are all to be given the same weight after being transposed.
The representation has three axes. Along the abscissa is the frequency, along the ordinate is the input level to the hearing aid, and along the vertical third axis is the output level from the hearing aid.
The graphical 3D representation includes a surface 21 indicating the hearing threshold for a given hearing aid user. Intersecting the surface 21 there is a number, thirteen, of gain curves 22 for specific frequency bands of the hearing aid. The inclination of the gain curves 22 indicate different degrees of compression and/or expansion, including of cause neutral level-independent gain as well as an upper gain limit.
The parameters which are transmitted from the hearing aid 2 to the programming equipment, could be the knee points 22a, 22b and the compression or expansion ration on either side of the knee points. Thus, taking as an example the gain in the band around 125 Hz, the parameters transmitted would be the location of the knee points 22a and 22b in terms of input level. The degree of expansion below knee point 22a, between the knee points 22a and 22b, and the degree of expansion above the knee point 22b. In the example the term expansion is not to be taken literally, as below the knee point 22a there is in fact a compression, i.e. an expansion less than one. Between the knee points 22a and 22b the expansion is neutral b, and above the knee point 22b the expansion is in fact limiting.
Even though the description of the embodiments above has included the derivation, in the hearing aid, of the information on the state of operation of the relevant signal processing systems, it is within the scope of the invention to maintain, in the programming equipment, a model of the relevant signal processing systems, and to derive the relevant parameters, required to establish the graphical representation, from this model. However, this is a less preferred embodiment, since this does not enable the fitter to detect any malfunction in the relevant systems.
Apart from the above-mentioned information, sent from the hearing aid 2 to the fitting equipment, for aiding the fitter in understanding the actions of the hearing aid, other information could be sent. The skilled person will understand that information regarding other components of the hearing aid 2 could be sent. These could inter alia relate to compression functions, gain in specific frequency bands etc. The latter could occur in connection with noise suppression or speech enhancement, in which the specific frequency bands are shaped e.g. in terms of gain.
Number | Date | Country | Kind |
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PA200501457 | Oct 2005 | DK | national |
PA200600462 | Mar 2006 | DK | national |
The present application is a continuation-in-part of application No. PCT/DK2006/000536; filed on 29 Sep. 2006, in Denmark and published as WO 2007045240, the contents of which are incorporated hereinto by reference.
Number | Date | Country | |
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Parent | PCT/DK2006/000536 | Sep 2006 | US |
Child | 12105077 | US |