Abstract:
A method for recognizing a beat for a hearing system includes converting an acoustic input signal into an electrical input signal in an input transducer. The electrical input signal is processed into an electrical output signal in a signal processing unit. The electrical output signal is converted into an output signal in an output transducer. A beat is recognized by analyzing the electrical input signal and the recognized beat is perceivably output to a hearing system user. A corresponding hearing system for recognizing a beat in the input signal and outputting the recognized beat in a perceivable manner is also provided.
Abstract:
A hearing aid device and a method for operating the hearing aid device. The hearing aid device has an acousto-electrical transducer, a signal processing unit, an electro-acoustic transducer and a unit for recognizing a wearer's own voice. The hearing aid device detects and recognizes the wearer's own voice by way of the recognition unit and, when the wearer's own voice has been detected, operates the signal processing unit with a modified signal processing parameter that is modified such that the sound of the wearer's own voice is improved.
Abstract:
A hearing aid device and a method for operating the hearing aid device. The hearing aid device has an acousto-electrical transducer, a signal processing unit, an electro-acoustic transducer and a unit for recognizing a wearer's own voice. The hearing aid device detects and recognizes the wearer's own voice by way of the recognition unit and, when the wearer's own voice has been detected, operates the signal processing unit with a modified signal processing parameter that is modified such that the sound of the wearer's own voice is improved.
Abstract:
A fault recognition in a hearing aid of a user includes providing an actual image of a component of the hearing aid and comparing the actual image with reference images. An analysis unit carries out an image comparison, in which the actual image is compared to one or a plurality of reference images, which each show the component in a state, of which it is previously known whether the component is faulty or faultless. The analysis unit determines as a state of the component of the actual image that state which is assigned to the reference image which is most similar to the actual image. This recognizes whether the component is faulty or faultless. A system has an analysis unit that is configured to carry out the method.
Abstract:
A method for compressing the dynamics in an audio signal includes measuring at least one input level of the audio signal and comparing the measured input level with a limit value. A prescribed compression characteristic having a knee defined by a base value of the input level is adjusted to suit the audio signal by raising the knee from the base value to a higher target value if the at least one input level exceeds the limit value. The audio signal is compressed in accordance with the adjusted compression characteristic. A signal processing unit includes a signal input for feeding in an audio signal and is configured to perform the method, and a hearing device includes at least one microphone for obtaining an audio signal from an ambient sound and the signal processing unit connected to the microphone.