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    • 3. 发明授权
    • Method for monitoring a hearing device and hearing device with self-monitoring function
    • 用于监测具有自我监测功能的听力设备和听力设备的方法
    • US08467555B2
    • 2013-06-18
    • US13088463
    • 2011-04-18
    • Samuel HarschEvert Dijkstra
    • Samuel HarschEvert Dijkstra
    • H04R25/00
    • H04R25/30
    • A method for monitoring a hearing device having an electroacoustic output transducer worn at a user's ear or in a user's ear canal, the method including: measuring the electrical impedance of the output transducer; analyzing the measured electrical impedance of the output transducer in order to determine at least one parameter from the length and diameter of tubing that extends into the user's ear canal and is connected to the transducer, and adjusting operation parameters of the hearing device based upon the results of the determination so as to optimize acoustical performance of the hearing device. A hearing device in which the method is implemented.
    • 一种用于监测具有在用户耳朵或用户耳道中佩戴的电声输出换能器的听力装置的方法,所述方法包括:测量输出换能器的电阻抗; 分析所测量的输出换能器的电阻抗,以便根据延伸到使用者的耳道并连接到换能器的管的长度和直径确定至少一个参数,并且基于结果调整听力装置的操作参数 以便优化听力装置的声学性能。 一种其中实施该方法的听力装置。
    • 4. 发明授权
    • Method and system for wireless hearing assistance
    • 无线助听器的方法和系统
    • US08391523B2
    • 2013-03-05
    • US12738558
    • 2007-10-16
    • Guiseppina Biundo LotitoEvert DijkstraHans MulderRainer Platz
    • Guiseppina Biundo LotitoEvert DijkstraHans MulderRainer Platz
    • H04R25/00
    • H04R25/43H04R25/405
    • A method for providing hearing assistance to a user, comprising capturing audio signals by an internal microphone arrangement and supplying the captured audio signals a central signal processing unit; estimating whether a certain type of external audio signal supply device is connected to the audio signal processing unit in order to supply external audio signals to the central signal processing unit, and selecting an audio signal processing scheme according to the estimated type of external audio signal supply device; processing, the captured audio signals and the external audio signals according to the selected audio signal processing scheme; transmitting the processed audio signals to stimulating means worn at or in at least one of the user's ears via a wireless audio link; and stimulating the user's hearing by said stimulating means according to the processed audio signals.
    • 一种用于向用户提供听力辅助的方法,包括通过内部麦克风装置捕获音频信号,并将捕获的音频信号提供给中央信号处理单元; 估计某种类型的外部音频信号提供装置是否连接到音频信号处理单元,以便向中央信号处理单元提供外部音频信号,以及根据所估计的外部音频信号供给类型选择音频信号处理方案 设备; 根据所选择的音频信号处理方案处理所捕获的音频信号和外部音频信号; 将经处理的音频信号经由无线音频链路传送到在用户的耳中或其中的至少一个耳上佩戴的刺激装置; 并且根据所处理的音频信号,通过所述刺激装置刺激用户的听觉。
    • 5. 发明授权
    • Hearing assistance system including data logging capability and method of operating the same
    • 助听系统包括数据记录功能及其操作方法
    • US08077892B2
    • 2011-12-13
    • US11554107
    • 2006-10-30
    • Evert DijkstraFrancois Marquis
    • Evert DijkstraFrancois Marquis
    • H04R25/00
    • H04R25/70H04R25/30H04R25/554H04R2225/39
    • There is provided a method of operating a system for providing hearing assistance to a user (101), comprising: capturing and processing audio signals by a transmission unit (102) and transmitting the audio signals from the transmission unit (102) via a wireless audio link to a receiver unit (103); processing the received audio signals in the receiver unit (103); stimulating the user's hearing, by stimulating means (38, 136) worn at or in the user's ear, according to the audio signals from the receiver unit (103); logging data by recording the values of at least one operation parameter of the transmission unit (102) and/or the receiver unit (103) as a function of time and/or by recording data derived from the values of at least one operation parameter of the transmission unit (102) and/or the receiver unit (103) as a function of time in the transmission unit (102); and reading the logged data from the transmission unit (102).
    • 提供了一种操作用于向用户(101)提供助听器的系统的方法,包括:通过传输单元(102)捕获和处理音频信号,并经由无线音频从传输单元(102)发送音频信号 链接到接收器单元(103); 在所述接收机单元(103)中处理所接收的音频信号; 通过根据来自接收器单元(103)的音频信号的刺激装置(38,136)刺激用户的听力; 通过记录作为时间的函数的传输单元(102)和/或接收器单元(103)的至少一个操作参数的值来记录数据和/或通过记录从至少一个操作参数的值 传输单元(102)和/或接收机单元(103)作为传输单元(102)中的时间的函数; 以及从传输单元(102)读取记录的数据。
    • 6. 发明授权
    • Method for frequency transposition and use of the method in a hearing device and a communication device
    • 用于频率转置和在听力装置和通信装置中使用该方法的方法
    • US07248711B2
    • 2007-07-24
    • US10794912
    • 2004-03-05
    • Silvia AllegroOlegs TimmsAdam HersbachHugh McDermottEvert Dijkstra
    • Silvia AllegroOlegs TimmsAdam HersbachHugh McDermottEvert Dijkstra
    • H04R25/00
    • H04R25/353H04R25/356H04R2225/43
    • A method for frequency transposition in a communication device Or a hearing device, respectively, is disclosed by transforming an acoustical signal into an electrical signal (s) and by transforming the electrical signal from time domain into frequency domain to obtain a spectrum (S). A frequency transposition is being applied to the spectrum (S) in order to obtain a transposed spectrum (S′), whereby the frequency transposition is being defined by a nonlinear frequency transposition function. Thereby, it is possible to transpose lower frequencies almost linearly, while higher frequencies are transposed more strongly. As a result thereof, harmonic relationships are not distorted in the lower frequency range, and at the same time, higher frequencies can be moved to a lower frequency range, namely to an audible frequency range of the hearing impaired person. The transposition scheme can be applied to the complete signal spectrum without the need for switching between non-transposition and transposition processing for different parts of the signal. Therefore, no artifacts due to switching are encountered. A higher transmission quality is obtained because more information is taken into account for the transmission.
    • 通过将声信号变换为电信号并将电信号从时域变换为频域来获得频谱(S),分别公开了通信装置中的频率转置方法或听力装置。 为了获得转置频谱(S'),将频率变换应用于频谱(S),由此频率转置由非线性频率转置函数定义。 因此,可以将较低频率几乎线性地转置,而更高频率被更强地转置。 结果,谐波关系在较低的频率范围内不会失真,同时,较高的频率可以移动到较低的频率范围,即听觉受损者的听觉频率范围。 转置方案可以应用于完整的信号频谱,而不需要在信号的不同部分的非转置和转置处理之间进行切换。 因此,不会遇到由于切换引起的伪影。 获得更高的传输质量,因为传输更多的信息被考虑在内。