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    • 1. 发明申请
    • METHOD FOR ADJUSTING A HEARING DEVICE WITH FREQUENCY TRANSPOSITION AND CORRESPONDING ARRANGEMENT
    • 用于调整具有频率传输和对应布置的听觉设备的方法
    • US20100202625A1
    • 2010-08-12
    • US12671299
    • 2007-07-31
    • Michael BoretzkiRene BuerginHugh McDermott
    • Michael BoretzkiRene BuerginHugh McDermott
    • H04R29/00H04R25/00
    • H04R25/70
    • A method for adjusting a hearing system to the hearing preferences of a user of said hearing system is disclosed, wherein said hearing system is capable of carrying out frequency transposition of audio signals, which frequency transposition depends on at least one parameter. The method comprises the steps of A) carrying out a distinction test for examining said user's ability to distinguish between two stimulus signals which differ in their frequency contents; B) adjusting said at least one parameter in dependence of the result of said distinction test. The distinction test comprises the steps a2) consecutively playing said two stimulus signals to said user; b2) receiving from said user information indicative of whether said user perceived said two stimulus signals as two times the same sound or as two different sounds; c2) deriving a value from said information received from said user; wherein said result of said distinction test is dependent on said value.
    • 公开了一种用于将听力系统调整到所述听力系统的用户的听觉偏好的方法,其中所述听力系统能够执行音频信号的频率转置,该频率转置取决于至少一个参数。 该方法包括以下步骤:A)进行区别测试,以检查所述用户区分频率内容不同的两个刺激信号的能力; B)根据所述区分测试的结果调整所述至少一个参数。 区别测试包括步骤a2)连续地向所述用户播放所述两个刺激信号; b2)从所述用户接收指示所述用户是否感知到所述两个刺激信号是相同声音或两个不同声音的信息的信息; c2)从从所述用户接收的所述信息中导出值; 其中所述区分测试的所述结果取决于所述值。
    • 4. 发明申请
    • FEEDBACK SUPPRESSION IN SOUND SIGNAL PROCESSING USING FREQUENCY TRANSLATION
    • 使用频率翻译的声音信号处理中的反馈抑制
    • US20050094827A1
    • 2005-05-05
    • US10921550
    • 2004-08-19
    • Hugh McDermottAdam HersbachAndrea Simpson
    • Hugh McDermottAdam HersbachAndrea Simpson
    • H04R3/02H04R25/00H03G5/00H04R3/00
    • H04R25/453H04R3/02
    • A method of processing a sound signal in an audio amplification device using frequency transposition, the method including the steps of: (a) receiving (11) an input sound signal, (b) determining (19) gains for amplifying the input sound signal at a plurality of input frequencies, (c) transposing (20) one or more of the input frequencies of the amplified sound signal to generate one or more output signals at transposed frequencies, (d) determining (31-33) the presence of an undesired feedback signal component resulting from the amplification and frequency transposition of the input sound signal at the input frequencies, and (e) correcting (34) the output signal at each of the transposed frequencies to compensate for the presence of the undesired feedback signal component.
    • 一种使用频率转置处理音频放大装置中的声音信号的方法,所述方法包括以下步骤:(a)接收(11)输入声音信号,(b)确定(19)用于放大输入声音信号的增益 多个输入频率,(c)转置(20)放大的声音信号的一个或多个输入频率以在转置的频率处产生一个或多个输出信号;(d)确定(31-33)不期望的 由输入声音信号在输入频率处的放大和频率变换产生的反馈信号分量,以及(e)在每个转置频率处校正(34)输出信号以补偿不需要的反馈信号分量的存在。
    • 6. 发明授权
    • Variable sensitivity control for a cochlear implant
    • 耳蜗植入物的变量灵敏度控制
    • US07522960B2
    • 2009-04-21
    • US10474631
    • 2002-04-11
    • Peter Misha SeligmanHugh McDermott
    • Peter Misha SeligmanHugh McDermott
    • A61N1/00
    • H04R25/606H04R25/356
    • The invention provides an amplifier for providing adaptive operation of an auditory prosthesis. The amplifier receives an input signal and produces an output signal, and comprises a gain control. Estimates of the current noise floor value of the input signal are obtained, and in response to a change in the current estimated noise floor value, the gain control alters the amount of gain applied to the input signal. Further, in response to the change in the current estimated noise floor value, the gain control alters a gain compression ratio of the amplifier across the dynamic range of the amplifier. The present invention allows for adaptive operation of the amplifier responsive to varying noise floor levels, while maintaining desired gain characteristics of the amplifier across a range of input signal levels.
    • 本发明提供一种用于提供听觉假体的自适应操作的放大器。 放大器接收输入信号并产生输出信号,并包括增益控制。 获得输入信号的当前本底噪声值的估计值,并且响应于当前估计噪声基底值的变化,增益控制改变施加到输入信号的增益量。 此外,响应于当前估计的本底噪声值的变化,增益控制在放大器的动态范围上改变放大器的增益压缩比。 本发明允许响应于变化的噪声基底电平响应于放大器在输入信号电平范围内的期望的增益特性的自适应操作。
    • 7. 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。
    • 8. 发明申请
    • SOUND PROCESSING WITH FREQUENCY TRANSPOSITION
    • 声音处理与频率传输
    • US20060253209A1
    • 2006-11-09
    • US11380015
    • 2006-04-25
    • Adam HersbachHugh McDermottRalph Derleth
    • Adam HersbachHugh McDermottRalph Derleth
    • G06F17/00
    • H04R25/353G10L21/0264G10L21/0364G10L2021/065H04R2225/43
    • There is disclosed, in one aspect, a signal processing device (100) including: processing means (108) for generating a spectral representation of an input sound signal; frequency transposition means (110) for transposing at least part of the input signal's spectral representation to a transposed output frequency, said frequency transposition means (110) being configured to process the portion of the input signal spectral representation such that a phase relationship that existed in the input signal's spectral representation is substantially maintained in the transposed portion of the spectral representation; and synthesis means (112) for generating an output signal including the transposed portion of the input signal. Associated methods of processing a received sound signal are also disclosed.
    • 在一个方面,公开了一种信号处理装置(100),包括:用于产生输入声音信号的频谱表示的处理装置(108) 频率转置装置(110),用于将至少部分输入信号的频谱表示转置到转置的输出频率,所述频率转置装置(110)被配置为处理输入信号频谱表示的部分,使得存在于 输入信号的频谱表示基本上保持在频谱表示的转置部分中; 以及用于产生包括输入信号的转置部分的输出信号的合成装置(112)。 还公开了处理接收的声音信号的相关方法。
    • 10. 发明申请
    • Programmable auditory prosthesis with trainable automatic adaptation to acoustic conditions
    • 可编程听觉假体,具有可训练的自动适应声学条件
    • US20050129262A1
    • 2005-06-16
    • US10993359
    • 2004-11-22
    • Harvey DillonJustin ZakisHugh McDermottGitte Keidser
    • Harvey DillonJustin ZakisHugh McDermottGitte Keidser
    • A61N1/36H04R25/00
    • H04R25/606A61N1/36036H04R2225/41
    • An auditory prosthesis (30) comprising a microphone (27) for receiving the sound and producing a microphone signal responding to the received sound, an output device for providing audio signals in a form receivable by a user of the prosthesis (30), a sound processing unit (33) operable to receive the microphone signal and carry out a processing operation on the microphone signal to produce an output signal in a form suitable to operate the output device, wherein the sound processing unit (33) is operable in a first mode in which the processing operation comprises at least one variable processing factor which is adjustable by a user to a setting which causes the output signal of the sound processing unit (33) to be adjusted according to the preference of the user for the characteristics of the current acoustic environment.
    • 一种听觉假体(30),包括用于接收声音并产生响应于所接收的声音的麦克风信号的麦克风(27),用于以可由所述假体(30)的用户接收的形式提供音频信号的输出设备,声音 处理单元(33),其可操作以接收所述麦克风信号并对所述麦克风信号执行处理操作以产生适于操作所述输出设备的形式的输出信号,其中所述声音处理单元(33)可在第一模式 其中处理操作包括可由用户调节的至少一个可变处理因子,使得根据用户对于当前特性的偏好来调整声音处理单元(33)的输出信号的设置 声环境。