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Masking of low-frequency signals by high-frequency, high-level narrow bands of noise

机译:高频,高电平窄带噪声对低频信号的掩盖

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Low-frequency masking by intense high-frequency noise bands, referred to as remote masking (RM), was the first evidence to challenge energy-detection models of signal detection. Its underlying mechanisms remain unknown. RM was measured in five normal-hearing young-adults at 250, 350, 500, and 700 Hz using equal-power, spectrally matched random-phase noise (RPN) and low-noise noise (LNN) narrowband maskers. RM was also measured using equal-power, two-tone complex (TC2) and eight-tone complex (TC8). Maskers were centered at 3000 Hz with one or two equivalent rectangular bandwidths (ERBs). Masker levels varied from 80 to 95 dB sound pressure level in 5 dB steps. LNN produced negligible masking for all conditions. An increase in bandwidth in RPN yielded greater masking over a wider frequency region. Masking for TC2 was limited to 350 and 700 Hz for one ERB but shifted to only 700 Hz for two ERBs. A spread of masking to 500 and 700 Hz was observed for TC8 when the bandwidth was increased from one to two ERBs. Results suggest that high-frequency noise bands at high levels could generate significant low-frequency masking. It is possible that listeners experience significant RM due to the amplification of various competing noises that might have significant implications for speech perception in noise.
机译:通过强烈的高频噪声带进行的低频屏蔽(称为远程屏蔽(RM))是挑战信号检测能量检测模型的第一个证据。其基本机制仍然未知。使用相等功率,频谱匹配的随机相位噪声(RPN)和低噪声噪声(LNN)窄带掩蔽器,在250、350、500和700 Hz的五个正常听力的成年人中测量RM。 RM还使用等功率的两音复数(TC2)和八音复数(TC8)测量。掩蔽器的中心频率为3000 Hz,具有一或两个等效的矩形带宽(ERB)。掩蔽器的声压级从80到95 dB不等,步长为5 dB。 LNN在所有条件下产生的掩膜微不足道。 RPN带宽的增加在更宽的频率区域上产生了更大的屏蔽。对于一个ERB,TC2的屏蔽被限制为350和700 Hz,但对于两个ERB,其屏蔽仅变为700 Hz。当带宽从一个ERB增加到两个ERB时,对于TC8,观察到掩蔽扩展到500和700 Hz。结果表明,高电平的高频噪声带可能会产生明显的低频掩蔽。由于各种竞争性噪声的放大,听众可能会经历显着的RM,这可能会对噪声中的语音感知产生重大影响。

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