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Featured researches published by Hyejeong Jeon.


IEICE Electronics Express | 2008

Reliability measure for sound source localization

Hyejeong Jeon; Seungil Kim; Lag-Yong Kim; Hee-Youn Lee; Hyunsoo Yoon

In this paper, we propose a method of measuring the reliability of direction-of-arrival (DOA) estimation results. One idea for the reliability measure arises from a waterbed effect in DOA estimation. The reliability measure can be obtained from the difference between the maximum and minimum point of cross-correlation. If the calculated reliability measure has a lower value than a predefined threshold, the estimated DOA is regarded as a wrong result and subsequently discarded. Some experiments show that the proposed method can reject perturbed results of the estimated DOA.


Archive | 2011

Source Localization for Dual Speech Enhancement Technology

Seungil Kim; Hyejeong Jeon; Lagyoung Kim

Many researchers have investigated multi-channel speech enhancement techniques which can be used for the pre-processing of the speech recognition system. Numerous microphones can give high performance, but they require additional hardware costs and generate the design problem about microphone position. Therefore speech enhancement technique using two microphones is preferred in mobile phone such as LG KM900, iPhone 4 and Nexus One. For enhancing the speech with two or more microphones, the spatial information from the input signals incident angle should be used. Therefore, various sound source localization(SSL) methods have been used to estimate the talker’s direction-ofarrival(DOA). There are two main approaches to localization (Brandstein, 1995), (Dibase, 2000): the steered-beamformer approach, which includes various kinds of beamformers; and time-difference of arrival (TDOA) approach, which includes a generalized cross-correlation (GCC). The steered-beamformer approach has the capability of enhancing a desired signal that originates from a particular direction. The beamformer can steer its response at a particular angle; it can then find the spatial information required to maximize the beamformer output by scanning over a predefined spatial region. For this purpose, we can use a simple conventional delay-and-sum beamformer or many optimum beamfomers (Naguib, 1996). The TDOA approach uses classical time delay estimation techniques, such as cross-correlation, GCC, adaptive time delay estimation, and the adaptive eigenvalue decomposition algorithm (Chen et al., 2006). The most common time delay estimation method is the GCC, which consists of various types such as the unfiltered type, the maximum likelihood (ML) type, and the phase transform (PHAT) type. The GCC-PHAT is a widely used for TDOA estimation method because it works well in a realistic environment. The resolution of the DOA estimator is deeply related to the aperture size of the array and the number of microphone. A large aperture size and microphones make an accurate estimation result. Therefore, SSL method using two microphones cannot give the accurate direction-of-arrival (DOA) estimation result. Moreover, the implementation of a TDOA estimator requires a voice activity detector (Araki et al., 2007) or a speech/non speech detector (Lathoud, 2006). However, the TDOA estimation often shows a failed result in spite of these kinds of additional processing. Hence, reliable SSL algorithm is needed for dual channel speech enhancement system.


2008 Hands-Free Speech Communication and Microphone Arrays | 2008

Maximum Likelihood Detector of Reliable Direction-of-Arrival Estimate

Seungil Kim; Gunho Song; Hyejeong Jeon; Lag-Yong Kim

In this paper, we propose a maximum likelihood detector for reliable sound source localization system. It is based on making a measure of reliability of estimation results. The reliability can be reduced from waterbed effect of source localization algorithm. If the calculated reliability measure has a lower value than a predefined threshold, the estimated direction-of-arrival (DOA) is regarded as a wrong result and subsequently discarded. We determine the threshold for reliable estimate selection using maximum likelihood rule. Some experiments show that the proposed method can reject perturbed results of the estimated DOA.


Archive | 2010

METHOD FOR PROCESSING SOUND SOURCE IN TERMINAL AND TERMINAL USING THE SAME

Taesu Kim; Seungil Kim; Hyejeong Jeon; Gunho Song; Sangwhan Moon


Archive | 2012

METHOD FOR ENCODING VOICE SIGNAL, METHOD FOR DECODING VOICE SIGNAL, AND APPARATUS USING SAME

Younghan Lee; Gyuhyeok Jeong; Ingyu Kang; Hyejeong Jeon; Lagyoung Kim


Archive | 2012

Method of managing a jitter buffer, and jitter buffer using same

Ingyu Kang; Younghan Lee; Gyuhyeok Jeong; Hyejeong Jeon; Lagyoung Kim


Archive | 2011

METHOD AND DEVICE FOR PROCESSING AUDIO SIGNALS

Changheon Lee; 이창헌; Gyuhyeok Jeong; 정규혁; Lagyoung Kim; 김락용; Hyejeong Jeon; 전혜정; Byungsuk Lee; 이병석; Ingyu Kang; 강인규


Archive | 2012

VOICE SIGNAL ENCODING METHOD, VOICE SIGNAL DECODING METHOD, AND APPARATUS USING SAME

Younghan Lee; Gyuhyeok Jeong; Ingyu Kang; Hyejeong Jeon; Lagyoung Kim


Archive | 2013

Frame Loss Recovering Method, And Audio Decoding Method And Device Using Same

Gyuhyeok Jeong; Hyejeong Jeon; Ingyu Kang


Archive | 2013

Voice tracking apparatus and control method therefor

Byounggi Lee; Hyejeong Jeon; Heungkyu Lee

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