TY - JOUR
T1 - A review study of predictive model blast vibration attenuation equation by using neural network as an evaluator
AU - Wahyudi, Sugeng
AU - Shimada, Hideki
AU - Simangunsong, Ganda Marihot
AU - Sasaoka, Takashi
AU - Matsui, Kikuo
AU - Kramadibrata, Suseno
AU - Sulistianto, Budi
PY - 2011/3/1
Y1 - 2011/3/1
N2 - Over the years, a number of empirical attenuation equations (AEs) have been proposed. However, many established AEs are not accurate enough and sometimes they are confusing to use, particularly when the parameter associated with blasting and geological condition changes. Nowadays an accurate AE is an important requirement for a coal mine such as Kaltim Prima Coal (KPC) whose mining area in the East Kutai regency is located close to a residential area, the Sangatta town. In this study, several important and widely used predictors were used to predict peak particle velocity, while a back propagation artificial neural network is used as a comparator to evaluate the established AEs. Through this study, it is proposed that susceptibility assessment of conventional AEs be employed as tool to evaluate established AEs in a more adaptable way.
AB - Over the years, a number of empirical attenuation equations (AEs) have been proposed. However, many established AEs are not accurate enough and sometimes they are confusing to use, particularly when the parameter associated with blasting and geological condition changes. Nowadays an accurate AE is an important requirement for a coal mine such as Kaltim Prima Coal (KPC) whose mining area in the East Kutai regency is located close to a residential area, the Sangatta town. In this study, several important and widely used predictors were used to predict peak particle velocity, while a back propagation artificial neural network is used as a comparator to evaluate the established AEs. Through this study, it is proposed that susceptibility assessment of conventional AEs be employed as tool to evaluate established AEs in a more adaptable way.
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U2 - 10.1080/17480930.2010.509482
DO - 10.1080/17480930.2010.509482
M3 - Article
AN - SCOPUS:79952523325
SN - 1748-0930
VL - 25
SP - 69
EP - 85
JO - International Journal of Mining, Reclamation and Environment
JF - International Journal of Mining, Reclamation and Environment
IS - 1
ER -