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Estimation of TFP growth : a semiparametric smooth coefficient approach

Kumbhakar, SC; Sun, K

Authors

SC Kumbhakar

K Sun



Abstract

This article uses a semiparametric smooth coefficient model (SPSCM) to estimate TFP growth and its components (scale and technical change). The SPSCM is derived from a nonparametric specification of the production technology represented by an input distance function (IDF), using a growth formulation. The functional coefficients of the SPSCM come naturally from the model and are fully flexible in the sense that no functional form of the underlying production technology is used to derive them. Another advantage of the SPSCM is that it can estimate bias (input and scale) in technical change in a fully flexible manner. We also used a translog IDF framework to estimate TFP growth components. A panel of U.S. electricity generating plants for the period 1986–1998 is used for this purpose. Comparing estimated TFP growth results from both parametric and semiparametric models against the Divisia TFP growth, we conclude that the SPSCM performs the best in tracking the temporal behavior of TFP growth.

Citation

Kumbhakar, S., & Sun, K. (2012). Estimation of TFP growth : a semiparametric smooth coefficient approach. Empirical Economics, 43(1), 1-24. https://doi.org/10.1007/s00181-011-0468-x

Journal Article Type Article
Acceptance Date Feb 1, 2011
Publication Date Aug 1, 2012
Deposit Date May 29, 2015
Journal Empirical Economics
Print ISSN 0377-7332
Electronic ISSN 1435-8921
Publisher Springer Verlag
Peer Reviewed Peer Reviewed
Volume 43
Issue 1
Pages 1-24
DOI https://doi.org/10.1007/s00181-011-0468-x
Publisher URL http://dx.doi.org/10.1007/s00181-011-0468-x
Related Public URLs http://link.springer.com/journal/181



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