Modeling Field-Level Conservation Tillage Adoption with Aggregate Choice Data
Tara Wade, Lyubov A. Kurkalova, Silvia Secchi, Wade, Tara, Kurkalova, Lyubov, Secchi, Silvia
Abstract
Open-access reader
Tara Wade, Lyubov A. Kurkalova, Silvia Secchi, Wade, Tara, Kurkalova, Lyubov, Secchi, Silvia
Abstract
Open-access reader
This empirical study of conservation tillage adoption relies on the logit model applied to fieldlevel information on agents’ attributes and county-aggregated measures of agents’ choices. The methodology treats the aggregated data as an expected value—the area-weighted group average of individual probabilities of choosing conservation tillage—subject to a measurement error. Using 2002 and 2004 data for Iowa, we estimate field-level costs of the adoption of conservation tillage. The results indicate that adoption is significantly affected by soil characteristics and crop rotation and highlight the heterogeneity in adoption costs when controlling for these characteristics.
OpenAlex reports 15 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This empirical study of conservation tillage adoption relies on the logit model applied to fieldlevel information on agents’ attributes and county-aggregated measures of agents’ choices. The methodology treats the aggregated data as an expected value—the area-weighted group average of individual probabilities of choosing conservation tillage—subject to a measurement error. Using 2002 and 2004 data for Iowa, we estimate field-level costs of the adoption of conservation tillage. The results indicate that adoption is significantly affected by soil characteristics and crop rotation and highlight the heterogeneity in adoption costs when controlling for these characteristics.
Key concepts: Tillage, Aggregate (composite), Field (mathematics), Environmental science, Econometrics, Agricultural engineering, Mathematics, Engineering