Combining observational and experimental data for causal inference considering data privacy

Fuente: arXiv
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Main Authors: Mann, Charlotte Z., Sales, Adam C., Gagnon-Bartsch, Johann A.
Format: Preprint
Published: 2023
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author Mann, Charlotte Z.
Sales, Adam C.
Gagnon-Bartsch, Johann A.
author_facet Mann, Charlotte Z.
Sales, Adam C.
Gagnon-Bartsch, Johann A.
contents Combining observational and experimental data for causal inference can improve treatment effect estimation. However, many observational data sets cannot be released due to data privacy considerations, so one researcher may not have access to both experimental and observational data. Nonetheless, a small amount of risk of disclosing sensitive information might be tolerable to organizations that house confidential data. In these cases, organizations can employ data privacy techniques, which decrease disclosure risk, potentially at the expense of data utility. In this paper, we explore disclosure limiting transformations of observational data, which can be combined with experimental data to estimate the sample and population average treatment effects. We consider leveraging observational data to improve generalizability of treatment effect estimates when a randomized experiment (RCT) is not representative of the population of interest, and to increase precision of treatment effect estimates. Through simulation studies, we illustrate the trade-off between privacy and utility when employing different disclosure limiting transformations. We find that leveraging transformed observational data in treatment effect estimation can still improve estimation over only using data from an RCT.
format Preprint
id arxiv_https___arxiv_org_abs_2308_02974
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Combining observational and experimental data for causal inference considering data privacy
Mann, Charlotte Z.
Sales, Adam C.
Gagnon-Bartsch, Johann A.
Methodology
Applications
Combining observational and experimental data for causal inference can improve treatment effect estimation. However, many observational data sets cannot be released due to data privacy considerations, so one researcher may not have access to both experimental and observational data. Nonetheless, a small amount of risk of disclosing sensitive information might be tolerable to organizations that house confidential data. In these cases, organizations can employ data privacy techniques, which decrease disclosure risk, potentially at the expense of data utility. In this paper, we explore disclosure limiting transformations of observational data, which can be combined with experimental data to estimate the sample and population average treatment effects. We consider leveraging observational data to improve generalizability of treatment effect estimates when a randomized experiment (RCT) is not representative of the population of interest, and to increase precision of treatment effect estimates. Through simulation studies, we illustrate the trade-off between privacy and utility when employing different disclosure limiting transformations. We find that leveraging transformed observational data in treatment effect estimation can still improve estimation over only using data from an RCT.
title Combining observational and experimental data for causal inference considering data privacy
topic Methodology
Applications
url https://arxiv.org/abs/2308.02974