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  • Search: subject:"non-Donsker empirical process methods"
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Year of publication
Subject
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adaptive moment selection 3 anti-concentration inequalities 3 concentration inequalities 3 conditional moments 3 infinite dimensional constraints 3 linear programming 3 moderate deviations 3 non-Donsker empirical process methods 3 strong approximation 3 Bound analysis 2 Mathematische Optimierung 2 Schätztheorie 2 partial identification 2 Inferenzstatistik 1 Theorie 1 bound analysis 1 partial identication 1
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Online availability
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Free 3
Type of publication
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Book / Working Paper 3
Type of publication (narrower categories)
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Working Paper 2
Language
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English 2 Undetermined 1
Author
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Chernozhukov, Victor 3 Lee, Sokbae 2 Rosen, Adam 2 Rosen, Adam M. 1 Sokbae 'Simon' Lee 1
Institution
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Centre for Microdata Methods and Practice (CEMMAP) 1
Published in...
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cemmap working paper 2 CeMMAP working papers 1
Source
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EconStor 2 RePEc 1
Showing 1 - 3 of 3
Cover Image
Intersection bounds: Estimation and inference
Chernozhukov, Victor; Lee, Sokbae; Rosen, Adam - 2012
We develop a practical and novel method for inference on intersection bounds, namely bounds defined by either the infimum or supremum of a parametric or nonparametric function, or equivalently, the value of a linear programming problem with a potentially infinite constraint set. We show that...
Persistent link: https://www.econbiz.de/10010318689
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Cover Image
Intersection bounds: estimation and inference
Chernozhukov, Victor; Sokbae 'Simon' Lee; Rosen, Adam - Centre for Microdata Methods and Practice (CEMMAP) - 2012
We develop a practical and novel method for inference on intersection bounds, namely bounds defined by either the infimum or supremum of a parametric or nonparametric function, or equivalently, the value of a linear programming problem with a potentially infinite constraint set. We show that...
Persistent link: https://www.econbiz.de/10010593713
Saved in:
Cover Image
Intersection bounds: Estimation and inference
Chernozhukov, Victor; Lee, Sokbae; Rosen, Adam M. - 2011
We develop a practical and novel method for inference on intersection bounds, namely bounds defined by either the infimum or supremum of a parametric or nonparametric function, or equivalently, the value of a linear programming problem with a potentially infinite constraint set. Our approach is...
Persistent link: https://www.econbiz.de/10010288330
Saved in:
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