A Comparison of Alternative Methods to Construct to Confidence Intervals for the Estimate of a Break Date in Linear Regression Models
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- Seong Yeon Chang & Pierre Perron, 2018. "A comparison of alternative methods to construct confidence intervals for the estimate of a break date in linear regression models," Econometric Reviews, Taylor & Francis Journals, vol. 37(6), pages 577-601, July.
- Seong Yeon Chang & Pierre Perron, 2013. "A Comparison of Alternative Methods to Construct Confidence Intervals for the Estimate of a Break Date in Linear Regression Models," Boston University - Department of Economics - Working Papers Series wp2015-010, Boston University - Department of Economics, revised 11 Oct 2015.
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Citations
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Cited by:
- Yohei Yamamoto, 2018.
"A modified confidence set for the structural break date in linear regression models,"
Econometric Reviews, Taylor & Francis Journals, vol. 37(9), pages 974-999, October.
- Yamamoto, Yohei & 山本, 庸平, 2014. "A Modified Confidence Set for the Structural Break Date in Linear Regression Models," Discussion Papers 2014-08, Graduate School of Economics, Hitotsubashi University.
- Casini, Alessandro & Perron, Pierre, 2021.
"Continuous record Laplace-based inference about the break date in structural change models,"
Journal of Econometrics, Elsevier, vol. 224(1), pages 3-21.
- Alessandro Casini & Pierre Perron, 2018. "Continuous Record Laplace-based Inference about the Break Date in Structural Change Models," Papers 1804.00232, arXiv.org, revised May 2020.
- Alessandro Casini & Pierre Perron, 2020. "Continuous Record Laplace-based Inference about the Break Date in Structural Change Models," Boston University - Department of Economics - Working Papers Series WP2020-014, Boston University - Department of Economics.
- Alessandro Casini & Pierre Perron, "undated".
"Generalized Laplace Inference in Multiple Change-Points Models,"
Boston University - Department of Economics - Working Papers Series
WP2018-012, Boston University - Department of Economics.
- Alessandro Casini & Pierre Perron, 2018. "Generalized Laplace Inference in Multiple Change-Points Models," Papers 1803.10871, arXiv.org, revised Mar 2020.
- Alessandro Casini & Pierre Perron, 2018.
"Structural Breaks in Time Series,"
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1805.03807, arXiv.org.
- Alessandro Casini & Pierre Perron, 2018. "Structural Breaks in Time Series," Boston University - Department of Economics - Working Papers Series WP2019-02, Boston University - Department of Economics.
- Boldea, Otilia & Cornea-Madeira, Adriana & Hall, Alastair R., 2019.
"Bootstrapping structural change tests,"
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- Otilia Boldea & Adriana Cornea-Madeira & Alastair R. Hall, 2018. "Bootstrapping Structural Change Tests," Papers 1811.04125, arXiv.org.
- Eiji Kurozumi & Yohei Yamamoto, 2015.
"Confidence sets for the break date based on optimal tests,"
Econometrics Journal, Royal Economic Society, vol. 18(3), pages 412-435, October.
- KUROZUMI, Eiji & 黒住, 英司 & YAMAMOTO, Yohei & 山本, 庸平, 2015. "Confidence Sets for the Break Date Based on Optimal Tests," Discussion Papers 2015-01, Graduate School of Economics, Hitotsubashi University.
- Casini, Alessandro & Perron, Pierre, 2024.
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Journal of Econometrics, Elsevier, vol. 242(1).
- Alessandro Casini & Pierre Perron, 2021. "Prewhitened Long-Run Variance Estimation Robust to Nonstationarity," Papers 2103.02235, arXiv.org, revised Aug 2024.
- Alessandro Casini & Pierre Perron, 2018.
"Continuous Record Asymptotics for Change-Points Models,"
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1803.10881, arXiv.org, revised Nov 2021.
- Alessandro Casini & Pierre Perron, 2020. "Continuous Record Asymptotics for Change-Point Models," Boston University - Department of Economics - Working Papers Series WP2020-013, Boston University - Department of Economics.
- Pierre Perron & Yohei Yamamoto, 2021.
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- Alastair R. Hall & Denise R. Osborn & Nikolaos Sakkas, 2017.
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Econometric Reviews, Taylor & Francis Journals, vol. 36(6-9), pages 667-698, October.
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- Federico Belotti & Alessandro Casini & Leopoldo Catania & Stefano Grassi & Pierre Perron, 2023.
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Econometric Reviews, Taylor & Francis Journals, vol. 42(3), pages 281-306, February.
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- Casini, Alessandro & Perron, Pierre, 2022.
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Econometric Theory, Cambridge University Press, vol. 38(1), pages 35-65, February.
- Alessandro Casini & Pierre Perron, 2018. "Generalized Laplace Inference in Multiple Change-Points Models," Papers 1803.10871, arXiv.org, revised Jan 2021.
- Alessandro Casini & Pierre Perron, 2020. "Generalized Laplace Inference in Multiple Change-Points Models," Boston University - Department of Economics - Working Papers Series WP2020-015, Boston University - Department of Economics.
- Alessandro Casini, 2021. "Theory of Evolutionary Spectra for Heteroskedasticity and Autocorrelation Robust Inference in Possibly Misspecified and Nonstationary Models," Papers 2103.02981, arXiv.org, revised Aug 2024.
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"Confidence Sets for the Break Date in Cointegrating Regressions,"
Oxford Bulletin of Economics and Statistics, Department of Economics, University of Oxford, vol. 80(3), pages 514-535, June.
- Skrobotov Anton & Eiji Kurozumi, 2016. "Confidence Sets for the Break Date in Cointegrating Regressions," Working Papers wpaper-2016-268, Gaidar Institute for Economic Policy, revised 2016.
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- Alessandro Casini & Taosong Deng & Pierre Perron, 2021. "Theory of Low Frequency Contamination from Nonstationarity and Misspecification: Consequences for HAR Inference," Papers 2103.01604, arXiv.org, revised Sep 2024.
- Gantungalag Altansukh & Denise R. Osborn, 2022. "Using structural break inference for forecasting time series," Empirical Economics, Springer, vol. 63(1), pages 1-41, July.
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More about this item
Keywords
Structural change; ConÖdence interval; Serially correlated errors; Dy- namic regression models; Bootstrap; Inverted likelihood ratio.;All these keywords.
JEL classification:
- C12 - Mathematical and Quantitative Methods - - Econometric and Statistical Methods and Methodology: General - - - Hypothesis Testing: General
- C22 - Mathematical and Quantitative Methods - - Single Equation Models; Single Variables - - - Time-Series Models; Dynamic Quantile Regressions; Dynamic Treatment Effect Models; Diffusion Processes
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