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| Suy luận ngẫu nhiên Fisher× | Phương pháp lấy mẫu lại Jackknife× | Hồi quy phân vị (Các biến thể phi tham số)× | Hồi quy Bình phương Tối thiểu Thông thường (OLS)× | |
|---|---|---|---|---|
| Lĩnh vực≠ | Thống kê | Thống kê | Thống kê | Kinh tế lượng |
| Họ | Regression model | Regression model | Regression model | Regression model |
| Năm ra đời≠ | 1935 | 1956 | 1978 | 2019 |
| Người khởi xướng≠ | Ronald A. Fisher | Quenouille (1956); reviewed by Miller (1974) | Koenker & Bassett | Wooldridge (textbook treatment); classical least squares |
| Loại≠ | Exact permutation-based inference | Resampling / bias and variance estimation | Quantile regression (nonparametric variants) | Linear regression |
| Công trình gốc≠ | Fisher, R. A. (1935). The Design of Experiments. Oliver & Boyd. link ↗ | Quenouille, M. H. (1956). Notes on Bias in Estimation. Biometrika, 43(3/4), 353-360. DOI ↗ | Koenker, R. & Bassett, G. (1978). Regression Quantiles. Econometrica, 46(1), 33-50. DOI ↗ | Wooldridge, J. M. (2019). Introductory Econometrics: A Modern Approach (7th ed.). Cengage Learning. ISBN: 978-1337558860 |
| Tên gọi khác | fisher randomization test, permutation inference, exact randomization test, randomizasyon çıkarımı (fisher exact randomization) | leave-one-out resampling, Quenouille-Tukey jackknife, delete-one jackknife, Jackknife Yeniden Örnekleme | quantile regression, median regression, distribution-free quantile regression, Kantil Regresyon (Nonparametric Varyantlar) | ordinary least squares, classical linear regression, linear regression, en küçük kareler regresyonu |
| Liên quan | 5 | 5 | 5 | 5 |
| Tóm tắt≠ | Randomization inference, introduced by Ronald A. Fisher in The Design of Experiments (1935), computes an exact p-value by evaluating a test statistic across all possible treatment assignments under Fisher's sharp null hypothesis. It is regarded as the gold standard for analysing designed experiments because its validity rests on the known assignment mechanism rather than on distributional assumptions. | The jackknife is a classical resampling method that estimates the bias and variance of a statistic by systematically recomputing it with one observation left out at a time. Introduced by Quenouille in 1956 and later reviewed by Miller in 1974, it predates the bootstrap and remains a simple, deterministic tool for assessing estimator stability. | Quantile regression, introduced by Koenker and Bassett in 1978, models a chosen conditional quantile (such as the median or the 25th and 75th percentiles) of a continuous outcome rather than its mean. Its nonparametric variants fit these quantile relationships without assuming a distribution for the errors, making them a robust complement to mean-based regression on skewed data. | Ordinary Least Squares is the classical linear regression method that explains a continuous outcome as a linear combination of predictors. It estimates the coefficients by minimising the sum of squared residuals, and under the Gauss-Markov assumptions these estimates are the best linear unbiased estimator (BLUE). |
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