Abstract
The stratified resampling mechanism is one of the resampling schemes commonly used in the resampling steps of particle filters. In the present paper, we prove a central limit theorem for this mechanism under the assumption that the initial positions are independent and identically distributed and the weights proportional to a positive function of the positions such that the image of their common distribution by this function has a non zero component absolutely continuous with respect to the Lebesgue measure. This result relies on the convergence in distribution of the fractional part of partial sums of the normalized weights to some random variable uniformly distributed on [0,1], which is established in the companion paper Flenghi and Jourdain (2024) by overcoming the difficulty raised by the coupling through the normalization. Under the conjecture that a similar convergence in distribution remains valid at the next steps of a particle filter which alternates selections according to the stratified resampling mechanism and mutations according to Markov kernels, we provide an inductive formula for the asymptotic variance of the resampled population after n steps.
| Original language | English |
|---|---|
| Pages (from-to) | 683-718 |
| Number of pages | 36 |
| Journal | Alea (Rio de Janeiro) |
| Volume | 23 |
| DOIs | |
| Publication status | Published - 1 Jan 2026 |
Keywords
- Monte Carlo methods
- central limit theorem
- particle filter
- stratified resampling mechanism
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