Optimal Trade Execution in Illiquid Markets
Trading and Market Microstructure
2012-05-07 v1
Abstract
We study optimal trade execution strategies in financial markets with discrete order flow. The agent has a finite liquidation horizon and must minimize price impact given a random number of incoming trade counterparties. Assuming that the order flow is given by a Poisson process, we give a full analysis of the properties and computation of the optimal dynamic execution strategy. Extensions, whereby (a) is a fully-observed regime-switching Poisson process; and (b) is a Markov-modulated compound Poisson process driven by a hidden Markov chain, are also considered. We derive and compare the properties of the three cases and illustrate our results with computational examples.
Keywords
Cite
@article{arxiv.0902.2516,
title = {Optimal Trade Execution in Illiquid Markets},
author = {Erhan Bayraktar and Mike Ludkovski},
journal= {arXiv preprint arXiv:0902.2516},
year = {2012}
}