Author
Listed:
- Reina Ke Xin Li
- Andreas Park
- Andreas Veneris
- Srisht Fateh Singh
Abstract
Most currency pairs lack a direct liquid market, so international foreign exchange relies on routing transactions through a dominant vehicle currency. Multi-currency automated market makers (AMMs) offer an alternative by sharing liquidity across many currency pairs, facilitating direct cross-currency trade while exploiting liquidity consolidation. This paper studies a multi-currency pool design that minimizes trading cost. Under a constant-mean AMM architecture, equilibrium trading costs reflect the trade-off between reduced price impact from consolidated liquidity and increased impermanent loss from joint return risk. This work derives closed-form costs, characterizes optimal pool weights, and shows that the optimized multi-currency pool dominates the status quo over a range of market parameters. It then formulates the system-level problem of partitioning currencies into multi-currency pools, which is solved using a hierarchical agglomerative clustering algorithm. Empirically, using exchange rate and trade data for 43 currencies over 2008-2023, the algorithm runs in 1.6 seconds and produces pools with geographic and economic structure. Notably, this reduces realized costs by ~13% relative to the status quo of vehicle-currency routing, with gains stable through episodes of global financial stress.
Suggested Citation
Reina Ke Xin Li & Andreas Park & Andreas Veneris & Srisht Fateh Singh, 2026.
"Multi-Currency AMMs for Decentralized FOREX Markets: Feasibility & Optimal Design,"
Papers
2607.26405, arXiv.org.
Handle:
RePEc:arx:papers:2607.26405
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