Multi-Unit Coordination Dominates Crop Choice: An Empirical Study of a Heuristic Agent in the Kaggriculture Resource-Allocation Environment

We study heuristic agent design for Kaggriculture, a two-player, 720-turn farm-management simulation combining production scheduling, labor allocation, land expansion, and an inventory-driven dynamic pricing market. The question we ask is practical: which design decisions actually move the needle, measured against controlled baselines instead of a single demonstration run. We build a baseline ladder of four agents of increasing sophistication: a random policy, two single-tile crop loops (carrot and wheat), and a multi-unit "wheat swarm" that coordinates a farmer and several hired hands across many tiles with land expansion and a market-aware selling rule. We evaluate each across ten fixed random seeds against a common opponent. Multi-unit coordination and land expansion produce a large, statistically overwhelming effect (mean final money 6,304 USD vs. 3,508 to 3,709 USD for single-tile agents, Welch's t up to 11.8, p < 0.001, Cohen's d > 3.5); crop choice alone (wheat vs. carrot, both at single-tile scale) is a small but, on formal testing of the raw per-seed data, statistically real difference that is an order of magnitude smaller in effect size than the coordination effect, and confirmed nonparametrically with a Mann-Whitney U test. A paired ablation of a simple market-timing selling heuristic shows a small positive mean effect (+126 USD) with a standard deviation an order of magnitude larger (1,195 USD, sign flips in 5 of 10 seeds; paired t = 0.33, p = 0.75, Wilcoxon p = 1.00). This result is formally inconclusive and consistent with the environment's own damped glut-side pricing function for wheat. We describe the data pipeline used to turn episode runs into the per-seed results these comparisons are built on, document two implementation pitfalls specific to this environment (a file-loader ambiguity and a unit-coordination bug that silently nullified hired labor), and scope fertilizer use, livestock income, opponent modeling, and planning or search methods as untested future work.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-29
DOI
https://doi.org/10.5281/zenodo.23037572
Primary Topic
Agricultural Economics and Policy
Type
preprint
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Multi-Unit Coordination Dominates Crop Choice: An Empirical Study of a Heuristic Agent in the Kaggriculture Resource-Allocation Environment

Mrunal Gangurde
Zenodo (CERN European Organization for Nuclear Research)
Agricultural Economics and Policy
preprint

Multi-Unit Coordination Dominates Crop Choice: An Empirical Study of a Heuristic Agent in the Kaggriculture Resource-Allocation Environment

Mrunal Gangurde
preprint en

Abstract

We study heuristic agent design for Kaggriculture, a two-player, 720-turn farm-management simulation combining production scheduling, labor allocation, land expansion, and an inventory-driven dynamic pricing market. The question we ask is practical: which design decisions actually move the needle, measured against controlled baselines instead of a single demonstration run. We build a baseline ladder of four agents of increasing sophistication: a random policy, two single-tile crop loops (carrot and wheat), and a multi-unit "wheat swarm" that coordinates a farmer and several hired hands across many tiles with land expansion and a market-aware selling rule. We evaluate each across ten fixed random seeds against a common opponent. Multi-unit coordination and land expansion produce a large, statistically overwhelming effect (mean final money 6,304 USD vs. 3,508 to 3,709 USD for single-tile agents, Welch's t up to 11.8, p < 0.001, Cohen's d > 3.5); crop choice alone (wheat vs. carrot, both at single-tile scale) is a small but, on formal testing of the raw per-seed data, statistically real difference that is an order of magnitude smaller in effect size than the coordination effect, and confirmed nonparametrically with a Mann-Whitney U test. A paired ablation of a simple market-timing selling heuristic shows a small positive mean effect (+126 USD) with a standard deviation an order of magnitude larger (1,195 USD, sign flips in 5 of 10 seeds; paired t = 0.33, p = 0.75, Wilcoxon p = 1.00). This result is formally inconclusive and consistent with the environment's own damped glut-side pricing function for wheat. We describe the data pipeline used to turn episode runs into the per-seed results these comparisons are built on, document two implementation pitfalls specific to this environment (a file-loader ambiguity and a unit-coordination bug that silently nullified hired labor), and scope fertilizer use, livestock income, opponent modeling, and planning or search methods as untested future work.

Zenodo (CERN European Organization for Nuclear Research)
Agricultural Economics and Policy
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Multi-Unit Coordination Dominates Crop Choice: An Empirical Study of a Heuristic Agent in the Kaggriculture Resource-Allocation Environment — Mrunal Gangurde · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS