Abstract

A planner in a network of strategic agents faces three entangled challenges: the optimum depends on agents' private information, queried agents may misreport to steer the outcome, and exact computation does not scale. We study these challenges in multi-activity network games with heterogeneous private technologies, in which the planner sets non-discriminatory prices. We show that the optimal prices admit a centrality-based decomposition of the welfare kernel: each agent's contribution scales with its squared centrality in a network reweighted by agents' preferences across activities. This decomposition motivates Poll, a polling algorithm in which the planner samples one agent per round, walks briefly through the agent's neighborhood, and updates the price from a local report. From the same decomposition flow three forms of efficiency: computationally, Poll uses significantly fewer operations than exact computation and other distributed methods, requiring up to three orders of magnitude less communication on a real-world network with over 300,000 agents; statistically, its query complexity scales with topology and preference heterogeneity rather than explicitly with population size; and economically, it converges to welfare-maximizing prices while admitting behavior-specific implementations that induce truthful reports and detect adversarial deviations.

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Open access
Green open access

Cite this article

APA 7

Zhang, C., Parasnis, R., & Amin, S. (2026). Network Intervention by Polling Strategic Agents. https://omanscience.com/en/articles/network-intervention-by-polling-strategic-agents

MLA 9

Zhang, Chenyu, et al. "Network Intervention by Polling Strategic Agents." https://omanscience.com/en/articles/network-intervention-by-polling-strategic-agents.

Chicago (author–date)

Zhang, Chenyu, Rohit Parasnis, and Saurabh Amin. 2026. "Network Intervention by Polling Strategic Agents." https://omanscience.com/en/articles/network-intervention-by-polling-strategic-agents.

Harvard

Zhang, C., Parasnis, R. and Amin, S. (2026) 'Network Intervention by Polling Strategic Agents', Available at: https://omanscience.com/en/articles/network-intervention-by-polling-strategic-agents.

Vancouver

Zhang C, Parasnis R, Amin S. Network Intervention by Polling Strategic Agents. https://omanscience.com/en/articles/network-intervention-by-polling-strategic-agents

IEEE

C. Zhang, R. Parasnis, and S. Amin, "Network Intervention by Polling Strategic Agents," https://omanscience.com/en/articles/network-intervention-by-polling-strategic-agents.