Getting closer to the goal by being less capable.

Manrique, Pedro D; Klein, Mason; Li, Yao Sheng; Xu, Chen; Hui, Pak Ming; Johnson, Neil F · Sci Adv · 2019

basic_science · Level V

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Abstract

Understanding how systems with many semi-autonomous parts reach a desired target is a key question in biology (e.g., <i>Drosophila</i> larvae seeking food), engineering (e.g., driverless navigation), medicine (e.g., reliable movement for brain-damaged individuals), and socioeconomics (e.g., bottom-up goal-driven human organizations). Centralized systems perform better with better components. Here, we show, by contrast, that a decentralized entity is more efficient at reaching a target when its components are less capable. Our findings reproduce experimental results for a living organism, predict that autonomous vehicles may perform better with simpler components, offer a fresh explanation for why biological evolution jumped from decentralized to centralized design, suggest how efficient movement might be achieved despite damaged centralized function, and provide a formula predicting the optimum capability of a system's components so that it comes as close as possible to its target or goal.

Medical subject headings