paper-with-me

홈 › Papers

Internal Feedback in Biological Control: Diversity, Delays, and Standard Theory

2021-09-24 · Josefin Stenberg, Jing Shuang Li, Anish A. Sarma, John C. Doyle

Neural architectures in organisms support efficient and robust control that is beyond the capability of engineered architectures. Unraveling the function of such architectures is challenging; their components are highly diverse and heterogeneous in their morphology, physiology, and biochemistry, and often obey severe speed-accuracy tradeoffs; they also contain many cryptic internal feedback pathways (IFPs). We claim that IFPs are crucial architectural features that strategically combine highly diverse components to give rise to optimal performance. We demonstrate this in a case study, and additionally describe how sensing and actuation delays in standard control (state feedback, full control, output feedback) give rise to independent and separable sources of IFPs. Our case study is an LQR problem with two types of sensors, one fast but sparse and one dense but slow. Controllers using only one type of sensor perform poorly, often failing even to stabilize; controllers using both types of sensors perform extremely well, demonstrating a strong diversity-enabled sweet spot (DESS). We demonstrate that IFPs are key in enabling this DESS, and additionally that with IFPs removed, controllers with delayed sensing perform poorly. The existence of strong DESS and IFP in this simple example suggest that these are fundamental architectural features in any complex system with diverse components, such as organisms and cyberphysical systems.

📄 PDF Abstract BibTeX arXiv:2109.11752

Code (0)

등록된 구현이 없습니다.

Tasks

Diversity

Similar Papers 제목 키워드 기반

Internal feedback in the cortical perception-action loop enables fast and accurate behavior

2022-11-10 · Jing Shuang Li, Anish A. Sarma, Terrence J. Sejnowski, John C. Doyle

Animals move smoothly and reliably in unpredictable environments. Models of sensorimotor control have assumed that sensory information from the environment leads to actions, which then act back on the environment, creati…

State Estimation

Internal Feedback in Biological Control: Architectures and Examples

2021-10-11 · Anish A. Sarma, Jing Shuang Li, Josefin Stenberg, Gwyneth Card 외

Feedback is ubiquitous in both biological and engineered control systems. In biology, in addition to typical feedback between plant and controller, we observe feedback pathways within control systems, which we call inter…

Diversity

Stochastic switching of delayed feedback suppresses oscillations in genetic regulatory systems

2023-02-09 · Bhargav R. Karamched, Christopher E. Miles

Delays and stochasticity have both served as crucially valuable ingredients in mathematical descriptions of control, physical, and biological systems. In this work, we investigate how explicitly dynamical stochasticity i…

Efficient and robust control with spikes that constrain free energy

2026-03-10 · André Urbano, Pablo Lanillos, Sander Keemink arxiv

Animal brains exhibit remarkable efficiency in perception and action, while being robust to both external and internal perturbations. The means by which brains accomplish this remains, for now, poorly understood, hinderi…

A bicycle can be balanced by stochastic optimal feedback control but only with accurate speed estimates

2022-02-23 · Eric Maris

Balancing a bicycle is typical for the balance control humans perform as a part of a whole range of behaviors (walking, running, skating, skiing, etc.). This paper presents a general model of balance control and applies …