Mathematics Atlas

How Proof Is Made
Sign In
Text size
100%
Theme
Mathematical Object

Algebraic Riccati equation

Computation, Optimization and Control

An algebraic Riccati equation is a nonlinear matrix equation that arises in infinite-horizon optimal control problems, in either a continuous-time or a discrete-time setting. In continuous time, the equation seeks a symmetric matrix P satisfying A transpose times P, plus P times A, minus P times B times R inverse times B transpose times P, plus Q, equals zero; the discrete-time version has an analogous form built from the same system matrices. Algebraic Riccati equations are central to control theory because solving them yields the solution to the infinite-horizon, time-invariant linear-quadratic regulator problem and to linear-quadratic-Gaussian control, both of which balance the immediate cost of control action against the cost of letting a dynamic system's state deviate from a target over an unbounded time horizon. This description is adapted from Wikipedia contributors under CC BY-SA 4.0; changes were made. https://creativecommons.org/licenses/by-sa/4.0/

Facts
Classification
Object Kind
Function 1
Connections

Is Kind Of Object

Functions, Concepts

Entity-backed identity for the object-kind enum value this mathematical object already carries, resolved to a mathematics concept by an explicit value-to-entity map (phase 3 bucket conversion, docs\design_entity_backed_browse_buckets_20260928.md). The object-kind fact itself stays on the object unchanged.

Sources
1. Algebraic Riccati Equation (Wikipedia)
Comments (0)
No comments yet. Be the first to share a thought.
Reader Challenges (0)
No disputes yet. Spotted an error or a better source? Open the first one.