Search arXivSearch

arXiv · 1910.13680

Non-conventional Estimation Theorems Concerning a Ubiquitous Bilinear Stochastic Differential System: a Control Perspective

Abstract

Stochastic differential equations and the associated partial differential equations are the cornerstone formalism in stochastic control problems. The universality of bilinear stochastic systems can be found in autonomous systems, non-linear dynamic circuits, and mathematical finance. Consensus on the Ito versus Stratonovich suggests stochastic systems embedded with Stratonovich differential to describe the stochastic evolution of the state vector of real physical systems. The mathematical theory of a scalar time-varying bilinear Stratonovich stochastic differential equation is available in current texts. The theory of scalar Stratonovich systems was developed by deriving their closed-form solutions and then conditional moments. Practical problems obeying vector time-varying bilinear Stratonovich stochastic differential equations are ubiquitous. However, their formal and systematic estimation theory is not available. In this paper, we develop the results for non-homogeneous Markov processes obeying the vector Stratonovich bilinear stochastic differential equation. Then, the theory of the paper is applied to a stochastic three-phase rectifier circuit. The stochastic evolution of the rectifier state vector is constructed by utilizing the Euler-Lagrange theory and embedding Stratonovich differential. Since the theory of the paper accounts for the multidimensionality as well as respects Stratonovich stochasticity of the ubiquitous bilinear system, the estimation Theorems will be remarkably useful to estimation and control of nonlinear real physical systems. Finally, this paper will be of interest to control and computational practitioners aspiring for the formal theory of bilinear stochastic systems arising from their application as well as applied mathematicians looking for applications of formal bilinear stochastic estimation theory.

Explore related subjects

Keep this discovery

BibTeXRIS

Sandhya Rathore, Shambhu Nath Sharma, Dani Juricic. 2019-10-30. Non-conventional Estimation Theorems Concerning a Ubiquitous Bilinear Stochastic Differential System: a Control Perspective. https://arxiv.org/abs/1910.13680

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related papers

Deterministic and Random Bipartite Matching on General Networks: Convex Flow Reformulation, Asymptotic Properties, and Fast Algorithms

Minimum-distance bipartite matching on general networks has numerous applications various fields. This paper first focuses on deterministic problems and presents an exact edgewise-separable convex-flow reformulation. By introducing a smooth monotone rearrangement approximation of the edge-wise imbalance profiles, the convex-flow reformulation's can be solved efficiently. If we further conduct a first-order resistance-based approximation of the convex program, a one-step Laplacian-based estimator can be analytically derived in closed forms. The paper also studies random problems where supply and demand points are randomly distributed. We show that the expected optimal matching distance scales with the square root of the number of points if the supply/demand point distributions are identical, or linearly otherwise. In the former case, the optimal flow is proven to be centered, symmetric, and sub-Gaussian. In the latter case, the limiting resistance network characterizes how supply-demand imbalance is redistributed and motivates a fast algorithm that approximate the optimal flow based on the limiting resistance. Numerical experiments show that the proposed estimators closely approximate the exact matching cost while substantially reducing computation time. The proven theoretical properties of the random matching solution are numerically verified by large-scale Monte Carlo simulations.

math.OC

Conformal-DRO: Distributionally Robust Optimization with Conformalized Ambiguity Set

Data-driven distributionally robust optimization (DRO) typically treats the conditional outcome law as fixed and uses ambiguity sets to capture estimation error. This paper studies latent distributional heterogeneity, where each instance has an unobserved law but contributes only one observation, so uncertainty persists even if the mixture law is known. We propose Conformal-DRO, which uses nested conformal regions to construct an ambiguity set for the future latent law. Under exchangeability, the set covers this law with probability at least $1-\alpha$ in finite samples, without estimating underlying latent laws or their mixing mechanism. The conformal path induces a data-driven transport geometry, while $\alpha$ determines the radius. The worst-case problem reduces to a finite linear program over conformal shells and admits sparse adversarial solutions. The resulting robust value provides a finite-sample certificate for the selected decision's expected cost.

math.OC

The best approximation tuple: an extension of the Cheney-Goldstein algorithm and results to the multiple sets case

In this paper we extend the algorithm and several results published in the celebrated 1959 paper of Cheney and Goldstein about the best approximation pair (BAP) problem in two separate directions. One is the consideration of more than two sets. The other is the ability to handle each set as an intersections of a finite family of sets. We call the resulting problem the "Best Approximation Tuple (BAT) problem". The fundamental observation that leads to this generalizations is to recognize and handle one set (the "pivot set") as different from the remaining sets (the "satellite sets") instead of seeking cycles as the minimizers of a target functional. This enable us to overcome a certain theoretical obstacle related to cycles and minimizers of general functionals. We prove the convergence of the algorithm to the unique solution of the problem in the Euclidean case with strictly convex and compact satellite sets. Because of the lack of Fej\'er monotonicity, our convergence analysis is not standard, and is based on almost unknown properties of orthogonal projections regarding equality and inequality in the definition of nonexpansiveness.

math.OC