Implementation of an oracle-structured bundle method for distributed optimization

We consider the problem of minimizing a function that is a sum of convex agent functions plus a convex common public function that couples them. The agent functions can only be accessed via a subgradient oracle; the public function is assumed to be structured and expressible in a domain specific lan...

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Published inOptimization and engineering Vol. 25; no. 3; pp. 1685 - 1718
Main Authors Parshakova, Tetiana, Zhang, Fangzhao, Boyd, Stephen
Format Journal Article
LanguageEnglish
Published New York Springer US 01.09.2024
Springer Nature B.V
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ISSN1389-4420
1573-2924
DOI10.1007/s11081-023-09859-z

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Abstract We consider the problem of minimizing a function that is a sum of convex agent functions plus a convex common public function that couples them. The agent functions can only be accessed via a subgradient oracle; the public function is assumed to be structured and expressible in a domain specific language (DSL) for convex optimization. We focus on the case when the evaluation of the agent oracles can require significant effort, which justifies the use of solution methods that carry out significant computation in each iteration. To solve this problem we integrate multiple known techniques (or adaptations of known techniques) for bundle-type algorithms, obtaining a method which has a number of practical advantages over other methods that are compatible with our access methods, such as proximal subgradient methods. First, it is reliable, and works well across a number of applications. Second, it has very few parameters that need to be tuned, and works well with sensible default values. Third, it typically produces a reasonable approximate solution in just a few tens of iterations. This paper is accompanied by an open-source implementation of the proposed solver, available at https://github.com/cvxgrp/OSBDO .
AbstractList We consider the problem of minimizing a function that is a sum of convex agent functions plus a convex common public function that couples them. The agent functions can only be accessed via a subgradient oracle; the public function is assumed to be structured and expressible in a domain specific language (DSL) for convex optimization. We focus on the case when the evaluation of the agent oracles can require significant effort, which justifies the use of solution methods that carry out significant computation in each iteration. To solve this problem we integrate multiple known techniques (or adaptations of known techniques) for bundle-type algorithms, obtaining a method which has a number of practical advantages over other methods that are compatible with our access methods, such as proximal subgradient methods. First, it is reliable, and works well across a number of applications. Second, it has very few parameters that need to be tuned, and works well with sensible default values. Third, it typically produces a reasonable approximate solution in just a few tens of iterations. This paper is accompanied by an open-source implementation of the proposed solver, available at https://github.com/cvxgrp/OSBDO .
We consider the problem of minimizing a function that is a sum of convex agent functions plus a convex common public function that couples them. The agent functions can only be accessed via a subgradient oracle; the public function is assumed to be structured and expressible in a domain specific language (DSL) for convex optimization. We focus on the case when the evaluation of the agent oracles can require significant effort, which justifies the use of solution methods that carry out significant computation in each iteration. To solve this problem we integrate multiple known techniques (or adaptations of known techniques) for bundle-type algorithms, obtaining a method which has a number of practical advantages over other methods that are compatible with our access methods, such as proximal subgradient methods. First, it is reliable, and works well across a number of applications. Second, it has very few parameters that need to be tuned, and works well with sensible default values. Third, it typically produces a reasonable approximate solution in just a few tens of iterations. This paper is accompanied by an open-source implementation of the proposed solver, available at https://github.com/cvxgrp/OSBDO.
Author Zhang, Fangzhao
Boyd, Stephen
Parshakova, Tetiana
Author_xml – sequence: 1
  givenname: Tetiana
  surname: Parshakova
  fullname: Parshakova, Tetiana
  email: tetianap@stanford.edu
  organization: Institute for Computational and Mathematical Engineering, Stanford University
– sequence: 2
  givenname: Fangzhao
  surname: Zhang
  fullname: Zhang, Fangzhao
  organization: Department of Electrical Engineering, Stanford University
– sequence: 3
  givenname: Stephen
  surname: Boyd
  fullname: Boyd, Stephen
  organization: Department of Electrical Engineering, Stanford University
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CitedBy_id crossref_primary_10_1007_s10957_024_02412_7
crossref_primary_10_1109_LCSYS_2024_3408754
crossref_primary_10_1016_j_engappai_2025_110009
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Keywords Distributed optimization
Cutting-plane method
Convex optimization
Finite memory
Bundle-type method
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Snippet We consider the problem of minimizing a function that is a sum of convex agent functions plus a convex common public function that couples them. The agent...
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SubjectTerms Algorithms
Control
Convexity
Domain specific languages
Engineering
Environmental Management
Financial Engineering
Mathematics
Mathematics and Statistics
Operations Research/Decision Theory
Optimization
Research Article
Systems Theory
Title Implementation of an oracle-structured bundle method for distributed optimization
URI https://link.springer.com/article/10.1007/s11081-023-09859-z
https://www.proquest.com/docview/3100893593
Volume 25
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