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ARXIV:2604.19851 · AUTOMATED REASONING · SUBMITTED 23 APR · 05:11 UTC · FRESHNESS STALE
ARXIV:2604.19851AUTOMATED REASONINGSUBMITTED 23 APR · 05:11 UTCFRESHNESS STALEItai Zilberstein · Ratip Emin Berker · George Li · Ruben Martins · arXiv
This paper explores automated reasoning and dual bounds for Condorcet dimensions of elections, providing a framework for searching ranked voting data and a path toward proving smaller committee sufficiency.
Opportunity summary
Pain This paper explores automated reasoning and dual bounds for Condorcet dimensions of elections, providing a framework for searching ranked voting data and a path toward proving smaller committee sufficiency.
Evidence 0 refs | 3 sources | 50% coverage
Blocker Evidence unverified
This paper explores automated reasoning and dual bounds for Condorcet dimensions of elections, providing a framework for searching ranked voting data and a path toward proving smaller committee sufficiency. Condorcet's paradox shows that some…
In an election where $n$ voters rank $m$ candidates, a Condorcet winning set is a committee of $k$ candidates such that for any outside candidate, a majority of voters prefer some committee member. Condorcet's…
ScienceToStartup currently rates this 3.0/10 on the public viability pass. Condorcet's paradox shows that some elections admit no Condorcet winning sets with a single candidate (i.e., $k=1$), and the same can be shown for…
Automated Reasoning moved forward this cycle; last verified April 2026. Public score 3.0/10.
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This paper explores automated reasoning and dual bounds for Condorcet dimensions of elections, providing a framework for searching ranked voting data and a path toward proving smaller committee sufficiency.
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10.48550/arXiv.2604.19851This paper explores automated reasoning and dual bounds for Condorcet dimensions of elections, providing a framework for searching ranked voting data and a path toward proving smaller committee sufficiency.
Abstract
In an election where $n$ voters rank $m$ candidates, a Condorcet winning set is a committee of $k$ candidates such that for any outside candidate, a majority of voters prefer some committee member. Condorcet's paradox shows that some elections admit no Condorcet winning sets with a single candidate (i.e., $k=1$), and the same can be shown for $k=2$. On the other hand, recent work proves that a set of size $k=5$ exists for every election. This leaves an important theoretical gap between the best known lower bound $(k\geq 3)$ and upper bound $(k \leq 5)$ for the number of candidates needed to guarantee existence. We aim to close the gap between the existence guarantees and impossibility results for Condorcet winning sets. We explore an automated reasoning approach to tighten these bounds. We design a mixed-integer linear program (MILP) to search for elections that would serve as counter-examples to conjectured bounds. We employ a number of optimizations, such as symmetry breaking, subsampling, and constraint generation, to enhance the search and model effectively infinite electorates. Furthermore, we analyze the dual of the linear programming relaxation as a path towards obtaining a new upper bound. Despite extensive search on moderate-sized elections, we fail to find any election requiring a committee larger than size 3. Motivated by our experimental results in this direction, we simplify the dual linear program and formulate a conjecture which, if true, implies that a winning set of size 4 always exists. Our automated reasoning results provide strong empirical evidence that the Condorcet dimension of any election may be smaller than currently known upper bounds, at least for small instances. We offer a general-purpose framework for searching elections in ranked voting and a new, concrete analytical path via duality toward proving that smaller committees suffice.
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What was readable
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Dimensions overall score 3.0
PROBLEM
This paper explores automated reasoning and dual bounds for Condorcet dimensions of elections, providing a framework for searching ranked voting data and a path toward proving smaller committee sufficiency. Condorcet's paradox shows that some elections admit no Condorcet winning...
METHOD
In an election where $n$ voters rank $m$ candidates, a Condorcet winning set is a committee of $k$ candidates such that for any outside candidate, a majority of voters prefer some committee member. Condorcet's paradox shows that some elections admit no Condorcet winning sets wit...
RESULT
ScienceToStartup currently rates this 3.0/10 on the public viability pass. Condorcet's paradox shows that some elections admit no Condorcet winning sets with a single candidate (i.e., $k=1$), and the same can be shown for $k=2$.
WHY NOW
Automated Reasoning moved forward this cycle; last verified April 2026. Public score 3.0/10.
{"file name": "input.pdf", "number of pages": 9, "author": "Itai Zilberstein; Ratip Emin Berker; George Li; Ruben Martins"
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This paper explores automated reasoning and dual bounds for Condorcet dimensions of elections, providing a framework for searching ranked voting data and a path toward proving smaller committee sufficiency.
Segment
Automated Reasoning
Adoption evidence
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Commercial read
3.0/10 public viability
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Build readiness
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Technical feasibility
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Gaps
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0 references, 3 sources, 50% evidence coverage.
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Buyer clarity
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