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Updated: Dec 26, 2025

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Synthesis and Characterization of Supramolecular Colloids
Published on: April 22, 2016
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Synthesis from hyperproperties
Bernd Finkbeiner1, Christopher Hahn1, Philip Lukert1
1Reactive Systems Group, Saarland University, Saarbrücken, Germany.
Summary
We explored reactive synthesis for hyperproperties using HyperLTL, finding decidability for specific fragments. This research advances synthesis for complex properties like information flow and secrecy.
Area of Science:
- Formal methods
- Computer science
- Logic
Background:
- Hyperproperties generalize trace properties to sets of traces, crucial for policies like noninterference.
- Standard temporal logics (LTL, CTL) cannot express hyperproperties.
- HyperLTL offers a framework for these complex properties, encompassing realizability extensions.
Purpose of the Study:
- Investigate the reactive synthesis problem for hyperproperties specified in HyperLTL.
- Determine the decidability of synthesis for various HyperLTL fragments.
- Develop procedures for synthesizing systems and generating counterexamples for universal HyperLTL.
Main Methods:
- Formal analysis of the synthesis problem for HyperLTL.
- Identification and characterization of decidable fragments of HyperLTL.
- Development of a semi-decision procedure for universal HyperLTL.
Main Results:
- The synthesis problem is undecidable for full HyperLTL.
- Decidability is retained for the , , and fragments of HyperLTL.
- A semi-decision procedure for universal HyperLTL constructs implementations and counterexamples.
Conclusions:
- Synthesis for hyperproperties is feasible within specific HyperLTL fragments.
- The study provides a foundation for synthesizing systems with complex security and information-flow guarantees.
- Experimental results demonstrate the practical applicability of the developed methods.
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