An MINLP Model for Scheduling and Placement of Quantum Circuits with a Heuristic Solution Approach

Author:

Bahreini Tayebeh1,Mohammadzadeh Naser1

Affiliation:

1. Shahed University, Tehran, Iran

Abstract

Recent works on quantum physical design have pushed the scheduling and placement of quantum circuit into their prominent positions. In this article, a mixed integer nonlinear programming model is proposed for the placement and scheduling of quantum circuits in such a way that latency is minimized. The proposed model determines locations of gates and the sequence of operations. The proposed model is proved reducible to a quadratic assignment problem which is a well-known NP-complete combinatorial optimization problem. Since it is impossible to find the optimal solution of this NP-complete problem for large quantum circuits within a reasonable amount of time, a metaheuristic solution method is developed for the proposed model. Some experiments are conducted to evaluate the performance of the developed solution approach. Experimental results show that the proposed approach improves average latency by about 24.09% for the attempted benchmarks.

Publisher

Association for Computing Machinery (ACM)

Subject

Electrical and Electronic Engineering,Hardware and Architecture,Software

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1. An Evolutionary Deep Learning Approach for Efficient Quantum Algorithms Transpilation;Lecture Notes in Computer Science;2024

2. Interaction graph-based characterization of quantum benchmarks for improving quantum circuit mapping techniques;Quantum Machine Intelligence;2023-10-06

3. 2QAN;Proceedings of the 49th Annual International Symposium on Computer Architecture;2022-06-11

4. Reoptimization of Quantum Circuits via Hierarchical Synthesis;2021 International Conference on Rebooting Computing (ICRC);2021-11

5. TILT: Achieving Higher Fidelity on a Trapped-Ion Linear-Tape Quantum Computing Architecture;2021 IEEE International Symposium on High-Performance Computer Architecture (HPCA);2021-02

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