paper-with-me

Papers

Low-Autocorrelation Binary Sequences: On Improved Merit Factors and Runtime Predictions to Achieve Them

2014-06-20 · Borko Bošković, Franc Brglez, Janez Brest

The search for binary sequences with a high figure of merit, known as the low autocorrelation binary sequence ($labs$}) problem, represents a formidable computational challenge. To mitigate the computational constraints of the problem, we consider solvers that accept odd values of sequence length $L$ and return solutions for skew-symmetric binary sequences only -- with the consequence that not all best solutions under this constraint will be optimal for each $L$. In order to improve both, the search for best merit factor $and$ the asymptotic runtime performance, we instrumented three stochastic solvers, the first two are state-of-the-art solvers that rely on variants of memetic and tabu search ($lssMAts$ and $lssRRts$), the third solver ($lssOrel$) organizes the search as a sequence of independent contiguous self-avoiding walk segments. By adapting a rigorous statistical methodology to performance testing of all three combinatorial solvers, experiments show that the solver with the best asymptotic average-case performance, $lssOrel\_8 = 0.000032*1.1504^L$, has the best chance of finding solutions that improve, as $L$ increases, figures of merit reported to date. The same methodology can be applied to engineering new $labs$ solvers that may return merit factors even closer to the conjectured asymptotic value of 12.3248.

📄 PDF Abstract BibTeX arXiv:1406.5301

Code (1)

borkob/git_labs 공식 구현

Similar Papers 제목 키워드 기반

Improved Branch-and-Bound for Low Autocorrelation Binary Sequences

2013-05-27 · S. D. Prestwich

The Low Autocorrelation Binary Sequence problem has applications in telecommunications, is of theoretical interest to physicists, and has inspired many optimisation researchers. Metaheuristics for the problem have progre…

Two-phase Optimization of Binary Sequences with Low Peak Sidelobe Level Value

2021-06-30 · Borko Bošković, Janez Brest

The search for binary sequences with low peak sidelobe level value represents a formidable computational problem. To locate better sequences for this problem, we designed a stochastic algorithm that uses two fitness func…

Designing Sequence with Minimum PSL Using Chebyshev Distance and its Application for Chaotic MIMO Radar Waveform Design

2020-10-07 · Hamid Esmaeili Najafabadi, Mohammad Ataei, Mohamad F. Sabahi

Controlling peak side-lobe level (PSL) is of great importance in high-resolution applications of multiple-input multiple-output (MIMO) radars. In this paper, designing sequences with good autocorrelation properties are s…

Radar waveform design

Hybrid Constructions of Binary Sequences with Low Autocorrelation Sidelobes

2021-04-21 · Miroslav Dimitrov, Tsonka Baitcheva, Nikolay Nikolov

In this work, a classical problem of the digital sequence design, or more precisely, finding binary sequences with optimal peak sidelobe level (PSL), is revisited. By combining some of our previous works, together with s…

Autocorrelation-Driven Synthesis of Antenna Arrays -- The Case of DS-Based Planar Isophoric Thinned Arrays

2021-02-04 · G. Oliveri, G. Gottardi, M. A. Hannan, N. Anselmi 외

A new methodology for the design of isophoric thinned arrays with a priori controlled pattern features is introduced. A fully analytical and general (i.e., valid for any lattice and set of weights) relationship between t…

valid