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Near-Optimal Parameterization of the Intersection of Quadrics: I. The Generic Algorithm

Identifieur interne : 003509 ( Hal/Corpus ); précédent : 003508; suivant : 003510

Near-Optimal Parameterization of the Intersection of Quadrics: I. The Generic Algorithm

Auteurs : Laurent Dupont ; Daniel Lazard ; Sylvain Lazard ; Sylvain Petitjean

Source :

RBID : Hal:inria-00186089

English descriptors

Abstract

We present an exact and efficient algorithm for computing a proper parametric representation of the intersection of two quadrics in three-dimensional real space given by implicit equations with rational coefficients. The output functions parameterizing the intersection in projective space are polynomial, whenever it is possible, which is the case when the intersection is not a smooth quartic (for example, a singular quartic, a cubic and a line, and two conics). Furthermore, the parameterization is near-optimal in the sense that the number of distinct square roots appearing in the coefficients of these functions is minimal, except in a small number of well-identified cases where there may be an extra square root. In addition, the algorithm is practical: a complete and efficient C++ implementation is described in Lazard et al. (2006). In Part I, we present an algorithm for computing a parameterization of the intersection of two arbitrary quadrics which we prove to be near-optimal in the generic, smooth quartic, case. Parts~II and~III treat the singular cases. We present in Part~II the first classification of pencils of quadrics according to the real type of the intersection and we show how this classification can be used to efficiently determine the type of the real part of the intersection of two arbitrary quadrics. This classification is at the core of the design of our algorithms for computing near-optimal parameterizations of the real part of the intersection in all singular cases. We present these algorithms in Part~III and give examples covering all the possible situations in terms of both the real type of intersection and the number and depth of square roots appearing in the coefficients.

Url:
DOI: 10.1016/j.jsc.2007.10.006

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Hal:inria-00186089

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<div type="abstract" xml:lang="en">We present an exact and efficient algorithm for computing a proper parametric representation of the intersection of two quadrics in three-dimensional real space given by implicit equations with rational coefficients. The output functions parameterizing the intersection in projective space are polynomial, whenever it is possible, which is the case when the intersection is not a smooth quartic (for example, a singular quartic, a cubic and a line, and two conics). Furthermore, the parameterization is near-optimal in the sense that the number of distinct square roots appearing in the coefficients of these functions is minimal, except in a small number of well-identified cases where there may be an extra square root. In addition, the algorithm is practical: a complete and efficient C++ implementation is described in Lazard et al. (2006). In Part I, we present an algorithm for computing a parameterization of the intersection of two arbitrary quadrics which we prove to be near-optimal in the generic, smooth quartic, case. Parts~II and~III treat the singular cases. We present in Part~II the first classification of pencils of quadrics according to the real type of the intersection and we show how this classification can be used to efficiently determine the type of the real part of the intersection of two arbitrary quadrics. This classification is at the core of the design of our algorithms for computing near-optimal parameterizations of the real part of the intersection in all singular cases. We present these algorithms in Part~III and give examples covering all the possible situations in terms of both the real type of intersection and the number and depth of square roots appearing in the coefficients.</div>
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<idno type="idHal">sylvain-lazard</idno>
<idno type="halAuthorId">661543</idno>
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<author role="aut">
<persName>
<forename type="first">Sylvain</forename>
<surname>Petitjean</surname>
</persName>
<idno type="halAuthorId">223084</idno>
<orgName ref="#struct-300009"></orgName>
<affiliation ref="#struct-2573"></affiliation>
</author>
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<monogr>
<idno type="halJournalId" status="VALID">16278</idno>
<idno type="issn">0747-7171</idno>
<idno type="eissn">1095-855X</idno>
<title level="j">Journal of Symbolic Computation</title>
<imprint>
<publisher>Elsevier</publisher>
<biblScope unit="volume">43</biblScope>
<biblScope unit="issue">3</biblScope>
<biblScope unit="pp">168--191</biblScope>
<date type="datePub">2008</date>
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<idno type="doi">10.1016/j.jsc.2007.10.006</idno>
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<langUsage>
<language ident="en">English</language>
</langUsage>
<textClass>
<keywords scheme="author">
<term xml:lang="en">Intersection of surfaces</term>
<term xml:lang="en">quadrics</term>
<term xml:lang="en">pencils of quadrics</term>
<term xml:lang="en">curve parameterization</term>
</keywords>
<classCode scheme="acm" n="F.2.2.2"></classCode>
<classCode scheme="acm" n="I.1.2"></classCode>
<classCode scheme="acm" n="I.3.5.0"></classCode>
<classCode scheme="halDomain" n="info.info-cg">Computer Science [cs]/Computational Geometry [cs.CG]</classCode>
<classCode scheme="halTypology" n="ART">Journal articles</classCode>
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<abstract xml:lang="en">We present an exact and efficient algorithm for computing a proper parametric representation of the intersection of two quadrics in three-dimensional real space given by implicit equations with rational coefficients. The output functions parameterizing the intersection in projective space are polynomial, whenever it is possible, which is the case when the intersection is not a smooth quartic (for example, a singular quartic, a cubic and a line, and two conics). Furthermore, the parameterization is near-optimal in the sense that the number of distinct square roots appearing in the coefficients of these functions is minimal, except in a small number of well-identified cases where there may be an extra square root. In addition, the algorithm is practical: a complete and efficient C++ implementation is described in Lazard et al. (2006). In Part I, we present an algorithm for computing a parameterization of the intersection of two arbitrary quadrics which we prove to be near-optimal in the generic, smooth quartic, case. Parts~II and~III treat the singular cases. We present in Part~II the first classification of pencils of quadrics according to the real type of the intersection and we show how this classification can be used to efficiently determine the type of the real part of the intersection of two arbitrary quadrics. This classification is at the core of the design of our algorithms for computing near-optimal parameterizations of the real part of the intersection in all singular cases. We present these algorithms in Part~III and give examples covering all the possible situations in terms of both the real type of intersection and the number and depth of square roots appearing in the coefficients.</abstract>
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