http://www.cnr.it/ontology/cnr/individuo/prodotto/ID7107
Algorithms for Moving Objects Databases (Articolo in rivista)
- Type
- Label
- Algorithms for Moving Objects Databases (Articolo in rivista) (literal)
- Anno
- 2003-01-01T00:00:00+01:00 (literal)
- Alternative label
Cotelo Lema, J.A.; Forlizzi, L.; Güting, R.H.; Nardelli, E.; Schneider, M. (2003)
Algorithms for Moving Objects Databases
in Computer journal (Print)
(literal)
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- Cotelo Lema, J.A.; Forlizzi, L.; Güting, R.H.; Nardelli, E.; Schneider, M. (literal)
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- ISI Web of Science (WOS) (literal)
- Titolo
- Algorithms for Moving Objects Databases (literal)
- Abstract
- Whereas earlier work on spatio-temporal databases generally focused on
geometries changing in discrete steps, the emerging area of moving objects
databases supports geometries changing continuously. Two important abstractions
are moving point and moving region, modeling objects for which only the time-
dependent position, or also the shape and extent are relevant, respectively.
Examples of the ¯rst kind of moving entity are all kinds of vehicles, aircraft,
people, or animals; of the latter hurricanes, forest ¯res, forest growth, or oil spills
in the sea. The goal is to develop data models and query languages as well as
DBMS implementations supporting such entities, enabling new kinds of database
applications.
In earlier work we have proposed an approach based on abstract data types.
Hence, moving point or moving region are viewed as data types with suitable
operations. For example, a moving point might be projected into the plane,
yielding a curve, or a moving region be mapped to a function describing the
development of its size, yielding a real-valued function. A careful design of a
system of types and operations (an algebra) has been presented, emphasizing
completeness, closure, consistency and genericity. This design was given at an
abstract level, de¯ning, for example, geometries in terms of in¯nite point sets. In
the next step, a discrete model was presented, o®ering ¯nite representations and
data structures for all the types of the abstract model.
The present paper provides the ¯nal step towards implementation by studying and
developing systematically algorithms for (a large subset of) the operations. Some
of them are relatively straightforward; others are quite complex. Algorithms are
meant to be used in a database context; we also address ¯ltering techniques and
practical issues such as large object management or numeric robustness in the
context of an ongoing prototype implementation.
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