Searching for "Linear Repeating Points." – sorted by Relevance.
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Handling Infinite Temporal Data
- by generalized tuples defined by linear repeating points and constraints on these points. We characterize
- Cited by 58 (6 self) – Add To MetaCart
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On the Representation of Infinite Temporal Data and Queries
- with an arbitrary number of additional columns carrying linear repeating points. These represent periodic sets
- Cited by 39 (2 self) – Add To MetaCart
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On Periodicity in Temporal Databases
- linear repeating points (LRPs), and they form periodic sets. If we restrict the notion of a generalized
- Cited by 9 (0 self) – Add To MetaCart
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Datalog with Integer Periodicity Constraints
- with order constraints and linear repeating points was studied. (A linear repeating point has the form fc
- Cited by 28 (10 self) – Add To MetaCart
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A Closed Form Evaluation For Datalog Queries With Integer (GAP)-Order Constraints
- points. (Linear repeating points are points of the form c + kn, for each integer n and fixed integer
- Cited by 22 (8 self) – Add To MetaCart
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Mixing List Recursion and Arithmetic
- linear repeating point is a set fff + fig 2Z where ff and fi are integers. (Note that such a set
- Cited by 5 (3 self) – Add To MetaCart
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Entities and Relations for Historical Relational Databases
- temporal information results from the notion of a generalized tuple consisting of linear repeating points
- Cited by 1 (0 self) – Add To MetaCart
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Variable Independence, Quantifier Elimination, and Constraint Representations
- m iff n = m(mod k). This structure corresponds to constraints given by linear repeating points
- Cited by 2 (0 self) – Add To MetaCart
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Safe Query Languages for Constrained Databases
- [Toman et al. 1994], relational calculus with linear repeating points [Kabanza et al. 1990] and temporal
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A Point-based Temporal Extension of SQL
- different encoding for sets of time instants, e.g., the linear repeating points [22] for periodic events
- Cited by 24 (13 self) – Add To MetaCart

