1 / 12

REVIEW OF HEXAGONAL ARRAYS

REVIEW OF HEXAGONAL ARRAYS. Gaurav Baone 01/29/04. OUTLINE . Why Hexagonal? Hexagonal vs. Square Tessellation Coordinate System for hexagonal arrays Hexagonal Sampling Resolution of Hexagonal array images Disadvantages of hexagonal arrays. Why Hexagonal.

lynsey
Download Presentation

REVIEW OF HEXAGONAL ARRAYS

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. REVIEW OF HEXAGONAL ARRAYS Gaurav Baone 01/29/04

  2. OUTLINE • Why Hexagonal? • Hexagonal vs. Square Tessellation • Coordinate System for hexagonal arrays • Hexagonal Sampling • Resolution of Hexagonal array images • Disadvantages of hexagonal arrays

  3. Why Hexagonal... • 3 ways of tiling with regular shapes: • Square: coordinate system easy to use and implement • Triangular: Complicated structure • Hexagonal: Occurs in nature in cases where circular, deformable and under pressure circumstances exist

  4. Hexagonal vs. Square • Hexagonal models the human visual system more precisely • Hexagonal – equidistant 6 neighbours – this helps in representing circular objects

  5. Contd… • Hexagonal tessellation removes the connectivity ambiguity

  6. Contd… • Hexagonal sampling requires 13.4% fewer samples than rectangular sampling • Hexagonal tessellation offers better shape analysis using morphological operations

  7. y v u x Coordinate System • Need • Satisfies all the properties of a cood. System: • Complete • Unique • Convertible • Efficient P p = u u + v v

  8. Contd… • Pixel neighbours : v (u-1,v+1) (u,v+1) (u-1,v) (u,v) (u+1,v) u (u,v-1) (u+1,v-1)

  9. Hexagonal Sampling • Why go for hexagonal sampling? • Process: • The signal has to be circularly band limited at the same frequency as for an equal resolution square image • This reduces the number of sampling points by a factor of 2/(31/2)

  10. Resolution of Hexagonal grid Images • Improved angular resolution due to more lateral neighbours • No aliasing problems in hexagonal arrays

  11. Drawbacks of Hexagonal Arrays • Human vision is comfortable with perpetually straight features which can be observed better in a square array. In the real world such features dominate • Large amount of work has been already done in the area of square arrays and to convert that into hexagonal array may take time.

  12. Thank You

More Related