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authorMike Taves <mwtoews@gmail.com>2019-03-04 00:07:48 +1300
committerMike Taves <mwtoews@gmail.com>2019-03-04 00:19:33 +1300
commita33feebf7d97a9acf18ee0913dbfd536279d9c14 (patch)
treef176359c159b3261ce85330bb54a5e01bb1b9ba8 /docs/source/operations/transformations
parent22382726ef34f8da797b69eb8f42cc5ce5f415c0 (diff)
downloadPROJ-a33feebf7d97a9acf18ee0913dbfd536279d9c14.tar.gz
PROJ-a33feebf7d97a9acf18ee0913dbfd536279d9c14.zip
Further corrections to BibTeX
- Use names as published - Change Tobler2017 -> Tobler2018 - Change EPSGGuidanceNumber7Part2 -> IOGP2018
Diffstat (limited to 'docs/source/operations/transformations')
-rw-r--r--docs/source/operations/transformations/geogoffset.rst4
-rw-r--r--docs/source/operations/transformations/horner.rst2
2 files changed, 3 insertions, 3 deletions
diff --git a/docs/source/operations/transformations/geogoffset.rst b/docs/source/operations/transformations/geogoffset.rst
index f643485e..6ca4f64c 100644
--- a/docs/source/operations/transformations/geogoffset.rst
+++ b/docs/source/operations/transformations/geogoffset.rst
@@ -21,11 +21,11 @@ latitude coordinates, and an offset to the ellipsoidal height.
This method is normally only used when low accuracy is tolerated. It is documented
as coordinate operation method code 9619 (for geographic 2D) and 9660 (for
-geographic 3D) in the EPSG dataset (:cite:`EPSGGuidanceNumber7Part2`)
+geographic 3D) in the EPSG dataset (:cite:`IOGP2018`)
It can also be used to implement the method Geographic2D with Height Offsets
(code 9618) by noting that the input vertical component is a gravity-related
-height and the output vertical component is the ellispoid height (dh being
+height and the output vertical component is the ellipsoid height (dh being
the geoid undulation).
It can also be used to implement the method Vertical offset (code 9616)
diff --git a/docs/source/operations/transformations/horner.rst b/docs/source/operations/transformations/horner.rst
index dd9b9cc9..5c88c292 100644
--- a/docs/source/operations/transformations/horner.rst
+++ b/docs/source/operations/transformations/horner.rst
@@ -28,7 +28,7 @@ space used.
PROJ implements two versions of the Horner evaluation scheme: Real and complex
polynomial evaluation. Below both are briefly described. For more details consult
-:cite:`Ruffhead2016` and :cite:`EPSGGuidanceNumber7Part2`.
+:cite:`Ruffhead2016` and :cite:`IOGP2018`.
The polynomial evaluation in real number space is defined by the following equations: