Skip to main content
Have a personal or library account? Click to login
A discussion of empirical orthogonal functions and their application to vertical temperature profiles Cover

A discussion of empirical orthogonal functions and their application to vertical temperature profiles

Open Access
|Jan 1967

References

  1. Courant , R . & Hilbert, D. 1953. Methods of Mathematical Physics, Vol. I. New York, Interscience Publishers, Inc., 561 pp.
  2. Hilleary , D. T. , Heacock , E. L. , Morgan , W. A. , Moore , R. H. , Mangold , E. C. & Soules , S. D . 1966 . Indirect measurements of atmospheric temperature profiles from satellites: III. The spectrometers and experiments . Monthly Weather Review 94 , 367 377 .
  3. Hodge , M. & Harmantas , C . 1965 . Compatibility of United States radiosondes . Monthly Weather Review 93 , 253 266 .
  4. Holmstrom , I . 1963 . On a method for parametric representation of the state of the atmosphere . Telins 15 , 127 149 .
  5. Kellogg , O. D . 1922 . On the existence and closure of sets of characteristic functions . Mathe-matische Annalen 86 , 14 17 .
  6. Lorenz , E . 1956 . Empirical orthogonal functions and statistical weather prediction. Scientific Report No. 1, Statistical Forecasting Project, Massachusetts Institute of Technology, Department of Meteorology, Cambridge, Mass., 49 pp.
  7. Malkeviteh , M. S. & Tatarskii , V. I . 1965 . Determination of vertical atmospheric temperature profiles by means of outgoing radiation in a CO2 absorption band . Konnicheskie Issledovaniya 3 , 444 456 .
  8. Obukhov , A. M . 1960 . The statistically ortho-gonal expansion of empirical functions. Akademiya Nauk, SSSR. Izvestiya Seriya Geofizicheskaya 1960, pp. 432-439 . ( English Translation by the American Geophysical Union, No v . 1960 , pp. 288 291 .)
  9. Schmidt , E . 1907 . Zur Theorie der linearen und nichtlinearen Integralgleichungen. I. Entwicklung willkiirlicher Funktionen nach Systemen vorgeschriebener . Mathematisch,e Annalen 63 , 433 476 .
  10. Sellers , W . 1957 . A statistical-dynamic approach to numerical weather prediction. Scientific Report No. 2, Statistical Forecasting Project, Massachusetts Institute of Technology, Department of Meteorology, Cambridge, Mass., 151 pp.
  11. Shorr , B . 1957 . Empirical orthogonal functions applied to prediction of the sea-level pressure field. Scientific Report No. 3, Statistical Forecasting Project, Massachusetts Institute of Technology, Department of Meteorology, Cambridge, Mass., 88 pp.
  12. Twomey , S . 1966 . Indirect measurements of atmospheric temperature profiles from satellites: II. Mathematical aspects of the inversion problem . Monthly Weather Review 94 , 363 366 .
  13. Wark , D. Q. & Fleming , H. E . 1966 . Indirect measurements of atmospheric temperature profiles from satellites: I . Introduction. Monthly Weather Review 94 , 351 362 .
  14. Wark , D. Q. , Fleming , H. E. , Lienesch , J. H. & Van Cleef , F . 1965 . The determination of the atmospheric temperature field from simulated satellite measurements. Symposium on Radiation Processes in the Atmosphere, Leningrad, August 1964, International Union of Geodesy and Geophysics, Monograph No. 28, p. 56.
  15. Wark , D. Q. , Saiedy , F. & James , D. G . 1966 . Indirect measurements of atmospheric temperature profiles from satellites: VI. High altitude balloon testing. Submitted to Monthly Weather Review.
  16. Wilkinson , J. H . 1965 . The Algebraic Eigenvalue Problem . Oxford , Clarendon Press , 662 pp .
Language: English
Page range: 477 - 482
Submitted on: May 16, 1966
Published on: Jan 1, 1967
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 1967 J. C. Alishouse, L. J. Crone, H. E. Fleming, F. L. Van Cleef, D. Q. Wark, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.