Skip to main content
Log in

Measurements of Mouldboard Plow Draft: I. Spectrum Analysis and Filtering

  • Published:
Precision Agriculture Aims and scope Submit manuscript

Abstract

Measurements of mouldboard plow draft can potentially provide a useful tool for continuously mapping, as a surrogate variable, crop limiting soil properties such as soil strength/compaction. Numerous researchers have shown that loading on tillage tools can be periodic. One source of higher frequency periodic loading has been related to failure modes in the soil. Lower frequency periodic loading on tillage tools, assuming tillage depth is relatively constant, more often reflects local spatial variability in soil physical properties such as soil moisture, soil texture, organic matter, and/or soil strength/compaction. This study presents a spectrum and cross-spectrum analysis of mouldboard draft recorded during normal fall plowing operations along adjacent transects. One objective of this study was to determine the dominant periodic components in order to elucidate meaningful frequencies which might be better related to variation in soil physical properties. Spectral densities were generally dominated by signals with a few cycles per 300-m transect. The cross-amplitude and squared coherency between draft recorded on adjacent transects provided further indication of the frequencies which characterized the signals because they provide an indication of correlation as a function of frequency. Spatial dependence in the data was quantified using spatial autocorrelation and cross-correlation. An additional objective was to use the spectral information to help design more physically meaningful filters for the raw draft data. Taking the Fast Fourier Transform of the raw draft data and filtering in the frequency domain using an optimal filter informed via the spectrum and cross-spectrum analysis, provided a convenient method for isolating a more physically meaningful signal.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Institutional subscriptions

Similar content being viewed by others

References

  • Bloomfield, P. 1976. Fourier Analysis of Time Series: An Introduction (John Wiley & Sons, Inc, New York).

    Google Scholar 

  • Deutsch, C. V. and Journel, A. G. 1998. GSLIB: Geostatistical Software Library and User's Guide (Oxford Univ. Press, Oxford, UK), p. 369.

    Google Scholar 

  • Godwin, R. J. and Spoor, G. 1977. Soil failure with narrow tines. Journal of Agricultural Engineering Research 22, 213–238.

    Google Scholar 

  • Hayhoe, H. N., McLaughlin, N. B., Topp, G. C., Lapen, D. R. and Curnoe, W. E. 2000. Spectral analysis and filtering of measurements of mouldboard plow draft. In: Proceedings of the 5th International Conference on Precision Agriculture (CD-ROM format), edited by P. C. Robert, R. H. Rust, and W. E. Larsen (American Society of Agronomy, Crop Science Society of America, Soil Science Society of America, Madison, WI, USA).

    Google Scholar 

  • Kachanoski, R. G., Rolston, D. E. and De Jong, E. 1985. Spatial and spectral relationships of soil properties and micro topography: I. Density and thickness of a horizon. Soil Science Society of America Journal 49, 804–812.

    Google Scholar 

  • Lapen, D. R., McLaughlin, N. B., Hayhoe, H. N., Topp, G. C., Adams, B. A. and Curnoe, W. E. 2001a.Spatial correlation between mouldboard plow draft and cone penetrometer resistance in a clay loam field. In: 4th Eastern Canada Soil Structure Workshop, Proceedings of the Soil Structure/Carbon Workshop, edited by W. D. Reynolds, C. F. Drury and C. S. Tan. (Leamington, ON), Aug. 23–25.

  • Lapen, D. R., Topp, G. C., Gregorich, E. G., Hayhoe, H. N. and Curnoe, W. E. 2001b. Divisive delineation of corn yield patterns at the field scale using management and soil information. Soil & Tillage Research 58, 193–206.

    Google Scholar 

  • Lapen, D. R., Topp, G. C., Hayhoe, H. N., Gregorich, E. G. and Curnoe, W. E. 2001c. Stochastic simulation of soil strength/compaction and assessment of corn yield risk using threshold probability patterns. Geoderma 104, 325–343.

    Google Scholar 

  • Lapen, D. R., Hayhoe, H. N., Topp, G. C., McLaughlin, N. B., Gregorich, E. G. and Curnoe, W. E. 2001d. Measurements of mouldboard plow draft: II. Draft-soil-crop and yield-draft associations. Precision Agriculture 3, 237–257.

    Google Scholar 

  • McLaughlin, N. B., Heslop, L. C., Buckley, D. J., St. Amour, G. R., Compton, B. A., Jones, A. M. and Van Bodegom, P. 1993. A general purpose tractor instrumentation and data logging system. Transactions of the American Society of Agricultural Engineers 36, 265–273.

    Google Scholar 

  • Neilsen, D. R., Tillotson, P. M. and Vieira, S. R. 1983. Analyzing field-measured soil-water properties. Agricultural Water Management 6, 93–109.

    Google Scholar 

  • Nielsen, D. R. and Mohammad, H. A. 1989. Statistical opportunities for analyzing spatial and temporal heterogeneity of field soils. Plant and Soil 115, 285–296.

    Google Scholar 

  • Owen, G. T., McRae, K. B., McRae, S. M. and Misener, G. C. 1990. Spectral analysis of subsoiling forces with a rigid tillage tool. Canadian Agricultural Engineering 32, 57–62.

    Google Scholar 

  • Perfect, E., McLaughlin, N. B. and Kay, B. D. 1997. Energy requirements for conventional tillage following different crop rotations. Transactions of the American Society of Agricultural Engineers 40, 45–49.

    Google Scholar 

  • Perfect, E. and McLaughlin, N. B. 1996. Soil Management effects on planting and emergence of no-till corn. Transactions of the American Society of Agricultural Engineers 39, 1611–1615.

    Google Scholar 

  • Press, W. H., Teukolsky, S. A., Vetterling, W. T. and Flannery, B. P. 1992. Numerical Recipes in FORTRAN, the Art of Scientific Computing, Second Edition (Cambridge University Press, Cambridge), p. 963.

    Google Scholar 

  • Stafford, J. V. 1984. Force prediction models for brittle and flow failure of soil by draught tillage tools. Journal of Agricultural Engineering Research 29, 51–60.

    Google Scholar 

  • StatSoft, Inc. 1997. STATISTICA Release 5.1. (StatSoft, Inc. Tulsa, OK).

    Google Scholar 

  • Upadhyaya, S. K., Ma, T. X., Chancellor, W. J. and Zhao, Y. M. 1987. Dynamics of soil-tool interaction. Soil & Tillage Research 9, 187–206.

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Hayhoe, H.N., Lapen, D.R., McLaughlin, N.B. et al. Measurements of Mouldboard Plow Draft: I. Spectrum Analysis and Filtering. Precision Agriculture 3, 225–236 (2002). https://doi.org/10.1023/A:1015502924508

Download citation

  • Issue Date:

  • DOI: https://doi.org/10.1023/A:1015502924508

Navigation