Matthew Digman

Matthew Digman

University of Wisconsin-Madison

H-index: 14

North America-United States

About Matthew Digman

Matthew Digman, With an exceptional h-index of 14 and a recent h-index of 9 (since 2020), a distinguished researcher at University of Wisconsin-Madison, specializes in the field of Agricultural Machinery.

His recent articles reflect a diverse array of research interests and contributions to the field:

Moisture relationships among conventional and brown‐midrib corn hybrids for silage

Evaluation of the Effect of Sentinel-1 SAR and Environmental Factors in Alfalfa Yield and Quality Estimation

Harvest Timing of Standing Corn Using Near-Infrared Reflectance Spectroscopy

Alf Advisor: A program to assist with alfalfa harvest management decisions

Development and Evaluation of a Single-Pass, Dual-Rotor Intensive Forage Processing Device

Evaluation of a handheld NIRS instrument for determining haylage dry matter

Techno‐economic assessment of single‐stream feedstock logistics supply chain for corn stover and grain

Physical properties of moist, fermented corn kernels

Matthew Digman Information

University

Position

___

Citations(all)

753

Citations(since 2020)

373

Cited By

467

hIndex(all)

14

hIndex(since 2020)

9

i10Index(all)

20

i10Index(since 2020)

9

Email

University Profile Page

Google Scholar

Matthew Digman Skills & Research Interests

Agricultural Machinery

Top articles of Matthew Digman

Moisture relationships among conventional and brown‐midrib corn hybrids for silage

Crop, Forage & Turfgrass Management

2024/6

Evaluation of the Effect of Sentinel-1 SAR and Environmental Factors in Alfalfa Yield and Quality Estimation

Agronomy

2024/4/19

Harvest Timing of Standing Corn Using Near-Infrared Reflectance Spectroscopy

Sensors

2024/2/21

Alf Advisor: A program to assist with alfalfa harvest management decisions

2024

Development and Evaluation of a Single-Pass, Dual-Rotor Intensive Forage Processing Device

Journal of the ASABE

2024

Evaluation of a handheld NIRS instrument for determining haylage dry matter

Crop, Forage & Turfgrass Management

2023/12

Techno‐economic assessment of single‐stream feedstock logistics supply chain for corn stover and grain

2023/5

Physical properties of moist, fermented corn kernels

Processes

2023/4/27

Practical Considerations for Using the NeoSpectra-Scanner Handheld Near-Infrared Reflectance Spectrometer to Predict the Nutritive Value of Undried Ensiled Forage

Sensors

2023/2/4

Anaerobic Storage Characteristics of Whole-Ear Corn and Stover

AgriEngineering

2023/1/20

Impact—Shredding Processing of Whole-Plant Corn: Machine Performance, Physical Properties, and In Situ Ruminant Digestion

Agriculture

2023/1/8

Evaluation of a Process to Separate Ensiled Corn Grain and Stover for Improved Utilization as a Biomass Feedstock

Journal of the ASABE

2023

Altering Physical Properties of Wilted Alfalfa by Impact–Shredding Processing

Applied Engineering in Agriculture

2023

Simulation of Mechanical Fractionation of chopped whole-plant corn (WPC) Using Discrete Element Method (DEM)

2023

Co-harvest and anaerobic co-storage of corn grain and stover as biomass feedstocks

Journal of the ASABE

2023

Interpreting Tractor Engine Performance Data

Journal of the ASABE

2023

Apparatus for assessing and harvesting peas

2022/4/19

Evaluating the feasibility of a low-field nuclear magnetic resonance (NMR) sensor for manure nutrient prediction

Sensors

2022/3/22

Intensive mechanical processing of forage crops to improve fibre digestion

Grass and Forage Science

2022/3

Evaluation of Near-Infrared Reflectance and Transflectance Sensing System for Predicting Manure Nutrients

Remote Sensing

2022/2/16

See List of Professors in Matthew Digman University(University of Wisconsin-Madison)

Co-Authors

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