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Dive into the research topics where Juha Lemmetyinen is active.

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Featured researches published by Juha Lemmetyinen.


Remote Sensing | 2016

Estimating Snow Water Equivalent with Backscattering at X and Ku Band Based on Absorption Loss

Yurong Cui; Chuan Xiong; Juha Lemmetyinen; Jiancheng Shi; Lingmei Jiang; Bin Peng; Huixuan Li; Tianjie Zhao; Dabin Ji; Tongxi Hu

Snow water equivalent (SWE) is a key parameter in the Earth’s energy budget and water cycle. It has been demonstrated that SWE can be retrieved using active microwave remote sensing from space. This necessitates the development of forward models that are capable of simulating the interactions of microwaves and the snow medium. Several proposed models have described snow as a collection of sphere- or ellipsoid-shaped ice particles embedded in air, while the microstructure of snow is, in reality, more complex. Natural snow usually forms a sintered structure following mechanical and thermal metamorphism processes. In this research, the bi-continuous vector radiative transfer (bi-continuous-VRT) model, which firstly constructs snow microstructure more similar to real snow and then simulates the snow backscattering signal, is used as the forward model for SWE estimation. Based on this forward model, a parameterization scheme of snow volume backscattering is proposed. A relationship between snow optical thickness and single scattering albedo at X and Ku bands is established by analyzing the database generated from the bi-continuous-VRT model. A cost function with constraints is used to solve effective albedo and optical thickness, while the absorption part of optical thickness is obtained from these two parameters. SWE is estimated after a correction for physical temperature. The estimated SWE is correlated with the measured SWE with an acceptable accuracy. Validation against two-year measurements, using the SnowScat instrument from the Nordic Snow Radar Experiment (NoSREx), shows that the estimated SWE using the presented algorithm has a root mean square error (RMSE) of 16.59 mm for the winter of 2009–2010 and 19.70 mm for the winter of 2010–2011.


EUSAR 2014; 10th European Conference on Synthetic Aperture Radar; Proceedings of | 2014

Retrieval of snow water equivalent in forested area using multifrequency SAR data

Giovanni Macelloni; Marco Brogioni; Francesco Montomoli; Juha Lemmetyinen; Jouni Pulliainen; Helmut Rott


EUSAR 2014; 10th European Conference on Synthetic Aperture Radar; Proceedings of | 2014

Observations of seasonal snow cover at X and Ku bands during the NoSREx campaign

Juha Lemmetyinen; Jouni Pulliainen; Anna Kontu; Andreas Wiesmann; Christian Maetzler; Helmut Rott; Karl Voglmeier; Thomas Nagler; Adriano Meta; Alex Coccia; Martin Schneebeli; Martin Proksch; Malcolm Davidson; Dirk Schuettemeyer; Chung-Chi Lin; Michael Kern


Archive | 2013

ESA Globsnow: Algorithm Theoretical Basis Document - SWE-algorithm

Kari Luojus; Jouni Pullianinen; Matias Takala; Juha Lemmetyinen; Mwaba Kangwa; Tuomo Smolander; Chris Derksen; Simon Pinnock


Archive | 2013

Microwave radiometer studies of snow on lake ice

Martti Hallikainen; Matti Vaaja; A. von Lerber; Kalle Nordling; Juha Lemmetyinen; Juha Kainulainen; Jaakko Seppänen


Remote Sensing of Environment | 2018

The influence of snow microstructure on dual-frequency radar measurements in a tundra environment

Joshua King; Chris Derksen; Peter Toose; Alexandre Langlois; Christopher F. Larsen; Juha Lemmetyinen; Phil Marsh; B. Montpetit; Alexandre Roy; Nick Rutter; Matthew Sturm


Geosciences | 2018

Spatially Distributed Evaluation of ESA CCI Soil Moisture Products in a Northern Boreal Forest Environment

Jaakko Ikonen; Tuomo Smolander; Kimmo Rautiainen; Juval Cohen; Juha Lemmetyinen; Miia Salminen; Jouni Pulliainen


Archive | 2012

Remote sensing of seasonally frozen ground and permafrost active layer

Martti Hallikainen; Matti Vaaja; Juha Lemmetyinen; Jaakko Seppänen; Juha Kainulainen


Archive | 2012

Airborne microwave radiometer measurements of snow on lake ice

Martti Hallikainen; Matti Vaaja; Annakaisa von Lerber; Juha Kainulainen; Jaakko Seppänen; Juha Lemmetyinen


Supplement to: Gunn, GE et al. (2011): Evaluation of the HUT modified snow emission model over lake ice using airborne passive microwave measurements. Remote Sensing of Environment, 115(1), 233-244, https://doi.org/10.1016/j.rse.2010.09.001 | 2011

(Table 3) Air temperatures, and snow and ice characteristics of fresh and brackish water lakes in the Northwest Territories, Canada

Grant Gunn; Claude R. Duguay; Chris Derksen; Juha Lemmetyinen; Peter Toose

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Jouni Pulliainen

Finnish Geodetic Institute

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Anna Kontu

Helsinki University of Technology

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Nick Rutter

Northumbria University

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