Skip to main content

Dong-bin Shin

Yonsei University · Earth and Planetary Sciences

About the Lab

Professor Dong-bin Shin's research lab specializes in satellite-based precipitation measurement and atmospheric remote sensing, with a focus on improving rainfall estimation through advanced satellite instruments and retrieval algorithms. The lab develops innovative methods using geostationary and low Earth-orbiting satellites—such as Himawari-8, FY-2E, and TRMM—to enhance cloud and precipitation characterization, including cloud top height, reflectivity profiles, and three-dimensional atmospheric structure. Key research directions include multi-sensor data fusion, radiative transfer modeling, and addressing sampling biases in satellite precipitation observations.

precipitation estimationsatellite remote sensingcloud top heightmicrowave radiometryrainfall retrieval

Research Overview

Papers
153
Total Citations
1,717
Papers (5y)
24
Primary Field
Earth and Planetary Sciences

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
24total
2022
2023
2024
2025
2026
Citations per year (5y)
29total
20222023202420252026

Selected Papers

15
1
Article|38 citations·2003
Parametric Rainfall Retrieval Algorithms for Passive Microwave Radiometers
Dong‐Bin Shin, Christian D. Kummerow
Journal of Applied Meteorology

Abstract A methodology is described to construct fully parametric rainfall retrieval algorithms for a variety of passive microwave sensors that exist today and are planned for the future. The Tropical Rainfall Measuring Mission (TRMM) Microwave Imager (TMI) is used to retrieve nonraining geophysical parameters. The method then blends these background geophysical parameters with three-dimensional precipitation fields obtained by matching the TRMM precipitation radar (PR) reflectivity profiles wit

Atmospheric ScienceEarth and Planetary Sciences
2
Article|38 citations·2018
Classification of precipitating clouds using satellite infrared observations and its implications for rainfall estimation
Damwon So, Dong‐Bin Shin
SJR Q1Quarterly Journal of the Royal Meteorological SocietyOA

Precipitation estimates from satellite infrared (IR) radiometers are typically based on cloud top temperatures. However, these temperatures are weakly related to surface rainfall, particularly for shallow or warm clouds. This study classifies precipitating clouds into five cloud groups. The classification uses three brightness temperature differences (BTDs) and one BTD difference (ΔBTD) from Himawari‐8 Advanced Himawari Imager (AHI): BTD1 (6.2–11.2 µm), BTD2 (8.6–11.2 µm), BTD3 (11.2–12.4 µm), a

Atmospheric ScienceEarth and Planetary Sciences
3
Article|29 citations·2000
A Summary of Reflectivity Profiles from the First Year of TRMM Radar Data
Dong‐Bin Shin, Gerald R. North, Kenneth P. Bowman
SJR Q1Journal of Climate

A preliminary climatology of reflectivity profiles derived from the first spaceborne precipitation radar (PR), which is on board the Tropical Rainfall Measuring Mission (TRMM) satellite, is described using the data from January 1998 to February 1999. This study focuses on the behavior of the melting-layer (bright band) altitude in stratiform precipitation. This analysis will be useful for improving passive microwave radiometric estimations of rain rates because it provides information about othe

Atmospheric ScienceEarth and Planetary Sciences
4
Article|22 citations·2001
Comparison of the monthly precipitation derived from the TRMM satellite
Dong‐Bin Shin, Long S. Chiu, M. Kafatos
SJR Q1Geophysical Research LettersOA

A comparison of monthly rainfall derived from the version 5 of TRMM Microwave Imager (TMI), Precipitation Radar (PR), TRMM Combined algorithm (TCA) and TMI‐emission algorithm (TMIE) using two years (1998 to 1999) of TRMM data was made. The global (TRMM domain, 40°N∼ 40°S) average rain rates are 3.29, 2.62 and 2.93 mm/day over land and 3.02, 2.47 and 2.54 mm/day over oceans for TMI, PR, and TCA respectively. The TMIE oceanic average is 2.90 mm/day. For both the global and zonal means, the TMI rai

Atmospheric ScienceEarth and Planetary Sciences
5
Article|17 citations·2020
A Cloud Top-Height Retrieval Algorithm Using Simultaneous Observations from the Himawari-8 and FY-2E Satellites
Jonghyuk Lee, Dong‐Bin Shin, Chu‐Yong Chung, JaeGwan Kim
SJR Q1Remote SensingOA

In this paper, we introduce a cloud top-height (CTH) retrieval algorithm using simultaneous observations from the Himawari-8 and FengYun (FY)-2E geostationary (GEO) satellites (hereafter, dual-GEO CTH algorithm). The dual-GEO CTH algorithm estimates CTH based on the parallax, which is the difference in the apparent position of clouds observed from two GEO satellites simultaneously. The dual-GEO CTH algorithm consists of four major procedures: (1) image remapping, (2) image matching, (3) CTH calc

Global and Planetary ChangeEnvironmental Science
6
Article|12 citations·2000
Errors Incurred in Sampling a Cyclostationary Field
Dong‐Bin Shin, Gerald R. North
SJR Q1Journal of Atmospheric and Oceanic TechnologyOA

Low earth-orbiting satellites such as the Tropical Rainfall Measuring Mission (TRMM) estimate month-long averages of precipitation (or other fields). A difficulty is that such a satellite sensor returns to the same spot on the planet at discrete intervals, about 11 or 12 h apart. This discrete sampling leads to a sampling error that is the one of the largest components of the error budget. Previous studies have examined this type of error for stationary random fields, but this paper examines the

Atmospheric ScienceEarth and Planetary Sciences
7
Article|11 citations·2016
A study on concepts and utilization of Geo-Spatial Big Data in South Korea
Seon-Cheol Yu, Dong‐Bin Shin, Jong-Wook Ahn
SJR Q2KSCE Journal of Civil Engineering
Cultural StudiesSocial Sciences
8
Article|8 citations·2018
Assessment of WRF microphysics schemes in simulation of extreme precipitation events based on microwave radiative signatures
Yeji Choi, Dong‐Bin Shin, Minsu Joh
SJR Q2International Journal of Remote Sensing

Passive microwave radiometric signatures are affected by microphysical properties and hydrometeor distributions. Various microphysical properties of hydrometeors assumed in numerical simulations of precipitating clouds cause the different emission and scattering signals. This study compares the radiometric signatures obtained from five microphysics (MP) schemes of the Weather Research and Forecasting (WRF) model during the simulation of eight typhoons with respect to Tropical Rainfall Measuring

Atmospheric ScienceEarth and Planetary Sciences
9
Article|8 citations·2007
Effects of Enzyme Treatments on Yield and Flavor Compounds of Garlic Extracts
Dong‐Bin Shin, Wooderck S. Hawer, Young‐Chun Lee
SJR Q4Korean Journal of Food Science and Technology

In this study, attempts were made to develop a garlic juice extraction method that would result in minimum changes in quality. Protopectinase and a mutienzyme containing cellulase, pectinesterase, , etc. were applied to garlic residue after first extraction, and the yields of garlic juice and the flavor component changes of the juices were investigated. Enzyme concentrations of 0.04, 0.08, and 0.12% which were based on pulp weight before extraction were added and allowed to hydrolyze for 30, 60,

Plant ScienceAgricultural and Biological Sciences
10
Article|7 citations·2008
Effects of TRMM Boost on Oceanic Rainfall Estimates Based on Microwave Emission Brightness Temperature Histograms (METH)
Dong‐Bin Shin, Long S. Chiu
SJR Q1Journal of Atmospheric and Oceanic Technology

Abstract A physical–statistical algorithm for estimating space–time average oceanic rainfall has been applied to microwave measurements taken by the Special Sensor Microwave Imager (SSM/I) on board the Defense Meteorological Satellite Program (DMSP) satellites and the Tropical Rainfall Measuring Mission (TRMM) Microwave Imager (TMI) on board the TRMM satellite. The algorithm is based on Microwave Emission Brightness Temperature Histograms (METH) and produces monthly rainfall over 5° × 5° latitud

Atmospheric ScienceEarth and Planetary Sciences
11
Article|5 citations·2014
The strategies on safe city making through hotspot analyses on crime
Kirl Kim, Dong‐Bin Shin
SJR Q2KSCE Journal of Civil Engineering
Sociology and Political ScienceSocial Sciences
12
Article|5 citations·2016
Future technology developments and policy directions for the V-World open platform
Byeongsun Kim, Minwoo Jeong, Dong‐Bin Shin
SJR Q2Spatial Information Research
Information SystemsComputer Science
13
Article|5 citations·2016
Utilizing urban facility sensor information in U-City: multi-dimensional scaling approach
Ji-song Yoo, Dong‐Bin Shin
SJR Q2Spatial Information Research
Computer Networks and CommunicationsComputer Science
14
Article|4 citations·2008
Effects of atmospheric water and surface wind on passive microwave retrievals of sea ice concentration: a simulation study
Dong‐Bin Shin, Long S. Chiu, P. Clemente‐Colón
SJR Q2International Journal of Remote Sensing

The atmospheric effects on the retrieval of sea ice concentration from passive microwave sensors were examined using simulated data typical for the Arctic summer. The simulation includes atmospheric contributions of cloud liquid water (CLW), water vapour (WV) and surface wind on the microwave signatures. A plane parallel radiative transfer model was used to compute brightness temperatures at SSM/I frequencies over surfaces that contained open water, first‐year (FY) ice, multi‐year (MY) ice and t

Atmospheric ScienceEarth and Planetary Sciences
15
Article|4 citations·2021
Algorithm for Improved Stereoscopic Cloud-Top Height Retrieval Based on Visible and Infrared Bands for Himawari-8 and FY-4A
Jonghyuk Lee, Dong‐Bin Shin
SJR Q1Remote SensingOA

Stereoscopic cloud-top height (CTH) retrieval from two geostationary (GEO) satellites is usually realized through a visible (VIS) band with a high horizontal resolution. A stereoscopic-based CTH retrieval algorithm (prototype dual-GEO CTH algorithm) proposed in our previous study also adopts this approach. Although this approach can retrieve accurate stereoscopic CTHs, the heights of optically thin upper clouds overlying the lower clouds are challenging to retrieve because the parallax differenc

Global and Planetary ChangeEnvironmental Science

Research Areas

Atmospheric ScienceGlobal and Planetary ChangeTransportationFood SciencePlant ScienceInformation Systems

Dive deeper into Dong-bin Shin's research on Nubint

Open this lab's papers in the app to read with AI, summarize, and cite in your writing.