Effect of net voltage of thermoelectric generator on performance of hybrid energy device

In this study, we investigate the performance of a hybrid energy device (HED) composed of a photovoltaic cell (PVC) and a thermoelectric generator (TEG) through an analysis of the voltage difference (net voltage) between voltage drop and thermoelectric voltage. The efficiency of the HED is compared...

Full description

Bibliographic Details
Main Authors: Yoonbeom Park, Kyoungah Cho, Seunggen Yang, Taeho Park, Sungeun Park, Hee-eun Song, Soo Min Kim, Sangsig Kim
Format: Article
Language:English
Published: Elsevier 2020-11-01
Series:Energy Reports
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352484720313627
id doaj-e46c149a234e481cb11642b12df25b09
record_format Article
spelling doaj-e46c149a234e481cb11642b12df25b092020-12-23T05:01:43ZengElsevierEnergy Reports2352-48472020-11-01628362840Effect of net voltage of thermoelectric generator on performance of hybrid energy deviceYoonbeom Park0Kyoungah Cho1Seunggen Yang2Taeho Park3Sungeun Park4Hee-eun Song5Soo Min Kim6Sangsig Kim7Department of Electrical Engineering, Korea University, Seoul 02841, Republic of KoreaDepartment of Electrical Engineering, Korea University, Seoul 02841, Republic of Korea; Corresponding authors.Department of Electrical Engineering, Korea University, Seoul 02841, Republic of KoreaDepartment of Electrical Engineering, Korea University, Seoul 02841, Republic of KoreaPhotovoltaic Laboratory, Korea Institute of Energy Research, Daejeon 34129, Republic of KoreaPhotovoltaic Laboratory, Korea Institute of Energy Research, Daejeon 34129, Republic of KoreaConvergence Materials Research Center, Gumi Electronics & Information Technology Research Institute, Gumi 39171, Republic of KoreaDepartment of Electrical Engineering, Korea University, Seoul 02841, Republic of Korea; Corresponding authors.In this study, we investigate the performance of a hybrid energy device (HED) composed of a photovoltaic cell (PVC) and a thermoelectric generator (TEG) through an analysis of the voltage difference (net voltage) between voltage drop and thermoelectric voltage. The efficiency of the HED is compared with that of an isolated PVC at irradiances in the range of 200∼1000 W/m2. At an irradiance of 200 W/m2, the maximum power of the HED is 6.7% higher than that of the isolated PVC because the thermoelectric voltage is greater than the voltage drop in the TEG. Our study reveals that the net voltage between the voltage drop and the thermoelectric voltage determines whether the output power of the HED is higher than that of the isolated PVC. In addition, the relationship between the net voltage and the increase in maximum power of the HED reveals that the net voltage becomes a predictor of the performance of HED.http://www.sciencedirect.com/science/article/pii/S2352484720313627Photovoltaic cellThermoelectric generatorHybrid energy deviceThermoelectric voltageVoltage drop
collection DOAJ
language English
format Article
sources DOAJ
author Yoonbeom Park
Kyoungah Cho
Seunggen Yang
Taeho Park
Sungeun Park
Hee-eun Song
Soo Min Kim
Sangsig Kim
spellingShingle Yoonbeom Park
Kyoungah Cho
Seunggen Yang
Taeho Park
Sungeun Park
Hee-eun Song
Soo Min Kim
Sangsig Kim
Effect of net voltage of thermoelectric generator on performance of hybrid energy device
Energy Reports
Photovoltaic cell
Thermoelectric generator
Hybrid energy device
Thermoelectric voltage
Voltage drop
author_facet Yoonbeom Park
Kyoungah Cho
Seunggen Yang
Taeho Park
Sungeun Park
Hee-eun Song
Soo Min Kim
Sangsig Kim
author_sort Yoonbeom Park
title Effect of net voltage of thermoelectric generator on performance of hybrid energy device
title_short Effect of net voltage of thermoelectric generator on performance of hybrid energy device
title_full Effect of net voltage of thermoelectric generator on performance of hybrid energy device
title_fullStr Effect of net voltage of thermoelectric generator on performance of hybrid energy device
title_full_unstemmed Effect of net voltage of thermoelectric generator on performance of hybrid energy device
title_sort effect of net voltage of thermoelectric generator on performance of hybrid energy device
publisher Elsevier
series Energy Reports
issn 2352-4847
publishDate 2020-11-01
description In this study, we investigate the performance of a hybrid energy device (HED) composed of a photovoltaic cell (PVC) and a thermoelectric generator (TEG) through an analysis of the voltage difference (net voltage) between voltage drop and thermoelectric voltage. The efficiency of the HED is compared with that of an isolated PVC at irradiances in the range of 200∼1000 W/m2. At an irradiance of 200 W/m2, the maximum power of the HED is 6.7% higher than that of the isolated PVC because the thermoelectric voltage is greater than the voltage drop in the TEG. Our study reveals that the net voltage between the voltage drop and the thermoelectric voltage determines whether the output power of the HED is higher than that of the isolated PVC. In addition, the relationship between the net voltage and the increase in maximum power of the HED reveals that the net voltage becomes a predictor of the performance of HED.
topic Photovoltaic cell
Thermoelectric generator
Hybrid energy device
Thermoelectric voltage
Voltage drop
url http://www.sciencedirect.com/science/article/pii/S2352484720313627
work_keys_str_mv AT yoonbeompark effectofnetvoltageofthermoelectricgeneratoronperformanceofhybridenergydevice
AT kyoungahcho effectofnetvoltageofthermoelectricgeneratoronperformanceofhybridenergydevice
AT seunggenyang effectofnetvoltageofthermoelectricgeneratoronperformanceofhybridenergydevice
AT taehopark effectofnetvoltageofthermoelectricgeneratoronperformanceofhybridenergydevice
AT sungeunpark effectofnetvoltageofthermoelectricgeneratoronperformanceofhybridenergydevice
AT heeeunsong effectofnetvoltageofthermoelectricgeneratoronperformanceofhybridenergydevice
AT soominkim effectofnetvoltageofthermoelectricgeneratoronperformanceofhybridenergydevice
AT sangsigkim effectofnetvoltageofthermoelectricgeneratoronperformanceofhybridenergydevice
_version_ 1724373477823086592