Taejoon Choi

dblp:29/7540 · DBLP profile ↗
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6ranked-venue papers
0as first author
0since 2021 · last 2013
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Computer networks · 6

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer networks
6 papers
Internet of things and sensor networks · 56% Wireless sensing and localization · 17% Wireless networking · 13%
Interdisciplinary, comprehensive, and emerging computing
2 papers
Environmental and earth informatics · 54% Energy systems and smart grids · 46%
Computer architecture, parallel and distributed computing, and storage systems
2 papers
Embedded and real-time systems · 54% Energy-efficient computing · 46%

Topics — the 8 heaviest of 10, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Internet of things and sensor networks
wireless sensor network
0.242013
HONS (hybrid open networking stack) for diverse wireless sensor networks · SenSys 2009
High-fidelity environmental monitoring using wireless sensor networks · SenSys 2013
PEAKSAVE: energy monitoring service · SenSys 2012
Internet of things and sensor networks › wireless sensor network
wireless sensor nodes
0.222012
Modular approach in sensor board design · SenSys 2012
Micro energy efficiency system based on QR code mote · SenSys 2011
Environmental and earth informatics
environmental monitoring
0.212013
High-fidelity environmental monitoring using wireless sensor networks · SenSys 2013
Energy systems and smart grids › energy management
energy monitoring
0.112012
PEAKSAVE: energy monitoring service · SenSys 2012
Wireless sensing and localization › tracking › RF tracking
RSSI-based tracking
0.112011
Tracking vehicles in a container terminal · SenSys 2011
Energy-efficient computing
building energy management
0.112011
Micro energy efficiency system based on QR code mote · SenSys 2011
Wireless networking › wireless mesh network
multihop wireless network
0.112009
HONS (hybrid open networking stack) for diverse wireless sensor networks · SenSys 2009
Internet architecture and protocols › network architecture design › layered architecture › protocol layering
network stack
0.112009
HONS (hybrid open networking stack) for diverse wireless sensor networks · SenSys 2009

Methods — techniques the papers use, named apart from their topics

wireless sensor network · 0.6modular design · 0.3web portal · 0.2QR code configuration · 0.2filtering · 0.1RSSI · 0.1IEEE 802.15.4 · 0.1
YearPublicationVenuePosition
2013 High-fidelity environmental monitoring using wireless sensor networks
abstract
The system is environment monitoring service based on Wireless Sensor Networks (WSN). Users can know temperature, humidity, light, and CO2 level in real time. Excessive electricity consumption by lighting in the office can be saved and the quality of the office environment can become better by controlling lighting and CO2 level.
Jeonghoon Kang, Su Chang Lee, Sukun Kim, David E. Culler, Pil-Mhan Jung, Taejoon Choi, Kooklae Jo, JaeYeol Shim
SenSys7
2012 Modular approach in sensor board design
abstract
Designing a new sensor board is costly, especially for a production in a small quantity. By modularizing common functionalities, a large portion of the sensor board can be reused. In this work, we propose an Extension Board, a sensor board which is modularized into 3 parts. Power module, and MCU and RF module are shared, and only sensing module is redesigned for each sensor board. Diverse sensing modules are produced. The process was simple and inexpensive.
Jeonghoon Kang, Jaechul Kim, Du-Hwan Yeo, Jongmin Hyun, Kooklae Jo, Taejoon Choi, Pil-Mhan Jung, Su Chang Lee, Sukun Kim
SenSys6
2012 PEAKSAVE: energy monitoring service
abstract
PEAKSAVE system is an energy monitoring service based on Wireless Sensor Networks (WSN). A smartphone is an important point of a system. Users can understand the energy consumption of each electric device and lighting in real time. Responsive energy monitoring service can help in reducing the waste of energy, especially in shaving electric load in a peak time.
Jeonghoon Kang, Jaechul Kim, Du-Hwan Yeo, Jongmin Hyun, Pil-Mhan Jung, Taejoon Choi, Kooklae Jo, Su Chang Lee, Sukun Kim
SenSys6
2011 Tracking vehicles in a container terminal
abstract
Vehicle tracking system is built for a container terminal. In the system, reference nodes are fixed at known locations. They provide reference locations to a mobile node, which is installed in a vehicle. Received Signal Strength Indicator (RSSI) is measured, and the measured data is gathered in a backend server. The backend server analyzes the data, and estimates the location of the mobile node. Filters are added to handle transient fluctuation in RF environment. SonnoOne mote is made to be used as a mobile node. It contains MG2455 chip from RadioPulse, which combines 8051 MCU and IEEE 802.15.4 radio. We expect the cost will be below $20, and the low cost will enable a large number of mobile nodes to be deployed in a container terminal.
Jeonghoon Kang, Jongmin Hyun, Dongik Kim, Kooklae Jo, Pil Mhan Jeong, Taejoon Choi, Sukun Kim
SenSys6
2011 Micro energy efficiency system based on QR code mote
abstract
Micro Energy Efficiency System (MEES) provides energy saving while enabling each individual office in a large building to control heating, cooling, and electricity with its own policy. The usage of a decentralized independent control of each office, rather than a centralized one, is common in Korea. MEES provides measuring and controlling points at multiple granularities. An installation became easy and efficient using QR code, and the user configuration through an energy web portal further enhances the energy efficiency.
Jeonghoon Kang, Hojung Lim, Jaechul Kim, Du-Hwan Yeo, Pil Mhan Jeong, Taejoon Choi, Dongik Kim, Wonyoung Yang, Sukun Kim
SenSys6
2009 HONS (hybrid open networking stack) for diverse wireless sensor networks
abstract
HONS (Hybrid Open Networking Stack) is a system which can service diverse types of sensor nodes as a single network. By defining open packet format of IEEE 802.15.4 standard, it can form low-power multi-hop network of diverse sensors. HONS system is composed of routers and wireless sensor nodes. Routers are motes with wired power and form the basic backbone of the multi-hop network. Wireless sensor nodes are motes powered by battery, and operate in a lower-power mode, and are attached to the multi-hop network formed by routers.
Jeonghoon Kang, Sukun Kim, Wonsik Ko, Taejoon Choi, Pilman Jeong, Jin-Yeop Chang
SenSys4