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Kichun Jo

Hanyang University · 工学

研究室紹介

Professor Kichun Jo's research lab specializes in autonomous vehicle technologies, focusing on intelligent perception, localization, and decision-making systems. The lab develops advanced sensor fusion algorithms, including Bayesian filtering and Monte Carlo localization, to enhance position estimation accuracy and reliability in dynamic driving environments. Key research directions include distributed system architecture for autonomous driving platforms, high-precision roadway mapping, and unified tracking and behavior reasoning for surrounding vehicles. The lab emphasizes robust, fault-tolerant, and modular system design to support real-world deployment of self-driving technologies.

autonomous vehiclessensor fusionlocalizationvehicle trackingADAS

Research Overview

Papers
109
Total Citations
2,904
Papers (5y)
39
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
39total
2022
2023
2024
2025
2026
Citations per year (5y)
298total
20222023202420252026

Selected Papers

15
1
Article|294 citations·2011
Interacting Multiple Model Filter-Based Sensor Fusion of GPS With In-Vehicle Sensors for Real-Time Vehicle Positioning
Kichun Jo, Keounyup Chu, Myoungho Sunwoo
SJR Q1IEEE Transactions on Intelligent Transportation Systems

Vehicle position estimation for intelligent vehicles requires not only highly accurate position information but reliable and continuous information provision as well. A low-cost Global Positioning System (GPS) receiver has widely been used for conventional automotive applications, but it does not guarantee accuracy, reliability, or continuity of position data when GPS errors occur. To mitigate GPS errors, numerous Bayesian filters based on sensor fusion algorithms have been studied. The estimati

Artificial IntelligenceComputer Science
2
Article|270 citations·2014
Development of Autonomous Car—Part I: Distributed System Architecture and Development Process
Kichun Jo, Junsoo Kim, Dongchul Kim, Chulhoon Jang, Myoungho Sunwoo
SJR Q1IEEE Transactions on Industrial Electronics

An autonomous car is a self-driving vehicle that has the capability to perceive the surrounding environment and navigate itself without human intervention. For autonomous driving, complex autonomous driving algorithms, including perception, localization, planning, and control, are required with many heterogeneous sensors, actuators, and computers. To manage the complexity of the driving algorithms and the heterogeneity of the system components, this paper applies distributed system architecture

Hardware and ArchitectureComputer Science
3
Article|240 citations·2015
Development of Autonomous Car—Part II: A Case Study on the Implementation of an Autonomous Driving System Based on Distributed Architecture
Kichun Jo, Junsoo Kim, Dongchul Kim, Chulhoon Jang, Myoungho Sunwoo
SJR Q1IEEE Transactions on Industrial Electronics

Part I of this paper proposed a development process and a system platform for the development of autonomous cars based on a distributed system architecture. The proposed development methodology enabled the design and development of an autonomous car with benefits such as a reduction in computational complexity, fault-tolerant characteristics, and system modularity. In this paper (Part II), a case study of the proposed development methodology is addressed by showing the implementation process of

Automotive EngineeringEngineering
4
Article|99 citations·2015
Precise Localization of an Autonomous Car Based on Probabilistic Noise Models of Road Surface Marker Features Using Multiple Cameras
Kichun Jo, Yongwoo Jo, Jae Kyu Suhr, Ho Gi Jung, Myoungho Sunwoo
SJR Q1IEEE Transactions on Intelligent Transportation Systems

This paper presents a Monte Carlo localization algorithm for an autonomous car based on an integration of multiple sensors data. The sensor system is composed of onboard motion sensors, a low-cost GPS receiver, a precise digital map, and multiple cameras. Data from the onboard motion sensors, such as yaw rate and wheel speeds, are used to predict the vehicle motion, and the GPS receiver is applied to establish the validation boundary of the ego-vehicle position. The digital map contains location

Aerospace EngineeringEngineering
5
Article|96 citations·2014
Generation of a Precise Roadway Map for Autonomous Cars
Kichun Jo, Myoungho Sunwoo
SJR Q1IEEE Transactions on Intelligent Transportation Systems

This paper proposes a map generation algorithm for a precise roadway map designed for autonomous cars. The roadway map generation algorithm is composed of three steps, namely, data acquisition, data processing, and road modeling. In the data acquisition step, raw trajectory and motion data for map generation are acquired through exploration using a probe vehicle equipped with GPS and on-board sensors. The data processing step then processes the acquired trajectory and motion data into roadway ge

Ocean EngineeringEngineering
6
Article|88 citations·2016
Tracking and Behavior Reasoning of Moving Vehicles Based on Roadway Geometry Constraints
Kichun Jo, Min-Chul Lee, Junsoo Kim, Myoungho Sunwoo
SJR Q1IEEE Transactions on Intelligent Transportation Systems

Tracking and behavior reasoning of surrounding vehicles on a roadway are keys for the development of automated vehicles and an advanced driver assistance system (ADAS). Based on dynamic information of the surrounding vehicles from the tracking algorithm and driver intentions from the behavior reasoning algorithm, the automated vehicles and ADAS can predict possible collisions and generate safe motion to avoid accidents. This paper presents a unified vehicle tracking and behavior reasoning algori

Automotive EngineeringEngineering
7
Article|85 citations·2018
Simultaneous Localization and Map Change Update for the High Definition Map-Based Autonomous Driving Car
Kichun Jo, Chansoo Kim, Myoungho Sunwoo
SJR Q1SensorsOA

High Definition (HD) maps are becoming key elements of the autonomous driving because they can provide information about the surrounding environment of the autonomous car without being affected by the real-time perception limit. To provide the most recent environmental information to the autonomous driving system, the HD map must maintain up-to-date data by updating changes in the real world. This paper presents a simultaneous localization and map change update (SLAMCU) algorithm to detect and u

Aerospace EngineeringEngineering
8
Article|84 citations·2022
PCSCNet: Fast 3D semantic segmentation of LiDAR point cloud for autonomous car using point convolution and sparse convolution network
Jaehyun Park, Chansoo Kim, Soyeong Kim, Kichun Jo
SJR Q1Expert Systems with Applications
Computational MechanicsEngineering
9
Article|65 citations·2013
GPS-bias correction for precise localization of autonomous vehicles
Kichun Jo, Keonyup Chu, Myoungho Sunwoo

This paper presents a precise localization method for autonomous driving systems by correcting the GPS bias error. Since GPS errors have systematic noise properties that change slowly with time, a stand-alone GPS cannot be used for localization of an autonomous vehicle. To compensate for this systematic bias error, several types of additional sources of information, including on-board motion sensors, camera vision systems, and a road map database, are applied to the localization system. The loca

Aerospace EngineeringEngineering
10
Article|62 citations·2015
Road Slope Aided Vehicle Position Estimation System Based on Sensor Fusion of GPS and Automotive Onboard Sensors
Kichun Jo, Min-Chul Lee, Myoungho Sunwoo
SJR Q1IEEE Transactions on Intelligent Transportation Systems

This paper proposes a road slope aided position estimation algorithm based on the fusion of GPS data with information from automotive onboard sensors. Many previous studies for position estimation did not consider the effect of road slope, although many sloped roads are existing. In order to analyze the influence of road slope on position estimation, theoretical proof and simulation are performed. Based on this analysis, a road slope aided position estimation algorithm is presented, which includ

Automotive EngineeringEngineering
11
Article|57 citations·2010
Integration of multiple vehicle models with an IMM filter for vehicle localization
Kichun Jo, Keonyup Chu, Kang Yoon Lee, Myoungho Sunwoo

A vehicle localization system can be extremely useful for intelligent transformation systems (ITS) such as advanced driver assistance systems (ADASs), emergency vehicle notification systems, and collision avoidance systems. To optimize the performance of vehicle localization systems, localization algorithms that analyze multi-sensor data processed using a Kalman filter have been developed. However, a Kalman filter with a single process model cannot guarantee the accuracy of localization under va

Control and Systems EngineeringEngineering
12
Article|57 citations·2013
Real-Time Road-Slope Estimation Based on Integration of Onboard Sensors With GPS Using an IMMPDA Filter
Kichun Jo, Junsoo Kim, Myoungho Sunwoo
SJR Q1IEEE Transactions on Intelligent Transportation Systems

This paper proposes a road-slope estimation algorithm to improve the performance and efficiency of intelligent vehicles. The algorithm integrates three types of road-slope measurements from a GPS receiver, automotive onboard sensors, and a longitudinal vehicle model. The measurement integration is achieved through a probabilistic data association filter (PDAF) that combines multiple measurements into a single measurement update by assigning statistical probability to each measurement and by remo

Civil and Structural EngineeringEngineering
13
Article|56 citations·2022
Motion Estimation and Hand Gesture Recognition-Based Human–UAV Interaction Approach in Real Time
Minjeong Yoo, Yuseung Na, Hamin Song, Gamin Kim, Junseong Yun, Sangho Kim, Chang-Joo Moon, Kichun Jo
SJR Q1SensorsOA

As an alternative to traditional remote controller, research on vision-based hand gesture recognition is being actively conducted in the field of interaction between human and unmanned aerial vehicle (UAV). However, vision-based gesture system has a challenging problem in recognizing the motion of dynamic gesture because it is difficult to estimate the pose of multi-dimensional hand gestures in 2D images. This leads to complex algorithms, including tracking in addition to detection, to recognize

Human-Computer InteractionComputer Science
14
Article|42 citations·2018
Crowd-Sourced Mapping of New Feature Layer for High-Definition Map
Chansoo Kim, Sung-Jin Cho, Myoungho Sunwoo, Kichun Jo
SJR Q1SensorsOA

A High-Definition map (HD map) is a precise and detailed map composed of various landmark feature layers. The HD map is a core technology that facilitates the essential functions of intelligent vehicles. Recently, it has come to be required for the HD map to continuously add new feature layers in order to increase the performances of intelligent vehicles in more complicated environments. However, it is difficult to generate a new feature layer for the HD map, because the conventional method of g

Automotive EngineeringEngineering
15
Article|24 citations·2020
Deep learning-based dynamic object classification using LiDAR point cloud augmented by layer-based accumulation for intelligent vehicles
Kyung-Pyo Kim, Chansoo Kim, Chulhoon Jang, Myoungho Sunwoo, Kichun Jo
SJR Q1Expert Systems with Applications
Computer Vision and Pattern RecognitionComputer Science

Research Areas

Automotive EngineeringAerospace EngineeringEnvironmental EngineeringComputer Vision and Pattern RecognitionArtificial IntelligenceControl and Systems Engineering

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