TY - JOUR
T1 - Decoupled Multikernel Correntropy-Based Invariant Extended Kalman Filter for IMUs
AU - Liang, Yichen
AU - Li, Shilei
AU - Kuang, Lisheng
AU - Zhong, Chongyi
AU - Shi, Dawei
AU - Shi, Ling
N1 - Publisher Copyright:
© 2026 IEEE. All rights reserved.
PY - 2026
Y1 - 2026
N2 - Inertial measurement units (IMUs) are widely utilized in state estimation applications. However, their performance can deteriorate significantly in the presence of unknown disturbances. This article proposes a decoupled multikernel correntropy-based invariant extended Kalman filter (DMKCIEKF) for robust IMU orientation estimation. By integrating a multikernel correntropy-based filtering mechanism with Lie group theory, the proposed method effectively suppresses disturbances in accelerometer and magnetometer measurements. Moreover, the magnetic vector is projected onto the horizontal plane such that magnetometer measurements contribute exclusively to yaw estimation, while their influence on roll and pitch is eliminated. Combined with a time-separated measurement update scheme, the proposed approach accommodates the rate mismatch between accelerometer and magnetometer measurements. Experiments were conducted to evaluate the orientation estimation performance of the DMKCIEKF under both static and dynamic conditions, with and without magnetic interference. The experimental results demonstrate that the proposed DMKCIEKF consistently outperforms existing estimators in both static and dynamic scenarios. In particular, the root-mean-square-error (RMSE) is kept below 0.709◦ for roll and pitch angles, even under severe magnetic interference.
AB - Inertial measurement units (IMUs) are widely utilized in state estimation applications. However, their performance can deteriorate significantly in the presence of unknown disturbances. This article proposes a decoupled multikernel correntropy-based invariant extended Kalman filter (DMKCIEKF) for robust IMU orientation estimation. By integrating a multikernel correntropy-based filtering mechanism with Lie group theory, the proposed method effectively suppresses disturbances in accelerometer and magnetometer measurements. Moreover, the magnetic vector is projected onto the horizontal plane such that magnetometer measurements contribute exclusively to yaw estimation, while their influence on roll and pitch is eliminated. Combined with a time-separated measurement update scheme, the proposed approach accommodates the rate mismatch between accelerometer and magnetometer measurements. Experiments were conducted to evaluate the orientation estimation performance of the DMKCIEKF under both static and dynamic conditions, with and without magnetic interference. The experimental results demonstrate that the proposed DMKCIEKF consistently outperforms existing estimators in both static and dynamic scenarios. In particular, the root-mean-square-error (RMSE) is kept below 0.709◦ for roll and pitch angles, even under severe magnetic interference.
KW - Gait analysis
KW - inertial measurement unit (IMU)
KW - multikernel correntropy
KW - multirate sensor fusion
KW - orientation estimation
UR - https://www.scopus.com/pages/publications/105046259865
U2 - 10.1109/TIM.2026.3718105
DO - 10.1109/TIM.2026.3718105
M3 - Article
AN - SCOPUS:105046259865
SN - 0018-9456
VL - 75
JO - IEEE Transactions on Instrumentation and Measurement
JF - IEEE Transactions on Instrumentation and Measurement
M1 - 9533611
ER -