Journal: CSSP

Volume 29, Issue 3

361 -- 375Ze Li, Yuming Chu, Shengyuan Xu. ∞ Filtering of T-S Fuzzy Time-Delay Systems
377 -- 389Yong He, Guoping Liu 0003, David Rees, Min Wu 0002. ∞ Filtering for Systems with a Time-Varying Delay
391 -- 402Shahram Minaei, Erkan Yüce. Novel Voltage-Mode All-Pass Filter Based on Using DVCCs
403 -- 417Adriana Dapena, Daniel I. Iglesia, Carlos J. Escudero. An MSE-Based Method to Avoid Permutation/Gain Indeterminacy in Frequency-Domain Blind Source Separation
419 -- 430Yingwei Zhang, Tim Hesketh, Hong Wang, Jianchang Liu, Dong Xiao. Actuator Fault Compensation for Nonlinear Systems Using Adaptive Tracking Control
431 -- 448Sudipta Majumdar, Harish Parthasarathy. Perturbation Approach to Ebers-Moll Equations for Transistor Circuit Analysis
449 -- 457Yong Wang, Yi-cheng Jiang. Fourth-Order Complex-Lag PWVD for Multicomponent Signals with Application in ISAR Imaging of Maneuvering Targets
459 -- 467Qi-Wen Ran, Hui Zhao, Li-Ying Tan, Jing Ma. Sampling of Bandlimited Signals in Fractional Fourier Transform Domain
469 -- 480Wasfy B. Mikhael, Raghuram Ranganathan, Thomas T. Yang. Complex Adaptive ICA Employing the Conjugate Gradient Technique for Signal Separation in Time-Varying Flat Fading Channels
481 -- 498Xiao-Li Luan, Fei Liu, Peng Shi. ∞ Control for Nonlinear Jump Systems via Neural Networks
499 -- 514Xin-chun Wu, Jinxiang Wang, Zhigang Mao, Jianwei Zhang 0006. Conjugate Interleaved Partitioning PTS Scheme for PAPR Reduction of OFDM Signals
515 -- 526Mingang Hua, Feiqi Deng, Xinzhi Liu, Yunjian Peng. Robust Delay-dependent Exponential Stability of Uncertain Stochastic System with Time-varying Delay
527 -- 538Jen-Fuh Chang, Teh-Lu Liao, Jun-Juh Yan, Hsin-Chieh Chen. Implementation of Synchronized Chaotic Lü Systems and Its Application in Secure Communication Using PSO-Based PI Controller
539 -- 552Xiangbin Yu, Guangguo Bi, Xiaomin Chen. m Fading Channels
553 -- 576Dattaguru V. Kamat, P. V. Ananda Mohan, K. Gopalakrishna Prabhu. Novel First-Order and Second-Order Current-Mode Filters Using Multiple-Output Operational Transconductance Amplifiers