Mathematical Problems in Engineering

New Developments in Sliding Mode Control and Its Applications 2014


Publishing date
06 Feb 2015
Status
Published
Submission deadline
19 Sep 2014

Lead Editor

1Imperial College London, London, UK

2Shandong University, Jinan, China

3Harbin Institute of Technology, Harbin, China

4China University of Petroleum, Qingdao, China

5University of Glamorgan, Pontypridd, UK


New Developments in Sliding Mode Control and Its Applications 2014

Description

Since the sliding mode control (SMC) was invented in the beginning of the 1950s, the approaches to SMC algorithms and sliding mode estimation problems have been fully developed. SMC has developed into a general design method being examined for a wide spectrum of systems including nonlinear systems, uncertain systems, stochastic systems, and large-scale and infinite-dimensional systems. In spite of the extensive and successful development of SMC approaches and techniques, their capability to handle complex systems, high-order systems, singularly perturbed systems, real-life implementations, and chatter-free problems needs to be further strengthened. Meanwhile, newly developed mathematical tools and technologies have also opened up various possibilities for the advances in SMC.

The aim of this special issue is to highlight the latest theoretical and technological developments in sliding mode control and its applications. This special issue will focus on novel, advanced, and nontraditional methods in theoretical background or practical design, especially original ideas and new approaches clearly indicating the advances made in problem formulation, methodology, or application with respect to the existing results. Papers presenting newly emerging fields are especially welcome.

Potential topics include, but are not limited to:

  • High-order sliding mode control
  • Sliding mode estimation
  • Sliding mode methods for fault detection and fault tolerant control
  • Sliding mode control of uncertain or hybrid systems
  • Sliding mode control of stochastic systems
  • Sliding mode control of singular systems
  • Neural network-related sliding mode control approaches
  • Chattering-free sliding mode control
  • Sliding mode control in industrial processes
  • Mathematical approaches/tools in sliding mode control

Articles

  • Special Issue
  • - Volume 2015
  • - Article ID 651601
  • - Research Article

A Nonlinear Exact Disturbance Observer Inspired by Sliding Mode Techniques

Xinkai Chen
  • Special Issue
  • - Volume 2015
  • - Article ID 675659
  • - Research Article

Nonlinear Disturbance-Observer-Based Sliding Mode Control for Flexible Air-Breathing Hypersonic Vehicles

Na Wang | Xiu-Ming Yao | Wen-Shuo Li
  • Special Issue
  • - Volume 2015
  • - Article ID 316360
  • - Research Article

Unknown Disturbance Estimation for a PMSM with a Hybrid Sliding Mode Observer

Gang Chen | Yong Zhou | ... | Qicai Zhou
  • Special Issue
  • - Volume 2015
  • - Article ID 240586
  • - Research Article

Dislocation Synchronization of the Different Complex Value Chaotic Systems Based on Single Adaptive Sliding Mode Controller

Li-lian Huang | Shuai-shuai Shi | Juan Zhang
  • Special Issue
  • - Volume 2015
  • - Article ID 367146
  • - Research Article

A Mixed Variable Speed Reaching Law of Sliding Mode Control for Spacecraft Tracking System

Yao Zhang | Yu-Xin Zhao
  • Special Issue
  • - Volume 2015
  • - Article ID 984768
  • - Research Article

Nonlinear Diversified Processes Monitoring

Yunpeng Fan | Shipeng Li | ... | Yingwei Zhang
  • Special Issue
  • - Volume 2015
  • - Article ID 262753
  • - Research Article

Finite-Time Reentry Attitude Control Using Time-Varying Sliding Mode and Disturbance Observer

Xuzhong Wu | Shengjing Tang | ... | Yao Zhang
  • Special Issue
  • - Volume 2015
  • - Article ID 620357
  • - Research Article

Multivariable Super Twisting Based Robust Trajectory Tracking Control for Small Unmanned Helicopter

Xing Fang | Aiguo Wu | ... | Chunyan Du
  • Special Issue
  • - Volume 2015
  • - Article ID 379647
  • - Research Article

Quasi-Sliding Networked Control of Systems Subject to Unbounded Disturbance with Limited Rate of Change

Andrzej Bartoszewicz | Paweł Latosiński
  • Special Issue
  • - Volume 2014
  • - Article ID 945948
  • - Research Article

Statistical Analysis of Nonlinear Processes Based on Penalty Factor

Yingwei Zhang | Chuanfang Zhang | Wei Zhang
Mathematical Problems in Engineering
 Journal metrics
See full report
Acceptance rate11%
Submission to final decision118 days
Acceptance to publication28 days
CiteScore2.600
Journal Citation Indicator-
Impact Factor-
 Submit Evaluate your manuscript with the free Manuscript Language Checker

We have begun to integrate the 200+ Hindawi journals into Wiley’s journal portfolio. You can find out more about how this benefits our journal communities on our FAQ.