ADVANCED CONTROL SYSTEMS

MEC5AVC

Not currently offered

Credit points: 15

Subject outline

In this subject students will learn and apply control theories and tools to a variety of advanced control systems. Students will cover both theory, analysis and implementation arrange of concepts relating to controller design (e.g. PID), controller stability, digital controller pole placement, frequency response, state space models, feedback and state observers.

School: Engineering and Mathematical Sciences (Pre 2022)

Credit points: 15

Subject Co-ordinator: Robert Ross

Available to Study Abroad/Exchange Students: Yes

Subject year level: Year Level 5 - Masters

Available as Elective: No

Learning Activities: N/A

Capstone subject: No

Subject particulars

Subject rules

Prerequisites: Students must be admitted in SMENE or SMENEB

Co-requisites: N/A

Incompatible subjects: N/A

Equivalent subjects: N/A

Quota Management Strategy: N/A

Quota-conditions or rules: N/A

Special conditions: N/A

Minimum credit point requirement: N/A

Assumed knowledge: N/A

Learning resources

Advanced Control for Constrained Processes and Systems

Resource Type: Book

Resource Requirement: Recommended

Author: Garelli, W.

Year: 2011

Edition/Volume: N/A

Publisher: IET

ISBN: N/A

Chapter/article title: N/A

Chapter/issue: N/A

URL: N/A

Other description: N/A

Source location: N/A

Intelligent Control Systems

Resource Type: Book

Resource Requirement: Recommended

Author: Silva, A.

Year: 2016

Edition/Volume: N/A

Publisher: NY Research Press

ISBN: N/A

Chapter/article title: N/A

Chapter/issue: N/A

URL: N/A

Other description: N/A

Source location: N/A

Career Ready

Career-focused: No

Work-based learning: No

Self sourced or Uni sourced: N/A

Entire subject or partial subject: N/A

Total hours/days required: N/A

Location of WBL activity (region): N/A

WBL addtional requirements: N/A

Graduate capabilities & intended learning outcomes

Graduate Capabilities

Intended Learning Outcomes

01. Apply mathematical models, techniques and tools to the investigation, design and implementation of advanced control systems.
02. Describe concepts, processes and tools related to digital control.
03. Use MATLAB to analyse the properties, characteristics and stability of control systems.
Subject not currently offered - Subject options not available.