Guías Docentes Electrónicas
1. General information
Course:
AIRCRAFT SYSTEMS
Code:
56727
Type:
CORE COURSE
ECTS credits:
6
Degree:
403 - UNDERGRADUATE DEGREE PROGRAMME IN AEROSPACE ENGINEERING
Academic year:
2023-24
Center:
303 - E.DE INGENIERÍA INDUSTRIAL Y AEROESPOACIAL DE TOLEDO
Group(s):
40 
Year:
3
Duration:
C2
Main language:
Spanish
Second language:
English
Use of additional languages:
English Friendly:
N
Web site:
Bilingual:
N
Lecturer: LUIS SANCHEZ RODRIGUEZ - Group(s): 40 
Building/Office
Department
Phone number
Email
Office hours
Edificio Sabatini. Despacho 1.50
INGENIERÍA ELÉCTRICA, ELECTRÓNICA, AUTOMÁTICA Y COMUNICACIONES
926051694
luis.sanchez@uclm.es

2. Pre-Requisites
Not established
3. Justification in the curriculum, relation to other subjects and to the profession
Not established
4. Degree competences achieved in this course
Course competences
Code Description
CA01 Ability to carry out bibliographic searches, use databases and other sources of information for its application in tasks related to Technical Aeronautical Engineering.
CA02 Ability to efficiently design experimentation procedures, interpret the data obtained and specify valid conclusions in the field of Aeronautical Technical Engineering.
CA03 Ability to autonomously select and carry out the appropriate experimental procedure, operating the equipment correctly, in the analysis of phenomena within the scope of Engineering.
CA04 Ability to select advanced tools and techniques and their application in the field of Aeronautical Technical Engineering.
CA05 Knowledge of the methods, techniques and tools as well as their limitations in the application for the resolution of problems typical of Aeronautical Technical Engineering.
CA06 Ability to identify and assess the effects of any solution in the field of Aeronautical Technical Engineering within a broad and global context and the ability to interrelate the solution to an engineering problem with other variables beyond the technological field, which must be considered.
CE03 Basic knowledge of the use and programming of computers, operating systems, databases and computer programs with application in engineering.
5. Objectives or Learning Outcomes
Course learning outcomes
Description
Knowledge of the avionics systems, their interrelation and possibilities of integration
Knowledge of the basic terminology related to concurrent systems, real-time systems, and formal modeling and formal verification techniques.
Knowledge of the terminology related to avionics.
Additional outcomes
Not established.
6. Units / Contents
  • Unit 1:
    • Unit 1.1:
    • Unit 1.2:
  • Unit 2:
    • Unit 2.1:
    • Unit 2.2:
    • Unit 2.3:
    • Unit 2.4:
  • Unit 3:
    • Unit 3.1:
    • Unit 3.2:
    • Unit 3.3:
  • Unit 4:
    • Unit 4.1:
    • Unit 4.2:
    • Unit 4.3:
  • Unit 5:
    • Unit 5.1:
    • Unit 5.2:
  • Unit 6:
    • Unit 6.1:
    • Unit 6.2:
    • Unit 6.3:
  • Unit 7:
  • Unit 8:
    • Unit 8.1:
    • Unit 8.2:
    • Unit 8.3:
7. Activities, Units/Modules and Methodology
Training Activity Methodology Related Competences (only degrees before RD 822/2021) ECTS Hours As Com Description
Class Attendance (theory) [ON-SITE] Lectures CA04 CA05 CA06 CE03 0.8 20 N N
Problem solving and/or case studies [ON-SITE] Problem solving and exercises CA04 CA05 CA06 CE03 0.8 20 Y N
Computer room practice [ON-SITE] Problem solving and exercises CA01 CA02 CA03 CA04 CA05 CA06 CE03 0.6 15 Y N
Practicum and practical activities report writing or preparation [OFF-SITE] Group Work CA02 CA03 CA06 CE03 0.8 20 Y N
Writing of reports or projects [OFF-SITE] Group Work CA01 CA02 CA03 CA04 CA05 CA06 CE03 1.2 30 Y N
Study and Exam Preparation [OFF-SITE] Self-study CA01 CA04 CA05 CA06 CE03 1.6 40 N N
Final test [ON-SITE] Assessment tests CA01 CA02 CA03 CA04 CA05 CA06 CE03 0.12 3 Y Y
Project or Topic Presentations [ON-SITE] Assessment tests CA01 CA02 CA03 CA04 CA05 CA06 CE03 0.08 2 Y N
Total: 6 150
Total credits of in-class work: 2.4 Total class time hours: 60
Total credits of out of class work: 3.6 Total hours of out of class work: 90

As: Assessable training activity
Com: Training activity of compulsory overcoming (It will be essential to overcome both continuous and non-continuous assessment).

8. Evaluation criteria and Grading System
Evaluation System Continuous assessment Non-continuous evaluation * Description
Final test 60.00% 100.00%
Oral presentations assessment 15.00% 0.00%
Theoretical papers assessment 15.00% 0.00%
Assessment of problem solving and/or case studies 10.00% 0.00%
Total: 100.00% 100.00%  
According to art. 4 of the UCLM Student Evaluation Regulations, it must be provided to students who cannot regularly attend face-to-face training activities the passing of the subject, having the right (art. 12.2) to be globally graded, in 2 annual calls per subject , an ordinary and an extraordinary one (evaluating 100% of the competences).

Evaluation criteria for the final exam:
  • Continuous assessment:
    Evaluation criteria not defined
  • Non-continuous evaluation:
    Evaluation criteria not defined

Specifications for the resit/retake exam:
Evaluation criteria not defined
Specifications for the second resit / retake exam:
Evaluation criteria not defined
9. Assignments, course calendar and important dates
Not related to the syllabus/contents
Hours hours
Practicum and practical activities report writing or preparation [AUTÓNOMA][Group Work] 20
Writing of reports or projects [AUTÓNOMA][Group Work] 30
Study and Exam Preparation [AUTÓNOMA][Self-study] 40
Final test [PRESENCIAL][Assessment tests] 3
Project or Topic Presentations [PRESENCIAL][Assessment tests] 2

Unit 1 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 3
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 3
Computer room practice [PRESENCIAL][Problem solving and exercises] 3

Unit 2 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 3
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 3
Computer room practice [PRESENCIAL][Problem solving and exercises] 3

Unit 3 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 3
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 3
Computer room practice [PRESENCIAL][Problem solving and exercises] 3

Unit 4 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 2
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 3

Unit 5 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 3
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 3
Computer room practice [PRESENCIAL][Problem solving and exercises] 3

Unit 6 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 2
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 1

Unit 7 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 2
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 2
Computer room practice [PRESENCIAL][Problem solving and exercises] 3

Unit 8 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 2
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 2

Global activity
Activities hours
10. Bibliography and Sources
Author(s) Title Book/Journal Citv Publishing house ISBN Year Description Link Catálogo biblioteca
Carry R. Spitzer Avionics: elements, software and functions CRC PRess 2007  
Chris Binns Aircraft Systems. Instruments, Communications, Navigation, and Control Wiley - IEEE Press 9781119259862 2019  



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