Microprocessors and Microprocessor Systems in Avionics

Major: Avionics
Code of subject: 6.173.00.O.023
Credits: 6.00
Department: Electronics and Information Technology
Lecturer: Bohdan Vus
Semester: 4 семестр
Mode of study: денна
Мета вивчення дисципліни: Obtaining theoretical and practical skills and acquiring knowledge in the field of using microprocessors and microprocessor systems in avionics (architecture, functional and technical characteristics of specialized microprocessors for avionics, peripheral devices of microprocessors - MEMS, etc. sensors, actuators, control and information devices, control and navigation devices , automatic recorders).
Завдання: The study of an educational discipline involves the formation of competencies in students of education: general competences: - ZK 1. Ability to search, process and analyze information from various sources; - ZK 4. Skills of performing safe activities; - ZK 5. Ability to develop projects and manage them; - ZK 6. Ability to apply knowledge in practical situations; - ZK 7. Ability to identify, formulate and solve tasks using various methods and tools; - ZK 8. The ability to make reasonable decisions in normal and special situations and to implement them correctly. ZK 9. Skills and abilities to use information and communication technologies, to adapt and work professional competences: - FC 2. The ability to understand the design process of microprocessor avionics systems, to have the basic skills of developing avionics hardware and software. - FC 5. Ability to use informational materials of technical documentation for maintenance of microprocessor avionics systems. - FC 8. Ability to collect and analyze the latest technical solutions in avionics to create technical proposals for their practical use.
Learning outcomes: As a result of studying the academic discipline, the student must be able to demonstrate the following learning outcomes: - understand the main types and principles of operation of microprocessor avionics systems; – to know the modern element base of external devices of processors, which are used to build microprocessor systems of avionics (MEMS and other sensors, actuators, indicators, displays, monitors, etc.); – architecture, functional purpose, principles of operation and technical characteristics of typical microprocessors used in avionics; – know the principles of creating software for microprocessor avionics systems and the basic requirements for it; - be able to use technical information materials to get acquainted with the functional and technical characteristics of microprocessor-based avionics; - know the methods of debugging, tests, testing, verification, simulation of microprocessor avionics systems; – to understand the basic requirements for the production of the hardware component of microprocessor avionics systems and to be able to use them practically; - be able to read and draw up functional and principle diagrams of electronic functional microprocessor circuits of avionics; - be able to develop basic functional and software algorithms as well as software codes for microprocessor avionics systems; - to possess the methods of developing functional schemes and algorithms, to be able to search for optimal price/quality solutions for the use of components in the development of microprocessor avionics systems; - to be able to competently present and defend proposed technical solutions in the field of microprocessor electronics during their presentation and discussion.
Required prior and related subjects: • Engineering end computer graphics • Informatics of avionics • Microprocessors and Microprocessors systems in Avionics
Summary of the subject: Functional and technical characteristics of specialized microprocessors used in avionics. Examples of use. Structures of the main types of microprocessor systems: collection, storage, processing and presentation of information from aircraft sensors; control of executive devices, navigation and exchange of information data Structural design of hardware and software components of microprocessor systems of avionics. Avionics touch and executive devices, interfaces and drivers.
Опис: The discipline "Microprocessors and microprocessor systems in avionics" provides the basis of knowledge about the peculiarities of the use of microprocessors and microprocessor systems in avionics, provides an understanding of the construction of microprocessor devices of avionics, their peripheral devices (MEMS and other sensors, actuators, etc.), makes it possible to acquire skills in designing circuits and algorithms of functional circuits of microprocessor systems of avionics, as well as to acquire skills for creating software for microprocessor systems, debugging, simulation, emulation, etc. Examples of the use of microprocessor systems in aviation and space technology are considered.
Assessment methods and criteria: Current control: laboratory reports, graphic calculation papers, oral interviewing, written tests - 45 points • Final control: control procedure - written and verbal examination 55 points.
Критерії оцінювання результатів навчання: Exam
Порядок та критерії виставляння балів та оцінок: 100–88 points – (“excellent”) awarded for a high level of knowledge (some inaccuracies are allowed) of the educational material of the component contained in the main and additional recommended literary sources, the ability to analyze the phenomena being studied in their interrelationship and development, clearly, succinctly, logically, consistently answer the questions, the ability to apply theoretical provisions when solving practical problems; 87–71 points – (“good”) is awarded for a generally correct understanding of the educational material of the component, including calculations, reasoned answers to the questions posed, which, however, contain certain (insignificant) shortcomings, for the ability to apply theoretical provisions when solving practical tasks; 70 – 50 points – (“satisfactory”) awarded for weak knowledge of the component’s educational material, inaccurate or poorly reasoned answers, with a violation of the sequence of presentation, for weak application of theoretical provisions when solving practical problems; 49–26 points – (“not certified” with the possibility of retaking the semester control) is awarded for ignorance of a significant part of the educational material of the component, significant errors in answering questions, inability to apply theoretical provisions when solving practical problems; 25-00 points - ("unsatisfactory" with mandatory re-study) is given for ignorance of a significant part of the educational material of the component, significant errors in answering questions, inability to navigate when solving practical problems, ignorance of the main fundamental provisions.
Recommended books: 1. Чернов В.Ю., Никитин В.Г., Иванов Ю.П. Надежность авиационных приборов и измерительно-вычислительных комплексов: Учеб. Пособие - СПб., 2004. - 96 с. 2. Теорія надійності систем авіоніки: У 2 ч.: Навч. Посібник / В.М. Грібов, Ю.В. Грищенко, A.B. Скрипець, В.П. Стрельніков; За заг. ред. проф. A.B. Скрипця. - К.: Книжкове вид-во НАУ, 2006. 3. Погорелый С.Д., Слободяник Т.Ф. Програмное обеспечение микропроцессорных систем. 4. Толковый словарь по вычислительным системам/ Под ред. В. Иллингуорта и др. – М.: Машиностроение, 1991, 560 с. 5. М.Д. Матвійків, Б.С. Вус, О.М. Матвійків/ Елементи та компоненти електронних пристроїв: підручник. - Львів: Видавництво Львівської політехніки, 2015. – 496 с.
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Академічна доброчесність: The policy regarding the academic integrity of the participants of the educational process is formed on the basis of compliance with the principles of academic integrity, taking into account the norms "Regulations on academic integrity at the Lviv Polytechnic National University" (approved by the academic council of the university on June 20, 2017, protocol No. 35).