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Curriculum Design & Instruction To Teach Mobile Communications
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Curriculum Design and Instruction To Teach
Mobile Communications:
Author: Charles Hayes:
Mobile Communications is a wireless
form of communication in which voice
and data information is emitted,
transmitted and received via microwaves.
This type of communication allows
individuals to converse with one another
and/or transmit and receive data while
moving from place to place. Some examples
include: cellular and digital cordless
telephones; pagers; telephone answering
devices; air-to-ground telecommunications;
and satellite-based communications.
Special Features Included In This
Curriculum Design and Instruction
Are:
* Phases For Conducting A Needs Assessment:
* Curriculum Design Supplement:
|A|. Subject-Questions-Answers:
* Curriculum Design Plan:
* Lesson Plans:
* Instructional Goals:
* Instructional Objectives:
* Instructional Activities:
* Instructional Evaluation Techniques:
* Standard Vocabulary:
* A Limited Glimpse:
Topics Include:
@ Introduction:
1. Applications:
a. Vehicles:
b. Emergencies:
c. Business:
d. Replacement of wired networks:
e. Infotainment and more:
f. Location dependent services:
g. Mobile and wireless devices:
2. A short history of wireless communication:
3. A market for mobile communications:
4. Some open research topics:
5. A simplified reference model:
6. Overview:
@ Wireless Transmission:
1. Frequencies for radio transmission:
a. Regulations:
2. Signals:
3. Antennas:
4. Signal Propagation:
a. Path loss of radio signals:
b. Additional signal progagation effects:
c. Multipath propagation:
5. Multiplexing:
a. Space division multiplexing:
b. Frequency division multiplexing:
c. Time division multiplexing:
d. Code division multiplexing:
6. Modulation:
a. Amplitude shift keying:
b. Frequency shift keying:
c. Phase shift keying:
d. Advanced frequency shift keying:
e. Advanced phase shift keying:
f. Multicarrier modulation:
7. Spread spectrum:
a. Direct sequence spread spectrum:
b. Frequency hopping spread spectum:
8. Cellular Systems:
9. Summary:
@ Medium Access Control:
1. Motivation for a specialized MAC:
a. Hidden and exposed terminals:
b. Near and far terminals:
2. SDMA:
3. FDMA:
4. TDMA:
a. Fixed TDM:
b. Classical Aloha:
c. Slotted Aloha:
e. Carrier sense multiple access:
f. Demand assigned multiple access:
g. PRMA packet reservation multiple access:
h. Reservation TDMA:
i. Multiple access with collision avoidance:
j. Polling:
k. Inhibit sense multiple access:
5. CDMA:
a. Spread Aloha multiple access:
b. Comparison of S/T/F/CDMA:
@ Telecommunication Systems:
1. GSM:
a. Mobile Services:
b. System architecture:
c. Radio interface:
d. Protocols:
e. Localization and calling:
f. Handover:
g. Security:
h. New data services:
2. DECT:
a. System Architecture:
b. Protocol Architecture:
3. TETRA:
4. UMTS and IMT-2000:
a. UMTS basic architecture:
b. UTRA FDD Mode:
c. UTRA TDD Mode:
5. Summary:
@ Satellite Systems:
1. History:
2. Applications:
3. Basics:
a. GEO:
B. LEO:
C. MEO:
4. Routing:
5. Localization:
6. Handover:
7. Examples:
8. Summary:
@ Broadcast Systesm:
1. Overview:
2. Cyclic repetition of data:
3. Digital audio broadcasting:
a. Multimedia object transfer protocol:
4. Digital video broadcasting:
5. Summary:
@ Wireless LAN:
1. Infrared vs. radio transmission:
2. Infrastructure and ad hoc networks:
3. IEEE 802.11:
a. System architecture:
b. Protocol architecture:
c. Physical layer:
d. Medium access control layer:
e. MAC management:
f. Future development:
4. HIPERLAN:
a. Protocol architecture:
b. Physical layer:
c. Channel access control sublayer:
d. Medium access control sublayer:
e. Information bases and networking:
5. Bluetooth:
a. User scenarios:
b. Physical layer:
c. MAC layer:
d. Networking:
e. Security:
f. Link management:
6. Summary:
@ Wireless ATM:
1. Motivation for WATM:
2. Wireless ATM working group:
3. WATM services:
4. Reference model:
a. Example configurations:
b. Generic reference model:
5. Functions:
a. Wireless mobile terminal side:
b. Mobility supporting network side:
6. Radio access layer:
a. Requirements:
b. BRAN:
7. Handover:
a. Handover reference model:
b. Handover requirements:
c. Types of handover:
d. Handover scenarios:
e. Backward handover:
f. Forward handover:
8. Location management:
a. Requirements for location management:
b. Procedures and entities:
9. Addressing:
10. Mobile quality of service:
11. Access point control protocol:
12. Summary:
@ Mobile Network Layer:
1. Mobile IP:
a. Goals, assumptions, and requirements:
b. Entities and terminology:
c. IP packet delivery:
d. Agent advertisement and discovery:
e. Registration:
f. Tunnelling and encapsulation:
g. Optimizations:
h. Reverse tunnelling:
i. IPv6:
2. Dynamic host configuration protocol:
3. Ad hoc networks:
a. Routing:
b. destination sequence distance vector:
c. Dynamic source routing:
d. Hierarchical algorithms:
e. Alternative metrics:
4. Summary:
@ Mobile Transport Layer:
1. Traditional TCP:
a. Congestion control:
b. Slow Start:
c. Fast retransmit/fast recovery:
d. Implications on mobility:
2. Indirect TCP:
3. Snooping TCP:
4. Mobile TCP:
5. Fast retransmit/fast recovery:
6. Transmission/time-out freezing:
7. Selective retransmission:
8. Transaction oriented TCP:
9. Summary:
@ Support For Mobility:
1. File Systems:
a. Consistency:
b. Examples:
2. World wide web:
a. Hypertext transfer protocol:
b. Hypertext markup language:
c. Some approaches that might help
wireless access:
3. Wireless application protocol:
a. Architecture:
b. Wireless datagram protocol:
c. Wireless transport layer security:
d. Wireless transaction protocol:
e. Wireless session protocol:
f. Wireless application environment:
g. Wireless markup language:
h. WMLScript:
i. Wireless telephony application:
j. Example stacks with WAP:
4. Summary:
d. System architectures:
* STATE OF THE ART CURRICULUM DESIGN:
* NEW:
* BIBLIOGRAPHY & REFERENCES:
* ILLUSTRATIONS:
* PHOTOS:
* PAPERBACK:
* FONT SIZE: 8 TO 10 INCHES:
* BOLD & ITALIC TYPE:
* FONT COLOR: BLACK-RED-BLUE OR WHITE:
* TITLE PAGE: WHITE:
* TRANSPARENT FRONT PAGE:
* BLACK OR WHITE BACK PAGE COVER:
* BINDED: WIRE-0: B & W OR COLOR COIL:
* 500 WHITE PAGES: 8x11 INCHES:
* ALLOW 3 TO 4 WEEKS TO RECEIVE ITEM:
* RECEIVE A DIPLOMA IN MOBILE
COMMUNICATIONS AFTER PASSING THE
EXAMINATIONS IN THE CURRICULUM DESIGN
AND INSTRUCTION:
* ORDER EARLY WHILE SUPPLIES LAST:
Mobile Communications:
Author: Charles Hayes:
Mobile Communications is a wireless
form of communication in which voice
and data information is emitted,
transmitted and received via microwaves.
This type of communication allows
individuals to converse with one another
and/or transmit and receive data while
moving from place to place. Some examples
include: cellular and digital cordless
telephones; pagers; telephone answering
devices; air-to-ground telecommunications;
and satellite-based communications.
Special Features Included In This
Curriculum Design and Instruction
Are:
* Phases For Conducting A Needs Assessment:
* Curriculum Design Supplement:
|A|. Subject-Questions-Answers:
* Curriculum Design Plan:
* Lesson Plans:
* Instructional Goals:
* Instructional Objectives:
* Instructional Activities:
* Instructional Evaluation Techniques:
* Standard Vocabulary:
* A Limited Glimpse:
Topics Include:
@ Introduction:
1. Applications:
a. Vehicles:
b. Emergencies:
c. Business:
d. Replacement of wired networks:
e. Infotainment and more:
f. Location dependent services:
g. Mobile and wireless devices:
2. A short history of wireless communication:
3. A market for mobile communications:
4. Some open research topics:
5. A simplified reference model:
6. Overview:
@ Wireless Transmission:
1. Frequencies for radio transmission:
a. Regulations:
2. Signals:
3. Antennas:
4. Signal Propagation:
a. Path loss of radio signals:
b. Additional signal progagation effects:
c. Multipath propagation:
5. Multiplexing:
a. Space division multiplexing:
b. Frequency division multiplexing:
c. Time division multiplexing:
d. Code division multiplexing:
6. Modulation:
a. Amplitude shift keying:
b. Frequency shift keying:
c. Phase shift keying:
d. Advanced frequency shift keying:
e. Advanced phase shift keying:
f. Multicarrier modulation:
7. Spread spectrum:
a. Direct sequence spread spectrum:
b. Frequency hopping spread spectum:
8. Cellular Systems:
9. Summary:
@ Medium Access Control:
1. Motivation for a specialized MAC:
a. Hidden and exposed terminals:
b. Near and far terminals:
2. SDMA:
3. FDMA:
4. TDMA:
a. Fixed TDM:
b. Classical Aloha:
c. Slotted Aloha:
e. Carrier sense multiple access:
f. Demand assigned multiple access:
g. PRMA packet reservation multiple access:
h. Reservation TDMA:
i. Multiple access with collision avoidance:
j. Polling:
k. Inhibit sense multiple access:
5. CDMA:
a. Spread Aloha multiple access:
b. Comparison of S/T/F/CDMA:
@ Telecommunication Systems:
1. GSM:
a. Mobile Services:
b. System architecture:
c. Radio interface:
d. Protocols:
e. Localization and calling:
f. Handover:
g. Security:
h. New data services:
2. DECT:
a. System Architecture:
b. Protocol Architecture:
3. TETRA:
4. UMTS and IMT-2000:
a. UMTS basic architecture:
b. UTRA FDD Mode:
c. UTRA TDD Mode:
5. Summary:
@ Satellite Systems:
1. History:
2. Applications:
3. Basics:
a. GEO:
B. LEO:
C. MEO:
4. Routing:
5. Localization:
6. Handover:
7. Examples:
8. Summary:
@ Broadcast Systesm:
1. Overview:
2. Cyclic repetition of data:
3. Digital audio broadcasting:
a. Multimedia object transfer protocol:
4. Digital video broadcasting:
5. Summary:
@ Wireless LAN:
1. Infrared vs. radio transmission:
2. Infrastructure and ad hoc networks:
3. IEEE 802.11:
a. System architecture:
b. Protocol architecture:
c. Physical layer:
d. Medium access control layer:
e. MAC management:
f. Future development:
4. HIPERLAN:
a. Protocol architecture:
b. Physical layer:
c. Channel access control sublayer:
d. Medium access control sublayer:
e. Information bases and networking:
5. Bluetooth:
a. User scenarios:
b. Physical layer:
c. MAC layer:
d. Networking:
e. Security:
f. Link management:
6. Summary:
@ Wireless ATM:
1. Motivation for WATM:
2. Wireless ATM working group:
3. WATM services:
4. Reference model:
a. Example configurations:
b. Generic reference model:
5. Functions:
a. Wireless mobile terminal side:
b. Mobility supporting network side:
6. Radio access layer:
a. Requirements:
b. BRAN:
7. Handover:
a. Handover reference model:
b. Handover requirements:
c. Types of handover:
d. Handover scenarios:
e. Backward handover:
f. Forward handover:
8. Location management:
a. Requirements for location management:
b. Procedures and entities:
9. Addressing:
10. Mobile quality of service:
11. Access point control protocol:
12. Summary:
@ Mobile Network Layer:
1. Mobile IP:
a. Goals, assumptions, and requirements:
b. Entities and terminology:
c. IP packet delivery:
d. Agent advertisement and discovery:
e. Registration:
f. Tunnelling and encapsulation:
g. Optimizations:
h. Reverse tunnelling:
i. IPv6:
2. Dynamic host configuration protocol:
3. Ad hoc networks:
a. Routing:
b. destination sequence distance vector:
c. Dynamic source routing:
d. Hierarchical algorithms:
e. Alternative metrics:
4. Summary:
@ Mobile Transport Layer:
1. Traditional TCP:
a. Congestion control:
b. Slow Start:
c. Fast retransmit/fast recovery:
d. Implications on mobility:
2. Indirect TCP:
3. Snooping TCP:
4. Mobile TCP:
5. Fast retransmit/fast recovery:
6. Transmission/time-out freezing:
7. Selective retransmission:
8. Transaction oriented TCP:
9. Summary:
@ Support For Mobility:
1. File Systems:
a. Consistency:
b. Examples:
2. World wide web:
a. Hypertext transfer protocol:
b. Hypertext markup language:
c. Some approaches that might help
wireless access:
3. Wireless application protocol:
a. Architecture:
b. Wireless datagram protocol:
c. Wireless transport layer security:
d. Wireless transaction protocol:
e. Wireless session protocol:
f. Wireless application environment:
g. Wireless markup language:
h. WMLScript:
i. Wireless telephony application:
j. Example stacks with WAP:
4. Summary:
d. System architectures:
* STATE OF THE ART CURRICULUM DESIGN:
* NEW:
* BIBLIOGRAPHY & REFERENCES:
* ILLUSTRATIONS:
* PHOTOS:
* PAPERBACK:
* FONT SIZE: 8 TO 10 INCHES:
* BOLD & ITALIC TYPE:
* FONT COLOR: BLACK-RED-BLUE OR WHITE:
* TITLE PAGE: WHITE:
* TRANSPARENT FRONT PAGE:
* BLACK OR WHITE BACK PAGE COVER:
* BINDED: WIRE-0: B & W OR COLOR COIL:
* 500 WHITE PAGES: 8x11 INCHES:
* ALLOW 3 TO 4 WEEKS TO RECEIVE ITEM:
* RECEIVE A DIPLOMA IN MOBILE
COMMUNICATIONS AFTER PASSING THE
EXAMINATIONS IN THE CURRICULUM DESIGN
AND INSTRUCTION:
* ORDER EARLY WHILE SUPPLIES LAST:



