design and propose the solution for cellular network.
Budget: $10 – $30 USD
Instructions:
1. Based on the case study scenario below, your task is to design and
propose the solution for cellular network.
2. The deliverable is a written report containing all design step and
computed parameters, which are detailed in Task (1) to (8).
3. Submission of softcopy design solution via e-learning platform by the 15
January 2022.
Case study scenario:
Ipoh city has an area of 643 square kilometer with a population of 660,000. As
an RF planning engineer for one local operator with 20MHz of spectrum and a
full duplex channel bandwidth of 200KHz. Assuming that the cost to build one
base station is RM500K, while one sector is only RM50K, propose the cell
planning with 6 tier-one co-channel cells and a minimum operating C/I of
15dB. Your design should cover and discuss:
1. The chosen cluster size, N.
2. The size of the cell, R.
3. The number of cell sectors used.
4. The selected path loss exponent.
5. The chosen GOS and the total number of users that your network can
served.
6. The percentage market penetration for your design
7. Discuss and comment on the cost per user to deploy your network.
8. Estimate the additional investment needed in 5 years when there is an
estimated increased on the subscribers by 20%.
1. Based on the case study scenario below, your task is to design and
propose the solution for cellular network.
2. The deliverable is a written report containing all design step and
computed parameters, which are detailed in Task (1) to (8).
3. Submission of softcopy design solution via e-learning platform by the 15
January 2022.
Case study scenario:
Ipoh city has an area of 643 square kilometer with a population of 660,000. As
an RF planning engineer for one local operator with 20MHz of spectrum and a
full duplex channel bandwidth of 200KHz. Assuming that the cost to build one
base station is RM500K, while one sector is only RM50K, propose the cell
planning with 6 tier-one co-channel cells and a minimum operating C/I of
15dB. Your design should cover and discuss:
1. The chosen cluster size, N.
2. The size of the cell, R.
3. The number of cell sectors used.
4. The selected path loss exponent.
5. The chosen GOS and the total number of users that your network can
served.
6. The percentage market penetration for your design
7. Discuss and comment on the cost per user to deploy your network.
8. Estimate the additional investment needed in 5 years when there is an
estimated increased on the subscribers by 20%.
Related categories:
Wireless
Electrical Engineering
Wireless Radio Frequency Engineering
Cellular Design