A Figure 1. A hexagonal cellular geometry with cluster size K=13. Consider a hexagonal cellular geometry with cluster size K=13 in Figure 1. Assume shift parameters i and j where j

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter21: Resistive-capacitive Series Circuits
Section: Chapter Questions
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Solve c) and d) only showing all the steps in ur work 
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A
Figure 1. A hexagonal cellular geometry with cluster size K=13.
Transcribed Image Text:A Figure 1. A hexagonal cellular geometry with cluster size K=13.
Consider a hexagonal cellular geometry with cluster size K=13 in Figure 1. Assume shift parameters i and j
where j<i. Consider cells in each cluster with size K are denoted as 1, 2, 3, ..., 13. And, the cell labeled with A
is cell number 1 in each cluster. Assume that A is the desired cell of concern.
(a) Find the values of i and j so that the aforementioned conditions for K are satisfied, i.e., K=13 and j < i.
(b) Find all the co-channel cells of cell A (i.e., cell 1 in each cluster) in the first tier and label them with A in
Figure 1.
(c) Show only one cluster labeled with cells using the notations above, i.e., 1, 2, 3, ..., 13, so that adjacent cells
are labeled with no successive numbers to reduce the adjacent channel interference.
(d) Find the co-channel cell distance D from the desired cell A for the first-tier co-channel cells only.
Transcribed Image Text:Consider a hexagonal cellular geometry with cluster size K=13 in Figure 1. Assume shift parameters i and j where j<i. Consider cells in each cluster with size K are denoted as 1, 2, 3, ..., 13. And, the cell labeled with A is cell number 1 in each cluster. Assume that A is the desired cell of concern. (a) Find the values of i and j so that the aforementioned conditions for K are satisfied, i.e., K=13 and j < i. (b) Find all the co-channel cells of cell A (i.e., cell 1 in each cluster) in the first tier and label them with A in Figure 1. (c) Show only one cluster labeled with cells using the notations above, i.e., 1, 2, 3, ..., 13, so that adjacent cells are labeled with no successive numbers to reduce the adjacent channel interference. (d) Find the co-channel cell distance D from the desired cell A for the first-tier co-channel cells only.
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