Cost Capacity Index Solution

STEP 0: Pre-Calculation Summary
Formula Used
Cost Capacity Index = (Number of Subscriber Lines*Switching Capacity)/Cost per Subscriber
Cci = (N*SC)/C
This formula uses 4 Variables
Variables Used
Cost Capacity Index - Cost Capacity Index is expenditure or cost incurred.
Number of Subscriber Lines - Number of Subscriber Lines refers to the total count of individual telephone or communication lines connected to a particular telecommunications network or service provider.
Switching Capacity - Switching capacity refers to the maximum number of simultaneous connections or calls that a telecommunication switch or system can handle at a given time.
Cost per Subscriber - The cost per subscriber refers to the average expenses incurred by a telecommunication service provider to serve each subscriber within their network.
STEP 1: Convert Input(s) to Base Unit
Number of Subscriber Lines: 15 --> No Conversion Required
Switching Capacity: 33.75 --> No Conversion Required
Cost per Subscriber: 16.67 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Cci = (N*SC)/C --> (15*33.75)/16.67
Evaluating ... ...
Cci = 30.368926214757
STEP 3: Convert Result to Output's Unit
30.368926214757 --> No Conversion Required
FINAL ANSWER
30.368926214757 30.36893 <-- Cost Capacity Index
(Calculation completed in 00.020 seconds)

Credits

Created by Shobhit Dimri
Bipin Tripathi Kumaon Institute of Technology (BTKIT), Dwarahat
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22 Telecommunication Traffic System Calculators

Cost of Common Hardware
Go Cost of Common Hardware = Cost of Switching System-(Number of Switching Element*Cost per Switching Element)-Cost of Common Control System
Cost of Switching System
Go Cost of Switching System = Number of Switching Element*Cost per Switching Element+Cost of Common Hardware+Cost of Common Control System
Time Required for Functions other than Switching
Go Time Required Other than Switching = Call Setup Time-Number of Switching Stage*Average Switching Time per Stage
Call Setup Time
Go Call Setup Time = Time Required Other than Switching+Number of Switching Stage*Average Switching Time per Stage
Cost per Subscriber
Go Cost per Subscriber = (Number of Subscriber Lines*Switching Capacity)/Cost Capacity Index
Cost Capacity Index
Go Cost Capacity Index = (Number of Subscriber Lines*Switching Capacity)/Cost per Subscriber
Downtime
Go Downtime = (Uptime-Availability*Uptime)/Availability
Average Holding Time
Go Average Holding Time = (Average Occupancy*Time Period)/Average Number of Calls
Average Number of Call
Go Average Number of Calls = (Average Occupancy*Time Period)/Average Holding Time
Average Occupancy
Go Average Occupancy = (Average Number of Calls*Average Holding Time)/Time Period
Trunk Occupancy
Go Trunk Occupancy = Occupancy*(1-Grade of Service)/Average Occupancy
Switching Capacity
Go Switching Capacity = (Number of Subscriber Lines*Traffic Handling Capacity)/2
Uptime
Go Uptime = (Availability*Downtime)/(1-Availability)
Traffic Handling Capability
Go Traffic Handling Capacity = (2*Switching Capacity)/Number of Subscriber Lines
Number of Lost Call
Go Number of Lost Calls = Total Number of Offered Calls*Grade of Service
Total Number of Offered Calls
Go Total Number of Offered Calls = Number of Lost Calls/Grade of Service
Grade of Service
Go Grade of Service = Number of Lost Calls/Total Number of Offered Calls
Availability
Go Availability = Uptime/(Uptime+Downtime)
Average Poisson Call Arrival Rate
Go Average Poisson Call Arrival Rate = Poisson Arrival/Time Period
Poisson Arrival
Go Poisson Arrival = Average Poisson Call Arrival Rate *Time Period
Quantization Error
Go Quantization Error = Sinusoidal Input/(2*Voltage)
Unavailability of System
Go Unavailability = 1-Availability

Cost Capacity Index Formula

Cost Capacity Index = (Number of Subscriber Lines*Switching Capacity)/Cost per Subscriber
Cci = (N*SC)/C

What is Cost per Subscriber?

Cost per Subscriber is the average cost that a subscriber have to pay depending upon the Cost Capacity Index and Switching Capacity available.

How to Calculate Cost Capacity Index?

Cost Capacity Index calculator uses Cost Capacity Index = (Number of Subscriber Lines*Switching Capacity)/Cost per Subscriber to calculate the Cost Capacity Index, The Cost Capacity Index formula is defined as an expenditure or cost incurred during making a call to a circuit. Cost Capacity Index is denoted by Cci symbol.

How to calculate Cost Capacity Index using this online calculator? To use this online calculator for Cost Capacity Index, enter Number of Subscriber Lines (N), Switching Capacity (SC) & Cost per Subscriber (C) and hit the calculate button. Here is how the Cost Capacity Index calculation can be explained with given input values -> 30.36893 = (15*33.75)/16.67.

FAQ

What is Cost Capacity Index?
The Cost Capacity Index formula is defined as an expenditure or cost incurred during making a call to a circuit and is represented as Cci = (N*SC)/C or Cost Capacity Index = (Number of Subscriber Lines*Switching Capacity)/Cost per Subscriber. Number of Subscriber Lines refers to the total count of individual telephone or communication lines connected to a particular telecommunications network or service provider, Switching capacity refers to the maximum number of simultaneous connections or calls that a telecommunication switch or system can handle at a given time & The cost per subscriber refers to the average expenses incurred by a telecommunication service provider to serve each subscriber within their network.
How to calculate Cost Capacity Index?
The Cost Capacity Index formula is defined as an expenditure or cost incurred during making a call to a circuit is calculated using Cost Capacity Index = (Number of Subscriber Lines*Switching Capacity)/Cost per Subscriber. To calculate Cost Capacity Index, you need Number of Subscriber Lines (N), Switching Capacity (SC) & Cost per Subscriber (C). With our tool, you need to enter the respective value for Number of Subscriber Lines, Switching Capacity & Cost per Subscriber and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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