Abstract: A system (102) and a method for generating traffic density maps is disclosed. The system comprises a data acquisition module (212) configured to collect a first set of inputs (306) comprising traffic data and a second set of inputs (308) comprising server plot data for a target area (304). A user interface module (214) may receive a set of user-defined parameters. A processing module (216) may generate traffic density maps based on the collected data and user-defined parameters. The system may create a heat map indicating traffic density for the target area (304). The generated traffic density maps may be stored. This approach may enable efficient generation of customizable traffic density visualizations using low-volume data, potentially improving network planning and optimization processes. FIGURE 3
WE CLAIM:
1. A system (102) for generating traffic density maps, the system (102)
comprising:
5 a user interface module (214) configured to receive a user request
having a set of user-defined parameters;
on receiving the user request, a data acquisition module (212)
configured to collect a first set of inputs (306) comprising traffic data for a
target area (304), and a second set of inputs (308) comprising best server
10 plot data for the target area (304); and
a processing module (216) configured to generate a set of traffic
density maps by performing a set of operative steps on the collected first set
of inputs (306), and the second set of inputs (308) based on the set of
received user-defined parameters.
15 2. The system (102) of claim 1, further comprises: a first data storing module
(210-1) configured to store the set of user-defined parameters and a second
data storing module (210-2) configured to store the set of generated traffic
density maps.
3. The system (102) of claim 1, wherein the traffic data is a cell-level traffic
20 data indicating data usage associated with one or more network cells within
the target area, and the best server plot data includes information associated
with a serving cell providing the strongest signal strength or highest quality
connection for each location within the target area.
4. The system (102) of claim 1, wherein the processing module (216)
25 configured to perform the set of operative steps by:
calculating a maximum possible weightage value by combining a
maximum cell traffic value and a maximum value of morphology
weightage provided through the user interface module (214);
56
computing a best server area for each network cell based on the
best server plot data;
calculating a cell traffic density for locations within the target area
based on cell traffic and a cell area of a specific cell;
5 iterating every location in the target area using a base resolution
value, wherein for each location,
| # | Name | Date |
|---|---|---|
| 1 | 202421021579-STATEMENT OF UNDERTAKING (FORM 3) [21-03-2024(online)].pdf | 2024-03-21 |
| 2 | 202421021579-PROVISIONAL SPECIFICATION [21-03-2024(online)].pdf | 2024-03-21 |
| 3 | 202421021579-FORM 1 [21-03-2024(online)].pdf | 2024-03-21 |
| 4 | 202421021579-FIGURE OF ABSTRACT [21-03-2024(online)].pdf | 2024-03-21 |
| 5 | 202421021579-DRAWINGS [21-03-2024(online)].pdf | 2024-03-21 |
| 6 | 202421021579-FORM-26 [26-03-2024(online)].pdf | 2024-03-26 |
| 7 | 202421021579-ORIGINAL UR 6(1A) FORM 26-120624.pdf | 2024-06-20 |
| 8 | 202421021579-Proof of Right [23-07-2024(online)].pdf | 2024-07-23 |
| 9 | 202421021579-ORIGINAL UR 6(1A) FORM 1-090824.pdf | 2024-08-17 |
| 10 | 202421021579-Power of Attorney [27-02-2025(online)].pdf | 2025-02-27 |
| 11 | 202421021579-FORM-5 [27-02-2025(online)].pdf | 2025-02-27 |
| 12 | 202421021579-FORM 18 [27-02-2025(online)].pdf | 2025-02-27 |
| 13 | 202421021579-DRAWING [27-02-2025(online)].pdf | 2025-02-27 |
| 14 | 202421021579-Covering Letter [27-02-2025(online)].pdf | 2025-02-27 |
| 15 | 202421021579-CORRESPONDENCE-OTHERS [27-02-2025(online)].pdf | 2025-02-27 |
| 16 | 202421021579-COMPLETE SPECIFICATION [27-02-2025(online)].pdf | 2025-02-27 |
| 17 | Abstract.jpg | 2025-04-17 |