TY - GEN
T1 - Performance Analysis of RouteSegmentation Algorithm in Identifying Perimeter Area Around Travel Route
AU - Bachmid, Muhammad Avied
AU - Anshari Haq, Muhammad Yasir
AU - Mumtaz, Muhammad Rafly
AU - Pinandito, Aryo
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - Prior study has developed the RouteSegmentation algorithm to identify the perimeter area surrounding a route. In this study, a comparative experiment was carried out to investigate the performance of the RouteSegmentation algorithm implementation in contrast to the RouteBoxer algorithm. Both algorithms play a crucial role in geographical information systems (GIS), particularly in enhancing navigational tools by identifying points of interest along specified routes. Through systematic experimentation using various perimeter distance values and types of route, the trade-offs between processing efficiency and the granularity of the area identified by these algorithms were evaluated. The results demonstrate that RouteSegmentation maintained relatively consistent performance across different perimeter distance values and statistically significantly faster processing time than RouteBoxer. Furthermore, while the RouteBoxer algorithm benefits from larger perimeter distance values by reducing processing time, it compromises the coverage results of the algorithm and potentially undermines its usefulness in practical scenarios. This study not only provides insights into the optimal use of perimeter distance values for each algorithm but also guides users in selecting the appropriate algorithm based on their specific application needs, balancing detailed geographical analysis and runtime efficiency.
AB - Prior study has developed the RouteSegmentation algorithm to identify the perimeter area surrounding a route. In this study, a comparative experiment was carried out to investigate the performance of the RouteSegmentation algorithm implementation in contrast to the RouteBoxer algorithm. Both algorithms play a crucial role in geographical information systems (GIS), particularly in enhancing navigational tools by identifying points of interest along specified routes. Through systematic experimentation using various perimeter distance values and types of route, the trade-offs between processing efficiency and the granularity of the area identified by these algorithms were evaluated. The results demonstrate that RouteSegmentation maintained relatively consistent performance across different perimeter distance values and statistically significantly faster processing time than RouteBoxer. Furthermore, while the RouteBoxer algorithm benefits from larger perimeter distance values by reducing processing time, it compromises the coverage results of the algorithm and potentially undermines its usefulness in practical scenarios. This study not only provides insights into the optimal use of perimeter distance values for each algorithm but also guides users in selecting the appropriate algorithm based on their specific application needs, balancing detailed geographical analysis and runtime efficiency.
KW - geofencing
KW - path
KW - performance analysis
KW - route
KW - RouteBoxer
KW - RouteSegmentation
UR - https://www.scopus.com/pages/publications/85215926129
U2 - 10.1109/ICITEE62483.2024.10808610
DO - 10.1109/ICITEE62483.2024.10808610
M3 - Conference contribution
AN - SCOPUS:85215926129
T3 - ICITEE 2024 - Proceedings of the 16th International Conference on Information Technology and Electrical Engineering 2024
SP - 404
EP - 409
BT - ICITEE 2024 - Proceedings of the 16th International Conference on Information Technology and Electrical Engineering 2024
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 16th International Conference on Information Technology and Electrical Engineering, ICITEE 2024
Y2 - 23 October 2024 through 25 October 2024
ER -