TY - GEN
T1 - Time Synchronization on ESP-NOW Based Wireless Sensor Network Using Flooding Time Synchronization Protocol
AU - Prasetya, Mohammad Fikri
AU - Budi, Agung Setia
AU - Akbar, Sabriansyah Rizqika
N1 - Publisher Copyright:
© 2023 ACM.
PY - 2023/10/24
Y1 - 2023/10/24
N2 - This research focuses on the implementation and evaluation of the Flooding Time Synchronization Protocol (FTSP) in a Wireless Sensor Network (WSN) using a Star topology based on the ESP-NOW communication protocol. The study aims to assess the protocol's ability to achieve accurate time synchronization while considering the impact of clock drift. Five NodeMCU ESP8266 devices were employed, with one node as the root and four nodes as receivers. The protocol's performance was evaluated in terms of offset values between receiver local time and root time, both before and after considering clock drift, with measurements conducted in microseconds. The results highlight a consistent reduction in offsets post-synchronization, showcasing the protocol's efficiency in aligning local times. Statistical measures further confirm the protocol's reliability, as offset values converge around calculated averages. The research findings suggest the efficacy of FTSP in maintaining synchronization accuracy within WSNs, motivating further real-world evaluations and investigations into resource optimization.
AB - This research focuses on the implementation and evaluation of the Flooding Time Synchronization Protocol (FTSP) in a Wireless Sensor Network (WSN) using a Star topology based on the ESP-NOW communication protocol. The study aims to assess the protocol's ability to achieve accurate time synchronization while considering the impact of clock drift. Five NodeMCU ESP8266 devices were employed, with one node as the root and four nodes as receivers. The protocol's performance was evaluated in terms of offset values between receiver local time and root time, both before and after considering clock drift, with measurements conducted in microseconds. The results highlight a consistent reduction in offsets post-synchronization, showcasing the protocol's efficiency in aligning local times. Statistical measures further confirm the protocol's reliability, as offset values converge around calculated averages. The research findings suggest the efficacy of FTSP in maintaining synchronization accuracy within WSNs, motivating further real-world evaluations and investigations into resource optimization.
KW - ESP-NOW
KW - Flooding Time Synchronization Protocol (FTSP)
KW - Wireless Sensor Network
UR - https://www.scopus.com/pages/publications/85182403217
U2 - 10.1145/3626641.3626683
DO - 10.1145/3626641.3626683
M3 - Conference contribution
AN - SCOPUS:85182403217
T3 - ACM International Conference Proceeding Series
SP - 608
EP - 611
BT - SIET 2023 - Proceedings of the 8th International Conference on Sustainable Information Engineering and Technology
PB - Association for Computing Machinery
T2 - 8th International Conference on Sustainable Information Engineering and Technology, SIET 2023
Y2 - 24 October 2023 through 25 October 2023
ER -