TY - JOUR
T1 - Communication Delay Modeling for Wide Area Measurement System in Smart Grid Internet of Things Networks
AU - Hasan, Mohammad Kamrul
AU - Islam, Shayla
AU - Shafiq, Muhammad
AU - Ahmed, Fatima Rayan Awad
AU - Ataelmanan, Somya Khidir Mohmmed
AU - Babiker, Nissrein Babiker Mohammed
AU - Bakar, Khairul Azmi Abu
N1 - Publisher Copyright:
© 2021 Mohammad Kamrul Hasan et al.
PY - 2021
Y1 - 2021
N2 - We present communication frameworks, models, and protocols of smart grid Internet of Things (IoT) networks based on the IEEE and IEC standards. The measurement, control, and monitoring of grid being achieved through phasor measurement unit (PMU) based wide area measurement (WAM) framework. The WAM framework applied the IEEE standard C37.118 phasor exchange protocol to collect grid data from various substation devices. The existing frameworks include the IEC 61850 protocol and programmable logic controllers (PLCs) based supervisory control and data acquisition (SCADA) system. These protocols have been selected as per the smart grid configuration and communication design. However, the existing frameworks have severe synchronization errors due to the communication delays of IoT networks in the smart grid. Therefore, this article designs the timing mechanism and a delay model to reduce the timing delay and boost real-time measurement, monitoring, and control performance of the smart grid WAM applications. The result shows that the proposed model outperformed the existing WAM system.
AB - We present communication frameworks, models, and protocols of smart grid Internet of Things (IoT) networks based on the IEEE and IEC standards. The measurement, control, and monitoring of grid being achieved through phasor measurement unit (PMU) based wide area measurement (WAM) framework. The WAM framework applied the IEEE standard C37.118 phasor exchange protocol to collect grid data from various substation devices. The existing frameworks include the IEC 61850 protocol and programmable logic controllers (PLCs) based supervisory control and data acquisition (SCADA) system. These protocols have been selected as per the smart grid configuration and communication design. However, the existing frameworks have severe synchronization errors due to the communication delays of IoT networks in the smart grid. Therefore, this article designs the timing mechanism and a delay model to reduce the timing delay and boost real-time measurement, monitoring, and control performance of the smart grid WAM applications. The result shows that the proposed model outperformed the existing WAM system.
UR - http://www.scopus.com/inward/record.url?scp=85111478940&partnerID=8YFLogxK
U2 - 10.1155/2021/9958003
DO - 10.1155/2021/9958003
M3 - Article
AN - SCOPUS:85111478940
SN - 1530-8669
VL - 2021
JO - Wireless Communications and Mobile Computing
JF - Wireless Communications and Mobile Computing
M1 - 9958003
ER -