Energy-efficient adaptive GTS allocation algorithm for IEEE 802.15.4 MAC protocol

被引:0
作者
Tolani, Manoj [1 ]
Sunny [2 ]
Singh, Rajat Kumar [2 ]
机构
[1] IIIT Allahabad, CC-3,5228, Jhalwa, Prayagraj, India
[2] IIIT Allahabad, CC-1, Jhalwa, Prayagraj, India
关键词
Under utilization; Guaranteed time slot; Adaptive slot allotment; Contention free period;
D O I
10.1007/s11235-020-00719-0
中图分类号
TN [电子技术、通信技术];
学科分类号
0809 ;
摘要
The standard IEEE 802.15.4 fails to perform optimally for railway monitoring applications due to the deficiency of guaranteed time slots (GTSs). In the present work, an adaptive GTS allocation algorithm (AGAA) is proposed which efficiently deals with a deficiency of GTSs and slot underutilization problem. The proposed AGAA algorithm saves unutilized bandwidth of GTS and the saved bandwidth is utilized by the needy nodes in contention access period (CAP) and contention-free period (CFP). An independent superframe order (SOCFP) is introduced for adaptive adjustment of slot size in the CFP. The proposed AGAA protocol also deals with the problem of GTS request-failure due to congestion during CAP. A separate contention period is used for GTS request in AGAA protocol. The comparison has been done between the proposed AGAA protocol and the standard IEEE 802.15.4 medium access control (MAC) protocol. Throughput and energy consumption are analyzed and results show that the slot optimization using SOCFP saves a fair amount of bandwidth which improves the throughput of the network approximate to 22%. Moreover, the separate contention period for the GTS request frame reduces the idle state energy consumption of those devices which generate time-constraint data frames. The proposed AGAA protocol consumes similar to 18% less energy than the standard IEEE 802.15.4 MAC protocol. The analysis of results also reveals an important fact that the algorithm saves more energy for homogeneous traffic in comparison to heterogeneous traffic which can further be improved in future works.
引用
收藏
页码:329 / 344
页数:16
相关论文
共 24 条
[1]  
Al Rasyid MUH, 2013, 2013 INTERNATIONAL CONFERENCE ON COMPUTER, CONTROL, INFORMATICS AND ITS APPLICATIONS (IC3INA), P29, DOI 10.1109/IC3INA.2013.6819143
[2]   An Energy Efficient Hybrid MAC Protocol With Dynamic Sleep-Based Scheduling for High Density IoT Networks [J].
Al-Janabi, Thair A. ;
Al-Raweshidy, Hamed S. .
IEEE INTERNET OF THINGS JOURNAL, 2019, 6 (02) :2273-2287
[3]  
Alvi A., 2018, INT WORKSH ARCH FUT
[4]  
[Anonymous], 2009, EURASIP J WIRELESS C
[5]  
[Anonymous], 2016, IEEE, 802.15.4-2015, "IEEE Standard for Low-Rate Wireless Networks, DOI [DOI 10.1109/IEEESTD.2016.7524656, 10.1109/IEEESTD.2016.7524656]
[6]  
Battaglia F, 2019, IEEE INTL CONF IND I, P1747, DOI [10.1109/indin41052.2019.8972059, 10.1109/INDIN41052.2019.8972059]
[7]  
Cheng R, 2007, CHROMOSOME RES, V15, P4
[8]  
Dinh TN, 2018, IEEE GLOB COMM CONF
[9]  
DINH TN, 2019, CONSUM COMM NETWORK, pNI664
[10]   A Delay-Bounded MAC Protocol for Mission- and Time-Critical Applications in Industrial Wireless Sensor Networks [J].
Farag, Hossam ;
Gidlund, Mikael ;
Osterberg, Patrik .
IEEE SENSORS JOURNAL, 2018, 18 (06) :2607-2616