Delay and Energy Consumption Analysis of Frame Slotted ALOHA variants for Massive Data Collection in Internet-of-Things Scenarios

被引:2
|
作者
Vazquez-Gallego, Francisco [1 ]
Tuset-Peiro, Pere [2 ]
Alonso, Luis [3 ]
Alonso-Zarate, Jesus [1 ]
机构
[1] CTTC, CERCA, M2M Commun Dept, Barcelona 08060, Spain
[2] UOC, Wireless Networks WiNe Res Lab, Internet Interdisciplinary Inst IN3, Barcelona 08060, Spain
[3] Univ Politecn Cataluna, EETAC, Barcelona 08060, Spain
来源
APPLIED SCIENCES-BASEL | 2020年 / 10卷 / 01期
关键词
Internet-of-Things; massive communication; data collection; Medium Access Control; Frame Slotted ALOHA; delay; energy consumption;
D O I
10.3390/app10010327
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This paper models and evaluates three FSA-based (Frame Slotted ALOHA) MAC (Medium Access Control) protocols, namely, FSA-ACK (FSA with ACKnowledgements), FSA-FBP (FSA with FeedBack Packets) and DFSA (Dynamic FSA). The protocols are modeled using an AMC (Absorbing Markov Chain), which allows to derive analytic expressions for the average packet delay, as well as the energy consumption of both the network coordinator and the end-devices. The results, based on computer simulations, show that the analytic model is accurate and outline the benefits of DFSA. In terms of delay, DFSA provides a reduction of 17% (FSA-FBP) and 32% (FSA-ACK), whereas in terms of energy consumption DFSA provides savings of 23% (FSA-FBP) and 28% (FSA-ACK) for the coordinator and savings of 50% (FSA-FBP) and 24% (FSA-ACK) for end-devices. Finally, the paper provides insights on how to configure each FSA variant depending on the network parameters, i.e., depending on the number of end-devices, to minimize delay and energy expenditure. This is specially interesting for massive data collection in IoT (Internet-of-Things) scenarios, which typically rely on FSA-based protocols and where the operation has to be optimized to support a large number of devices with stringent energy consumption requirements.
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页数:16
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