DocumentCode
3610766
Title
ERDT: Energy-Efficient Reliable Decision Transmission for Intelligent Cooperative Spectrum Sensing in Industrial IoT
Author
Rongbo Zhu ; Xue Zhang ; Xiaozhu Liu ; Wanneng Shu ; Tengyue Mao ; Jalaian, Brian
Author_Institution
Coll. of Comput. Sci., South-Central Univ. for Nat., Wuhan, China
Volume
3
fYear
2015
fDate
7/7/1905 12:00:00 AM
Firstpage
2366
Lastpage
2378
Abstract
Due to harsh environment, large number of sensors, limited energy, and spectrum scarcity, intelligent sensing becomes a key issue to enable many practical applications in industrial Internet of Things (IoT). In such an industrial environment with noise and interference, an efficient cooperative spectrum sensing (CSS) scheme can achieve spectrum sharing between primary users (PUs) and secondary users (SUs), and effectively solve the spectrum scarcity and reduce energy consumption to make the IoT smarter. As a vital part of CSS, decision transmission (DT) between SUs and fusion center (FC) plays a crucial role. In traditional DT, each SU will transmit its local decision to FC with orthogonal channel in each sensing, which does not consider the packet error and packet loss due to noise during transmission, and aggravates spectrum scarcity and energy consumption. An energy-efficient reliable DT (ERDT) scheme is proposed to enhance CSS in industrial IoT, which considers both packet error and packet loss. First, the CSS mathematical model based on DT is formulated. Second, with rigorous mathematical deduction, the correct decision probability and the energy consumption are analyzed for both ERDT and DT based on logic OR-rule and AND-rule under three cases, respectively: 1) bit error only; 2) packet loss only; and 3) both bit error and packet loss. Detailed simulation results show that, compared with DT, the proposed ERDT can increase correct decision probability and reduce energy consumption for CSS under three different cases. When the existence probability of PU is 50%, the energy consumption of ERDT is only half of that of DT in CSS. Furthermore, when there are 30 SUs in CSS, the existence probability of PU is 50%, both pocket loss rate and bit error rate are 0.05, and the correct decision probability of ERDT is approaching to 1 for CSS in industrial IoT.
Keywords
cooperative communication; error statistics; signal detection; ERDT; PU; SU; bit error; decision probability; decision transmission; energy-efficient reliable decision transmission; existence probability; industrial Internet of Things; industrial IoT; intelligent cooperative spectrum sensing scheme; logic AND-rule; logic OR-rule; primary users; rigorous mathematical deduction; secondary users; Cascading style sheets; Energy consumption; Energy efficiency; Interference; Packet loss; Sensors; Intelligent cooperative spectrum sensing; decision transmission; energy-efficient; industrial IoT;
fLanguage
English
Journal_Title
Access, IEEE
Publisher
ieee
ISSN
2169-3536
Type
jour
DOI
10.1109/ACCESS.2015.2501644
Filename
7331232
Link To Document