In this paper, the one-way decode-and-forward (DF) full-duplex relaying network system with presence of direct link is investigated. In the analysis section, we derived the exact, lower, and upper bound for outage probability (OP) with maximal ratio combining (MRC) at the receiver. Furthermore, the system performance's analytical expressions are verified by using the Monte Carlo simulation. In addition, we investigated the effect of the main parameters on the OP of the proposed system. Finally, we can sate that the simulation curves overlap the analytical curves to convince the analysis section. This research can provide a novel recommendation for the communication network
International audienceIn this paper, we study the performance, in terms of the asymptotic error prob...
International audienceIn this paper, we study the performance, in terms of the asymptotic error prob...
International audienceIn this paper, we study the performance, in terms of the asymptotic error prob...
This paper proposed and investigated the one-way amplify-and-forward (AF) full-duplex relaying netwo...
In this paper, the system performance of the two-way of half-duplex (HD) relaying network under the ...
Relay communication is considered as a popular solution for expanding the coverage, increasing the t...
Nowadays, improving the WPCN efficiency problem is the leading research direction in the communicati...
The wireless research requires concurrent transmission and reception in a single time/frequency chan...
This paper investigates the decode-and-forward (DF) full-duplex (FD) relaying system under the prese...
In this paper, we systematically study the average rate and outage probability tradeoffs of full-dup...
In this paper, the adoption of the full-duplex radio (FDR) technique in three-node decode-and-forwar...
This paper proposes a full-duplex cooperative device-to-device (D2D) communication system, where the...
This paper proposes a full-duplex cooperative device-to-device (D2D) communication system, where the...
This paper proposes a full-duplex cooperative device-to-device (D2D) communication system, where the...
This paper proposes a full-duplex cooperative device-to-device (D2D) communication system, where the...
International audienceIn this paper, we study the performance, in terms of the asymptotic error prob...
International audienceIn this paper, we study the performance, in terms of the asymptotic error prob...
International audienceIn this paper, we study the performance, in terms of the asymptotic error prob...
This paper proposed and investigated the one-way amplify-and-forward (AF) full-duplex relaying netwo...
In this paper, the system performance of the two-way of half-duplex (HD) relaying network under the ...
Relay communication is considered as a popular solution for expanding the coverage, increasing the t...
Nowadays, improving the WPCN efficiency problem is the leading research direction in the communicati...
The wireless research requires concurrent transmission and reception in a single time/frequency chan...
This paper investigates the decode-and-forward (DF) full-duplex (FD) relaying system under the prese...
In this paper, we systematically study the average rate and outage probability tradeoffs of full-dup...
In this paper, the adoption of the full-duplex radio (FDR) technique in three-node decode-and-forwar...
This paper proposes a full-duplex cooperative device-to-device (D2D) communication system, where the...
This paper proposes a full-duplex cooperative device-to-device (D2D) communication system, where the...
This paper proposes a full-duplex cooperative device-to-device (D2D) communication system, where the...
This paper proposes a full-duplex cooperative device-to-device (D2D) communication system, where the...
International audienceIn this paper, we study the performance, in terms of the asymptotic error prob...
International audienceIn this paper, we study the performance, in terms of the asymptotic error prob...
International audienceIn this paper, we study the performance, in terms of the asymptotic error prob...