Spectrum Sharing With Device-to-Device Successive Relaying and Hybrid Complex Field Network Coding

Chao Ren, Jian Chen, Chintha Tellambura · IEEE Transactions on Vehicular Technology · 2017

While device-to-device (D2D) communication between two proximate cellular terminals improves spectral efficiency, cooperative spectrum sharing (CSS) among D2D users (DUs) and cellular users (CUs) provides more gains. In this paper, we thus propose a new CSS scheme, where a pair of DUs (D1and D2) acts as half-duplex two-path successive relays (TPSRs) between two CUs (C1and C2) while maintaining cellular full-duplex gains. The channel between D1and D2, referred to as TPSR interrelay interference channel, is exploited to provide D2D access with an ideal throughput of 1 symbol per time slot (sym/TS). To eliminate the interference between C1-C2and D1-D2links, we propose a hybrid complex field network coding (HCFNC) scheme for two cases: First, both of D1and D2correctly decode cellular data; and second, either D1or D2correctly decodes cellular data. For each case, we derive the closed-form CU diversity-multiplexing tradeoff (DMT) and data rate, symbol error probability for the HCFNC strategy, and the D2D throughput. Our performance analysis and simulation results show that: first, the proposed scheme achieves the 3 × 1 multiple-input single-output DMT; second, the CU achievable rate approaches the full-duplex upper bound; and third, the DU average throughput approaches 1 sym/TS at high signal-tointerference-plus-noise ratio, demonstrating that DUs gain full access opportunity to the cellular spectrum.

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