With the integration of cores increasing, on chip network (NoC) latency and throughput get worse in traditional structures. This paper proposed a novel low latency hierarchical mesh-based network-on-chip (PHNoC) struc...
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With the integration of cores increasing, on chip network (NoC) latency and throughput get worse in traditional structures. This paper proposed a novel low latency hierarchical mesh-based network-on-chip (PHNoC) structure which uses three parameters to describe hierarchical topology for the size changing design, and three types of base clusters to construct multilevel structure. Experimental results demonstrated that the proposed structure had lower latency and higher throughput than traditional 2d mesh and conventional hierarchical NoC in different size systems, and the larger size the better performance it improved.
For the low accuracy of detection and high false-positive rate (FPr) problems in the traditional ddoS attack detection methods, the method based on conditional random fields (CrF) is introduced. The CrF-based model co...
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In this paper, we investigate both the reliable and secure transmission fordevice-to-device (d2d) communications underlaying cellular networks where eavesdroppers are according to the Poisson point process (PPP) dist...
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ISBN:
(纸本)9781509053773
In this paper, we investigate both the reliable and secure transmission fordevice-to-device (d2d) communications underlaying cellular networks where eavesdroppers are according to the Poisson point process (PPP) distribution. The transmission secrecy outage probability (TSOP) is proposed to comprehensively characterize the joint performance of the reliability and the security. Firstly their connection outage probabilities (COPs) and secrecy outage probabilities (SOPs) are derived in the non-colluding eavesdroppers case. Then, their corresponding TSOPs are presented. We furtherdiscuss the impact of various factors on theirreliable and secure transmission performances, such as the node intensity, the target threshold and the large-scale path loss.
How to promote information diffusion models accuracy poses challenges to social networks. We propose information diffusion model based on k-core for social networks (IMK). On the basis of the compactness and centricit...
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In image recognition field, the fact is that the trained image classifier can not recognize the images, whose class type is not the same as the training data. To resolve this problem, a new image classifier is propose...
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As a promising technique, cooperative relaying has attracted more and more attention from academia and industry recently. In this paper, we investigate the scheme of decode-and-Forward Two-way relaying (dF-TWr) relyin...
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ISBN:
(纸本)9781509016990
As a promising technique, cooperative relaying has attracted more and more attention from academia and industry recently. In this paper, we investigate the scheme of decode-and-Forward Two-way relaying (dF-TWr) relying on a cross-layerdesign, which combines adaptive Network-coded Modulation (NCM) at the physical layer and truncated Automatic repeat reQuest (ArQ) at the data link layer. The relay node utilizes Network-Coded Quadrature amplitude modulation (NC-QAM) where NCM imposes only a modest signal-to-noise ratio (SNr) degradation on the single-link QAM performance. Additionally, we derive the achievable spectral efficiency in closed-form for transmission overrayleigh fading channels. It is shown that this combination of adaptive NC-QAM and truncated ArQ substantially improves the system's throughput compared to the schemes operating without ArQ.
In this paper, we investigate a MIMO relaying network with massive antennas for serving multi-pair single-antenna users, where zero-forcing (ZF) precoding is explored at the relay. Our aim is to maximize the energy ef...
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In this paper, we investigate a MIMO relaying network with massive antennas for serving multi-pair single-antenna users, where zero-forcing (ZF) precoding is explored at the relay. Our aim is to maximize the energy efficiency (EE) by jointly optimizing the transmit power at the source-nodes and the relay, and the number of relay antennas. To solve the EE optimization problem, a lower bound of the involved spectral efficiency (SE) is derived with analytical expression. Since the original fractional optimization problem is non-convex, we transform the objective function into an equivalent parametric subtractive form by using the properties of fractional programming. Then, an iterative algorithm is developedrelying on the partial convexity of the subtractive cost function, where the analytical solutions are deduced. Finally, the effectiveness and convergence behavior of our proposed scheme are verified through the numerical results.
In order to enhance the flexible and intelligent network's service ability, a novel architecture calledreconfigurable service-centric network (reSCNet) was proposed which decomposed traditional network capabiliti...
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With the integration of cores increasing, the on-chipnetwork(NoC) latency and the throughput are getting worse in traditional structures. This paper proposed a novel parameterbased on the hierarchical mesh interconnec...
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With the integration of cores increasing, the on-chipnetwork(NoC) latency and the throughput are getting worse in traditional structures. This paper proposed a novel parameterbased on the hierarchical mesh interconnected NoC(PHMNoC) to improve the integration and performance. We use structural parameters and cross-layer threshold parameter to achieve scalability fordifferent system size and balance traffic load among layers respectively. Experimental results demonstrated that PHMNoC had lower latency and higher throughput than conventional 2d mesh and hierarchical NoC such as Concentrated-Mesh and Cluster-Hierarchical-Mesh in different size systems, while the increasement of resources overhead was modest.
The orthogonality of signal subspace and noise subspace could be exploited to achieve a super-resolution direction of arrival (dOA) estimation. In the implementation processing, the computation complexity of peak sear...
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