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Cross-Layer Optimization with Power Control in DS-CDMA Visual Sensor Networks

机译:DS-CDMA视觉传感器网络中功率控制的跨层优化

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In this paper, we propose an approach for cross-layer optimization with power control for a direct sequence-code division multiple access (DS-CDMA) visual sensor network where nodes monitor scenes with varying levels of motion. Our technique simultaneously assigns a source coding rate, a channel coding rate, and a power level to all nodes in the network based on two criteria that maximize the quality of video of the entire network as a whole, subject to a constraint on the total chip rate. One method minimizes the average end-to-end distortion amongst all nodes, while the other method minimizes the maximum distortion of the network. To reduce the computational complexity of the solution, universal rate-distortion characteristics (URDCs) are obtained experimentally to relate bit errors probabilities to the distortion of corrupted video. The URDCs are used in conjunction with channel characteristic plots obtained by using rate-compatible punctured convolutional (RCPC) codes for channel coding
机译:在本文中,我们提出了一种对直接序列码分多址(DS-CDMA)视觉传感器网络的电力控制的跨层优化方法,其中节点监视具有不同运动水平的场景。基于两个标准,我们的技术同时为网络中的所有节点同时分配源编码率,通道编码率和功率电平,这使整个网络的视频质量最大化,因此受到总芯片的约束速度。一种方法最小化所有节点之间的平均端到端畸变,而另一个方法最小化网络的最大失真。为了降低解决方案的计算复杂性,通过实验获得通用速率失真特性(URDC),以将位错误概率与损坏的视频失真相关。 URDC与通过使用用于信道编码的速率兼容的刺穿卷积(RCPC)代码而获得的通道特性图结合使用

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