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Joint Coding/Routing Optimization for Distributed Video Sources in Wireless Visual Sensor Networks

机译:无线视觉传感器网络中分布式视频源的联合编码/路由优化

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This paper studies a joint coding/routing optimization between network lifetime and video distortion by applying information theory to wireless visual sensor networks for correlated sources. Arbitrary coding [distributed video coding and network coding (NC)] from both combinatorial optimization and information theory could make significant progress toward the performance limit and tractable. Also, multipath routing can spread energy utilization across nodes within the entire network to keep a potentially longer lifetime, and solve the wireless contention issues by the splitting traffic. The objective function not only keeps the total energy consumption of encoding power, transmission power, and reception power minimized, but ensures the information received by sink nodes to approximately reconstruct the visual field. Also, a generalized power consumption model for distributed video sources is developed, in which the coding complexity of Key frames and Wyner-Ziv frames is measured by translating specific coding behavior into energy consumption. On the basis of the distributed multiview video coding and NC-based multipath routing, the balance problem between lifetime (costs) and distortion (capacity) is modeled as an optimization formulation with a fully distributed solution. Through a primal decomposition, a two-level optimization is relaxed with Lagrangian dualization and solved by the gradient algorithm. The low-level optimization problem is further decomposed into a secondary master dual problem with four cross-layer subproblems: a rate control problem, a channel contention problem, a distortion control problem, and an energy conservation problem. The implementation of the distributed algorithm is discussed with regard to the communication overhead and dynamic network change. Simulation results validate the convergence and performance of the proposed algorithm.
机译:通过将信息论应用于相关源的无线视觉传感器网络,研究了网络寿命和视频失真之间的联合编码/路由优化。来自组合优化和信息理论的任意编码[分布式视频编码和网络编码(NC)]可以在性能极限和可处理性方面取得重大进展。同样,多径路由可以在整个网络内的各个节点之间分布能量利用,以保持更长的使用寿命,并通过拆分流量来解决无线争用问题。目标函数不仅使编码功率,发射功率和接收功率的总能量消耗最小,而且确保接收器节点接收的信息大致重构视场。此外,还开发了一种用于分布式视频源的通用功耗模型,其中通过将特定编码行为转化为能耗来测量关键帧和Wyner-Ziv帧的编码复杂度。基于分布式多视图视频编码和基于NC的多路径路由,将寿命(成本)与失真(容量)之间的平衡问题建模为具有完全分布式解决方案的优化公式。通过一次分解,通过拉格朗日对偶化放松了两级优化,并通过梯度算法求解。低级优化问题进一步分解为具有四个跨层子问题的辅助主对偶问题:速率控制问题,信道争用问题,失真控制问题和节能问题。关于通信开销和动态网络变化,讨论了分布式算法的实现。仿真结果验证了该算法的收敛性和性能。

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