Liang Zhou, B. Geller, A. Wei, B. Zheng, Jingwu Cui, Shan Xu
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引用次数: 12
Abstract
An important issue for supporting multimedia applications in multiple heterogeneous networks, a typical pervasive computing environment, is how to optimize the rate allocation by intelligently utilizing the available network resources while, at the same time, to meet each application's QoS (Quality of Service) requirement. In this work, we develop and evaluate a rate allocation scheme in terms of audio and video applications based on a cross-layer design framework. At first, we construct a general distortion model according to the observed parameters in each network, as well as each application's rate-distortion characteristic. Then, the rate allocation is formulated as a convex optimization problem that minimizes the sum of the expected distortion of all applications. Furthermore, the realization of the distributed rate allocation algorithm for achieving an optimal or close-to-optimal end-to-end QoS under the overall limited resource budget is the highlight of this paper. Simulation results are provided which demonstrate the effectiveness of our proposed distributed rate allocation scheme.
在典型的普适计算环境下,如何通过智能地利用可用的网络资源来优化速率分配,同时满足每个应用的QoS (Quality of Service)要求,是支持多媒体应用的一个重要问题。在这项工作中,我们开发并评估了基于跨层设计框架的音频和视频应用的速率分配方案。首先,我们根据每个网络中观测到的参数,以及每个应用程序的率失真特征,构建一个通用的失真模型。然后,将速率分配公式化为一个凸优化问题,使所有应用程序的预期畸变总和最小化。此外,在有限的整体资源预算下实现最优或接近最优的端到端QoS的分布式速率分配算法的实现是本文的重点。仿真结果证明了所提出的分布式速率分配方案的有效性。