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A MAJORIZATION CONDITION FOR MULTI-INPUT NETWORKED STABILIZATION VIA CODING/CONTROL CODESIGN

机译:通过编码/控制代码鉴定多输入网络稳定的多大化条件

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In this paper, we investigate the stabilization of a multi-input continuous-time linear system over a communication network modeled as the cascade of an encoder, a set of parallel channels, and a decoder. The channel capacities or signal-to-noise ratios are assumed to be fixed a priori. The encoder/decoder pair can be designed, leading to a stabilization problem via coding/control codesign. From a demand/supply balance point of view, the design of the encoder/decoder pair has the effect of reshaping the demands for communication resources from different control inputs to match the given supplies. We study the problem for the case of additive white Gaussian noise channels and fading channels, respectively. In both cases, we arrive at a unified necessary and sufficient condition under which the coding/control codesign problem is solvable. The condition is given by a majorization type relation. As we go along, a systematic procedure is also put forward to carry out the coding/control codesign. A numerical example is presented to illustrate our results.
机译:在本文中,我们研究了通过作为编码器级联,一组并行频道和解码器建模的通信网络上的多输入连续时间线性系统的稳定性。假设信道容量或信噪比是固定的先验。可以设计编码器/解码器对,通过编码/控制代号导致稳定问题。从需求/供应平衡的角度来看,编码器/解码器对的设计具有重塑来自不同控制输入的通信资源的需求来匹配给定的电源。我们分别研究了附加白色高斯噪声通道和衰落通道的情况。在这两种情况下,我们都到达了统一的必要和充分条件,在该统一和充分的条件下,编码/控制代号问题是可解决的。该条件是由多种化类型的关系给出的。正如我们所以,还提出了一种系统的程序来执行编码/控制代码。提出了一个数字示例以说明我们的结果。

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