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首页> 外文期刊>IEEE Transactions on Automatic Control >On Time-Varying Bit-Allocation Maintaining Stability and Performance: A Convex Parameterization
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On Time-Varying Bit-Allocation Maintaining Stability and Performance: A Convex Parameterization

机译:时变比特分配保持稳定性和性能的研究:凸参数化

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摘要

In this paper, we analyze and derive conditions for stability of a feedback system in which the plant and feedback controller are separated by a noiseless finite-rate communication channel. We allow for two deterministic classes of reference inputs to excite the system, and derive sufficient conditions for input-output (IO) stability as a function of the encoding strategy and controller. We first construct an encoder as a quantizer that can have infinite memory and can be time-varying, in that the strategy it follows to allocate a total of R bits to its inputs, is a function of time. This construction of the quantizer leads to the result that the set of allocation strategies that maintains stability for each class of reference signals is convex, allowing the search for the most efficient strategy to ensure stability to be formulated as a convex optimization problem. We then synthesize quantizers and time-varying controllers to minimize the rate required for stability and to track commands. Examples presented in this paper demonstrate how this framework enables computationally efficient methods for simultaneously designing quantizers and controllers for given plants. Furthermore, we observe that our finite memory quantizers that minimize the rate required for stability do not reduce to trivial memoryless bit-allocation strategies.
机译:在本文中,我们分析并推导了一个反馈系统的稳定性条件,在该系统中,工厂和反馈控制器之间被无噪声的有限速率通信通道隔开。我们允许参考输入的两个确定性类别来激发系统,并根据编码策略和控制器得出输入输出(IO)稳定性的充分条件。我们首先构造一个编码器作为量化器,它可以具有无限的存储空间并且可以随时间变化,因为它遵循的向其输入分配总共R位的策略是时间的函数。量化器的这种构造导致的结果是,为每类参考信号保持稳定性的分配策略集是凸的,从而允许搜索最有效的策略来确保将稳定性公式化为凸优化问题。然后,我们综合量化器和时变控制器以最小化稳定所需的速率并跟踪命令。本文中的示例演示了此框架如何实现有效计算的方法,同时为给定工厂设计量化器和控制器。此外,我们观察到,使稳定性所需的速率最小化的有限内存量化器并没有减少到琐碎的无内存位分配策略。

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