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Consistency tests in guaranteed simulation of nonlinear uncertain systems with application to an activated sludge process

机译:非线性不确定系统的保证模拟中的一致性测试及其在活性污泥工艺中的应用

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In this paper, interval arithmetic simulation techniques are presented to determine guaranteed enclosures of the state variables of both continuous and discrete-time systems with uncertain but bounded parameters. In nonlinear uncertain systems axis-parallel interval boxes are mapped to complexly shaped regions in the state space that represent sets of possible combinations of state variables. The approximation of each region by a single interval box causes an accumulating overestimation from time-step to time-step, usually called the wrapping effect. The algorithm presented in this paper minimizes the wrapping effect by applying consistency techniques based on interval Newton methods. Subintervals that do not belong to the exact solution at a given time can be eliminated in order to give a tighter but still conservative approximation of the exact solution. Additionally, efficient splitting and merging strategies are employed to limit the number of subintervals. The proposed algorithm is applied to the simulation of an activated sludge process in biological wastewater treatment. (c) 2006 Elsevier B.V. All rights reserved.
机译:在本文中,提出了区间算术仿真技术来确定具有不确定但有界参数的连续和离散时间系统的状态变量的有保证的包围。在非线性不确定系统中,平行轴间隔框映射到状态空间中形状复杂的区域,这些区域表示状态变量的可能组合集。每个区域被单个间隔框逼近会导致时间步长之间累积的高估,通常称为环绕效应。本文提出的算法通过应用基于区间牛顿法的一致性技术来最大程度地减少包装效果。可以消除在给定时间不属于精确解的子间隔,以便给出精确解的更紧密但仍然保守的近似值。另外,采用有效的拆分和合并策略来限制子间隔的数量。将该算法应用于生物废水处理中活性污泥过程的模拟。 (c)2006 Elsevier B.V.保留所有权利。

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