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Reliability evaluation for acyclic transmission networks of multi-state elements with delays

机译:具有延迟的多状态元件的非循环传输网络的可靠性评估

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摘要

Acyclic transmission networks (ATN) consist of a number of positions in which s-independent multi-state elements (ME) capable of receiving and/or sending a signal are allocated. Each network has: a root position where the signal source is located, a number of terminal positions that can only receive a signal, and a number of intermediate positions containing ME that retransmit the received signal to some other positions. The signal propagation is allowed only in direction of the terminal nodes, which avoids cycles in the network. Each ME that is located in a nonterminal node can have different states determined by a set of nodes receiving the signal directly from this ME. The probability of each state is assumed to be known for each ME. The signal retransmission process is associated with delays. The system fails if the signal generated at the first position (source) cannot reach the terminal nodes within a specified time. An algorithm for ATN reliability evaluation is suggested; it is based on an extended universal generating function method that uses a state enumeration approach. A procedure for recurrent derivation of probabilistic distribution of a vector representing delays in ATN is described. A technique for computational complexity reduction is developed.
机译:非循环传输网络(ATN)由多个位置组成,在这些位置中分配了能够接收和/或发送信号的独立于s的多状态元素(ME)。每个网络都具有:信号源所在的根位置,仅可以接收信号的多个终端位置,以及包含ME的多个中间位置,这些中间位置将接收到的信号重新传输到其他一些位置。仅在终端节点的方向上允许信号传播,这避免了网络中的周期。位于非终端节点中的每个ME可以具有不同的状态,这取决于一组直接从该ME接收信号的节点。假定每个状态的每个状态的概率都是已知的。信号重传过程与延迟相关。如果在第一个位置(源)生成的信号在指定时间内无法到达终端节点,则系统将失败。提出了一种ATN可靠性评估算法。它基于使用状态枚举方法的扩展通用生成函数方法。描述了用于递归推导表示ATN中的延迟的向量的概率分布的过程。开发了用于减少计算复杂度的技术。

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