无线电电子设备滑动冗余的有效性评价

T. E. Gelfman, A. P. Pirkhavka
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引用次数: 1

摘要

目标。通过结构冗余和负载冗余的应用,可以提高无线电电子设备的可靠性。结构冗余是考虑到冗余的多重性和无线电电子设施元件故障的强度而实现的,而负载冗余涉及元件的电气、热和机械操作模式的缓解。冗余方法的选择是根据可靠性指标的要求来确定的,这往往是相互矛盾的。因此,如何有效地将结构冗余和负载冗余方法结合起来是一个非常重要的问题。在长寿命无线电电子设施中,例如在卫星通信中继器系统中,当限制质量尺寸参数并因此消耗能量时,应用滑动冗余。本文的目的是根据各种可靠性指标来评估滑动冗余在改变冗余多重度、备用工作模式、元件失效强度和开关设备类型时的效率。方法。为了描述复杂滑动冗余系统的结构,采用逻辑-概率方法,将系统可靠性指标对各部件可靠性指标的依赖关系表述为可操作性的逻辑函数。采用图解析的方法对可靠性逻辑方案的不同变体进行了比较。结果。建立了评价滑动保留有效性的数学模型。从无故障运行概率、资源γ百分比、改变冗余的分数倍数时的故障率、元件故障率等方面,对有载和无载备用滑动冗余的效率进行了对比分析。考虑了开关装置的可靠性对滑动冗余效率的影响。结论。根据不同的可靠性指标,给出了冗余模式选择的实用建议,并建立了滑动冗余效率系数的数学模型。确定了元件的可靠性指标与可贴现的开关器件的可靠性指标之间的相关性。为了提高无线电电子设施滑动冗余的效率,必须将冗余的多样性和储备的运行方式与旨在降低元件失效强度的方法相结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of the effectiveness of sliding redundancy of radioelectronic facilities
Objectives. The increased reliability of radioelectronic facilities can be achieved by the application of structural and load redundancy. Structural redundancy is achieved taking into account multiplicity of redundancy and the intensity of failures of elements of radioelectronic facilities, while load redundancy involves an easing of electrical, thermal, and mechanical operating modes of the elements. The choice of a redundancy method is determined according to reliability indicator requirements, which may often be contradictory. Therefore, the problem of how to effectively combine structural redundancy and load redundancy methods is very topical. In long-life radioelectronic facilities, for example, in satellite communication repeater systems, sliding redundancy is applied when limiting mass-dimensional parameters and consequently consumed energy. The aim of the work is to evaluate the efficiency of sliding redundancy according to various reliability indicators when altering redundancy multiplicity, reserve operating mode, element failure intensity, and switching device type. Methods . To describe the structure of a complex sliding redundancy system, a logical-probabilistic method is used, in which the dependence of the system reliability indicators on the reliability indicators of the elements is formulated as a logical function of operability. Graph-analytical methods are used to compare different variants of reliability logic schemes. Results. Mathematical models have been obtained to evaluate the effectiveness of sliding reservation. A comparative analysis of the efficiency of sliding redundancy with a loaded and unloaded reserve was carried out in terms failure-free operation probability, as well as gamma-percentage resource, failure rate when changing the fractional multiplicity of the redundancy, and element failure rate. The influence of the reliability of the switching device on the efficiency of the sliding redundancy is considered. Conclusions . Practical recommendations on the selection of the redundancy mode are presented according to different reliability indices and constructed mathematical models of the sliding redundancy efficiency coefficients. The correlation between the reliability indices of elements and the switching device whose reliability can be discounted, is determined. To increase the efficiency of sliding redundancy of radioelectronic facilities, it is necessary to combine multiplicity of redundancy and the operating mode of the reserve with approaches aimed at reducing the intensity of failure of elements.
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