首页> 外文期刊>International Journal of Innovative Research in Science, Engineering and Technology >Gain- Function of Two Dissimilar Warm Standby Systems Subject To Failure Due To Voltage Fluctuations and Non-Availability of Water Resulting Failure of Hydroelectric Power with Switch Failure
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Gain- Function of Two Dissimilar Warm Standby Systems Subject To Failure Due To Voltage Fluctuations and Non-Availability of Water Resulting Failure of Hydroelectric Power with Switch Failure

机译:两种由于电压波动而发生故障的热备用系统的增益函数,以及因开关故障而导致水力发电故障的水不可用

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摘要

The energy in the flowing water can be used to produce electricity. Hydro power is one of the best, cheapest, and cleanest sources of energy. New environmental laws affected by the danger of global warming have made energy from small hydropower plants more relevant. The mathematical theory of reliability has grown out of the demands of modern technology and particularly out of experiences in World War II (1939-1945) with complex military systems although the concept of reliability is as old as man himself. In the present paper we have taken two-nonidentical warm standby system with failure time distribution as exponential and repair time distribution as general. The Role of voltage fluctuations and non-availability of water resulting failure of hydroelectric power under which the system operates plays significant role on its working. We are considering system under (i) voltage fluctuations and (ii) Non-availability of water resulting failure of hydroelectric power causing different types of failure requiring different types of repair facilities. Using semi Markov regenerative point technique we have calculated different reliability characteristics such as MTSF, reliability of the system, availability analysis in steady state, busy period analysis of the system under repair, expected number of visits by the repairman in the long run and gain-function and graphs are drawn.
机译:流动水中的能量可用于发电。水力发电是最好,最便宜和最清洁的能源之一。受全球变暖危险影响的新的环境法律使小型水力发电厂的能源更加重要。可靠性的数学理论源于现代技术的要求,尤其是源于第二次世界大战(1939-1945)中具有复杂军事系统的经验,尽管可靠性的概念与人类本人一样古老。在本文中,我们采用了两种不同的热备用系统,其故障时间分布为指数,维修时间分布为一般。电压波动的作用和水的不可用性导致系统在其下运行的水力发电的故障在其工作中起着重要作用。我们正在考虑以下系统:(i)电压波动和(ii)缺水导致水力发电故障,导致不同类型的故障,需要不同类型的维修设施。使用半马尔可夫再生点技术,我们计算了不同的可靠性特征,例如MTSF,系统可靠性,稳态可用性分析,维修中系统的繁忙时段分析,维修人员的长期预期访问次数以及获得的收益-函数和图形绘制。

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