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Reliability assessment by sensitivity analysis due to electrical power sequential tripping for energy sustainability

机译:由于能量可持续性电力连续跳闸导致的灵敏度分析可靠性评估

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摘要

A drastic change has occurred over the last few years in the electrical power business, where a significant worldwide revolution has taken place and changing the design of electrical powers. It has become imperative for the utility to handle the electrical power reliably as poor performance can lead to electrical power outages which will inevitably have an adverse impact on a nation's economy and society. Hence, the power company should consider devising suitable pre-emptive measures to avoid the possibility of electricity supply disruptions. These disruptions may have a potentially catastrophic effect on the running of the system, which may even include consumers having to bear monetary costs. This research looks at the valuations of risk and reliability cost/worth-based customer interruption cost due to static system sequential tripping. The performance of the suggested techniques are evaluated through comparing risk-based valuations and reliability cost/worth valuations corresponding to the transfer capability results which are correlated to the static system sequential tripping. The results have demonstrated that the unpredictable sequential tripping must not be ignored from the transmission reliability margin determination. Hence, the proposed techniques are likely to play an important role for energy sustainability of the future.
机译:电力业务过去几年发生了剧烈变化,其中一个重要的全球革命已经发生并改变了电力的设计。本效用使电力可靠地处理电力可能导致电力停电,这将不可避免地对国家经济和社会产生不利影响。因此,电力公司应考虑设计适当的先发制人措施,以避免电力供应中断的可能性。这些中断可能对系统的运行具有潜在的灾难性影响,这甚至可能包括消费者必须承担货币成本。这项研究由于静态系统连续跳闸,旨在尊重风险和可靠性成本/值得的客户中断成本。通过比较基于风险的估值和可靠性成本/值得与传输能力结果相对应的可靠性成本/值得评估的性能,评估与传输能力结果相对应的,这与静态系统顺序跳闸相关。结果表明,不可忽略不可预测的连续跳闸从传输可靠性保证金确定。因此,拟议的技术可能对未来的能源可持续性发挥重要作用。

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