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Efficient Obligation Tree Analysis in Electrical Engineering, Slides of Engineering

Electrical Engineering SystemsPower System Reliability AnalysisData Structures in Electrical Engineering

The application of Obligation Tree Analysis in electrical engineering for reliability evaluation. The document emphasizes the importance of data structures in representing obligation trees and reducing computation time. Topics covered include the construction of obligation trees, representation using data structures, extraction of minimal cut-sets, and calculation of system reliability. The document also mentions linked list processing and power system reliability metrics such as Loss of Load Probability (LOLP) index and Loss of Power index.

What you will learn

  • What are the advantages of using data structures in representing obligation trees?
  • How are minimal cut-sets extracted from an embodied obligation tree?
  • What is Obligation Tree Analysis and how is it used in electrical engineering?

Typology: Slides

2019/2020

Uploaded on 11/01/2020

zainab-ather
zainab-ather 🇵🇰

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Download Efficient Obligation Tree Analysis in Electrical Engineering and more Slides Engineering in PDF only on Docsity! “APPLICATION OF DATA STRUCTURE IN ELECTRICAL ENGINEERING” PRESENTED BY: ZAINAB ATHER (2800- 2017) introduction With the rising intricacy of manipulation arrangement configuration, the computation of reliability becomes quite monotonous after one possesses to deal alongside a non- series- parallel system. There possesses been a tolerating and rising attention in methods for manipulation arrangement reliability evaluation. In the reliability scutiny of convoluted arrangements, an usual way is to delineate the physical arrangement by way of a little logic diagram that expresses all useful relations amid constituents or events believed to be elemental. Countless methods are obtainable for assessing manipulation arrangement reliability. The enthusing methods that had by nowadays been derived contain Heuristic methods, Simulation methods, Negligible cut-set methods and Obligation tree techniques. Linked list processing: After employing related catalog to embody a tree construction, it is vital for two pointers to be associated alongside every single node of the tree. The early pointer indicates the early youngster of the node, i.e., the left most youngster, the subsequent pointer indicates the attendance of a youngster of the alike parent, i.e., a twin pointer. The insertion and deletion of nodes does not need the rewriting of the nodes records as is the case alongside sequential tabulating of a tree. One more supremacy of the related catalog construction above a sequential catalog is that it is probable to admission a node lacking possessing to bypass across every single node in the tree. The steps encompassed in representing a web in the form of related catalog are as follows: i. Access a origin node of the network. ii. Store the origin node data. iii. Traverse the sub-tree to admission the youngster nodes of the origin node. iv.At every single youngster node, store the node data, set a origin pointer to the youngster node data and set a youngster node pointer to the origin node data. v. Go to pace i unless all the origin nodes on the web possess been accessed. Power system reliability: Loss of load probability (lolp) index Loss of power index Loss of load probability (lolp) index: : LOLP method is retained in reliability studies of mechanical manipulation arrangements to assess the probability that the arrangement burden could exceed the obtainable producing capacity. LOLP can be described as the probability of the arrangement burden exceeding the obtainable producing capacity below the assumption that the top burden of every single date lasts all day. When the reliability of an mechanical manipulation arrangement is assessed by the LOLP method, it is customary to seize into report the uncertainty in the burden forecasts by associating a peak-load allocation alongside the consented daily peak-load period curve.