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List of Electives
Elective – I

TEE – 011 : TEN - 011 : TEC – 015 : TEE – 013 : TEE – 014:
Elective – II

Database Management System, Data Mining and Warehousing Applications of power Electronics to Power System VLSI System Design Advanced Control System Digital Control System

TCS - 602 : TEE – 802 : CS - 023 : TEE – 702 : TEE - 703 :
Elective – III

Computer Networks Utilization of Electric Energy & Traction Cryptography and Network Security Electric Drives Power System Operation & Control

TEE – 031 : TEC – 025 : TEE – 033 : TEE – 034 : TIT – 012 :

Bio-Instrumentation Image Processing Neural Networks & Fuzzy System Switch Mode and Resonant Converters Multimedia System

TEE – 701: Switchgear and Protection L T P 3 1
Unit No. 1

0
Topic Name Introduction to Protection System: Introduction to protection system and its elements, functions of protective relaying, protective zones, primary and backup protection, desirable qualities of protective relaying, basic terminology. Relays: Electromagnetic, attracted and induction type relays, thermal relay, gas actuated relay, design considerations of electromagnetic relay. Text Book No. 1 2 Chapter No. No. Of Lectures 3

29 1

1 2

30 3

5

Relay Application and Characteristics: 2 Amplitude and phase comparators, over current relays, directional relays, distance relays, differential relay Static Relays 2 Comparison with electromagnetic relay, classification and their description, over current relays, directional 1 relay, distance relays, differential relay. 1 3 Protection Of Transmission Line : Over current protection, distance protection, pilot wire 2 protection, carrier current protection, protection of bus, auto reclosing, 1 1 4 Circuit Breaking : Properties of arc, arc extinction theories, restriking 1 voltage transient, current chopping, resistance 2 switching, capacitive current interruption, short line 2 interruption, circuit breaker ratings. Testing Of Circuit Breaker : Classification, testing station and

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    The dynamic state estimation based protection (also known as setting-less protection) has been inspired from the differential protection function and can be considered as an extension and generalization as illustrated in Figure 1. In current differential protection the electric currents at all terminals of a protection zone are measured and their weighted sum must be equal to zero (generalized Kirchhoff’s current law). Thus the current differential protection function consists of measuring the sum of the currents and as long as it is zero or near zero no action is taken. In dynamic state estimation based protection, all existing measurements in the protection zone are utilized. These measurements include: currents and voltages at the terminals of the protection zone, currents and voltages inside the protection zone (as in capacitor bank protection), speed and torque (as in rotating machinery), or other internal measurements including thermal measurement. All above measurements should obey the physical laws for the protection zone (physical laws such as KCL, KVL, motion laws and thermodynamic laws). The physical laws of the protection zone are captured in the dynamic model of the protection zone.…

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