
Learn substation operations and interlocks for gas insulated switchgear, including shutdown and restoration sequences, using logic diagrams and a simple single bus, single breaker scheme.
Learn how isolators and switches function in switchgear, including symbols, bus paths, incoming and outgoing feeders, three-position operation, and maintenance safeguards like offload grounding to prevent energization and arcs.
Learn how a circuit breaker operates in substation interlocks, including interrupting and making currents, motor operated mechanism, current transformer, interrupter unit, and closing and opening times.
Explore busbar configurations in substations, including single and double bus schemes, ring and one-and-a-half bus layouts, isolators, breakers, and bus couplers enabling redundancy and load sharing.
Explore substation symbols for circuit breakers, isolators, high-speed switches, current and voltage transformers, leakage monitoring, and isolating links in a simple bus-and-breaker scheme.
Explore the single bus, single breaker scheme by examining the bus bar, line feeder, and transformer feeder with voltage and current ratings and short-circuit rating.
Learn the interlock philosophy for substation operations, comparing electrical and mechanical interlocks. Understand how proper sequencing opens switches, operates isolators, and then closes breakers to prevent unsafe bypasses and support commissioning tests.
Explore the line bay interlocking logic and the meanings of open, closed, and intermediate positions. Apply interlocks for Q1, Q51, Q9, and Q53 to ensure safe breaker operation.
Learn how transformer bay interlocking ensures safe operation by coordinating breakers, bus isolators, and high-speed switches, with Q1, Q9, and Q53 interlocks.
Explore PT bay interlocking explanations, showing how bus isolation is achieved by ensuring Q1 closes only when Q51 and Q52 are open, via VTI isolators.
Dear All,
Substations shall be provided with a full interlocking scheme to ensure that all disconnectors, fixed earthing switches (or other interlocked earthing devices) and, where required, circuit-breakers are operated in the correct sequence so that personnel do not endanger themselves and/or the integrity of the transmission system by incorrect or inadvertent operation of equipment. Where necessary, such interlocking shall also be extended to cover limitation of access to areas where there is a risk that normal safety clearances may be infringed. Interlocking is one of the most important topic for operational engineers. Therefore realizing the requirement, I have prepare the training about substation operational philosophy and interlocking.
Trainer Introduction:
Your trainer brings over 21 years of experience in operation & maintenance, erection, testing, project management, consultancy, supervision, substation automation, SCADA, and commissioning. With a background spanning power plants, high voltage substations, and HVDC installations, he has worked with renowned organizations such as Siemens Saudi Arabia. He has been involved in over 20 high-voltage substation projects across Pakistan and Saudi Arabia.
His expertise encompasses a wide range of areas including protection systems, substation automation systems, design, testing, and commissioning of power generation systems, high voltage switchgear, protection relays, and control schemes. He has a proven track record of leading testing and commissioning teams for implementing electrical infrastructure projects for industrial clients, including steel and petrochemical industries.
In this training following topics are covered.
· Explained Isolator and earth switch functionality
· Difference between high speed earth switch and normal earth switch
· Open, close and intermediate position of switchgear equipment
· Symbols & components of Single line diagram
· Different types of busbar schemes
o Single bus Single breaker scheme
o Double bus single breaker scheme
o Double bus double breaker scheme
o One and half breaker scheme
o Ring busbar scheme
· Operational philosophy and interlock logic
· Electrical and mechanical interlock
· Interlock by pass command
· Line Bay Interlocks
· Transformer Bay Interlocks
· PT Bay Interlocks
· SOP for Line Isolation & Restoration explained
· SOP for Transformer Bay Isolation & Restoration (Copy attached )
· SOP for Line Trip & Restoration explained
· SOP for Transformer Trip & Restoration (Copy attached )
Best Regards