Stability of a power system can be improved by1.Using series compensations2.Using parallel transmission lines3.Reducing voltage of transmissionWhich of the above statements are correct?
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Power-system stability concerns the ability of synchronous machines and network states to remain or return to acceptable operation after disturbances. Series compensation can increase transfer capability by reducing effective reactance, and parallel transmission paths can reduce transfer reactance. Key relation: Simplified transfer P≈(EV/X)sinδ; reducing effective X raises transfer capability.
Exam focus: Lower transfer reactance generally improves synchronizing power margin. Common trap: Do not confuse ordinary load flow with a dynamic stability study.
Formula / Key Relation
Simplified transfer P≈(EV/X)sinδ; reducing effective X raises transfer capability.
Detailed Explanation
Correct Answer: D - 1 and 2 only Quick Concept Explanation Power-system stability concerns the ability of synchronous machines and network states to remain or return to acceptable operation after disturbances. Series compensation can increase transfer capability by reducing effective reactance, and parallel transmission paths can reduce transfer reactance. Key relation: Simplified transfer P≈(EV/X)sinδ; reducing effective X raises transfer capability.Exam focus: Lower transfer reactance generally improves synchronizing power margin. Common trap: Do not confuse ordinary load flow with a dynamic stability study. Statement-wise Verification Statement 1 - Correct.Using series compensationsSeries compensation can increase transfer capability by reducing effective reactance, and…
Correct Answer: D - 1 and 2 only
Quick Concept Explanation
Power-system stability concerns the ability of synchronous machines and network states to remain or return to acceptable operation after disturbances. Series compensation can increase transfer capability by reducing effective reactance, and parallel transmission paths can reduce transfer reactance. Key relation: Simplified transfer P≈(EV/X)sinδ; reducing effective X raises transfer capability.
Exam focus: Lower transfer reactance generally improves synchronizing power margin. Common trap: Do not confuse ordinary load flow with a dynamic stability study.
Statement-wise Verification
Statement 1 - Correct. Using series compensations Series compensation can increase transfer capability by reducing effective reactance, and parallel transmission paths can reduce transfer reactance.
Statement 2 - Correct. Using parallel transmission lines Series compensation can increase transfer capability by reducing effective reactance, and parallel transmission paths can reduce transfer reactance.
Statement 3 - Incorrect. Reducing voltage of transmission Lower transmission voltage generally worsens power-transfer capability/stability; higher voltage helps
Core Concept
Power-system stability concerns the ability of synchronous machines and network states to remain or return to acceptable operation after disturbances. Series compensation can increase transfer capability by reducing effective reactance, and parallel transmission paths can reduce transfer reactance. Stability studies focus strongly on rotor-angle/electromechanical dynamics rather than ordinary steady-state voltage calculation alone.
Formula / Key Relationship
Simplified transfer P≈(EV/X)sinδ; reducing effective X raises transfer capability.
Why the Other Options Are Wrong
Option A is incorrect because it omits correct statement(s) 2. Option B is incorrect because it includes incorrect statement(s) 3 and omits correct statement(s) 1. Option C is incorrect because it omits correct statement(s) 1.
Exam Shortcut / Approach
Lower transfer reactance generally improves synchronizing power margin.
Common Mistake
Do not confuse ordinary load flow with a dynamic stability study.
Quick Revision
Series Compensation and Parallel Lines is linked with Stability Improvement, Power System Stability and Power Systems. Lower transfer reactance generally improves synchronizing power margin.
Quick Trick
Lower transfer reactance generally improves synchronizing power margin.
Why Other Options Are Wrong
Option A is incorrect because it omits correct statement(s) 2. Option B is incorrect because it includes incorrect statement(s) 3 and omits correct statement(s) 1. Option C is incorrect because it omits correct statement(s) 1.
Common Mistake
Do not confuse ordinary load flow with a dynamic stability study.
Exam Tip
Lower transfer reactance generally improves synchronizing power margin.
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