The Sequence Network’s Impact on Power Systems
The Sequence Network and Power System Stability
Types of Sequence Networks
The study of unsymmetrical faults by the symmetrical components method can be easily done by drawing a sequence network in a power system. A sequence network in a particular sequence current in a given power system is the path for the flow of that current in the plans. It is composed of impedances offered to that sequence current in the system. Since there are three sequence currents named Positive, Negative, and Zero sequences current,
They are three sequence networks in the given power system as below:
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Positive-sequence network
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Negative-sequence network
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Zero-sequence network.
Positive Sequence Network in Power System
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Each generator in the system is represented by the generated voltage in series with proper reactance and resistance.
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Current limiting impedances between the generator neutral and ground pass no positive sequence current and are not included in the positive sequence network.
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All resistances and magnetizing currents for each transformer are neglected as a matter of simplicity.
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For transmission lines, the shunt capacitances and the resistances are generally neglected.
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Motor loads are integrated into the network as generated emf in series with appropriate reactance.
Negative-Sequence Network in Power System
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Omit the e.m.fs of 3-phase generators and motors in the positive sequence network. It is because these devices have only positive-sequence generated voltages.
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Change, if necessary, the impedances that represent rotating machines in the positive sequence network. It is because negative sequence impedances of rotating machinery generally differ from that of positive sequence impedances.
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Current limiting impedances between neutral and ground generators pass no negative sequence current and are not included in the negative sequence network.
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The negative sequence impedances have the same value as the corresponding positive sequence impedances for static devices such as transmission lines and transformers.
Zero Sequence Network in Power System
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The zero sequence currents will flow only if there is a return path, i.e., a path from neutral to ground or another neutral point in the circuit.
- In the case of a system with no return path for zero sequence currents, these currents cannot exist.
Reference Bus for Sequence Networks
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For positive or negative sequence networks, the neutral of the generator is considered an s reference bus. This is logical because positive or negative sequence components represent the balanced sets. Hence, all the neutral points must have the same potential for any positive or negative sequence currents.
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The reference bus is the ground at the generator for a zero sequence network.
