Abstract:
Stabilization of power systems is investigated using a proportional-integral (PI) power system stabilizer. Digital (sampled-data) PI stabilizers as well as analog (contin...Show MoreMetadata
Abstract:
Stabilization of power systems is investigated using a proportional-integral (PI) power system stabilizer. Digital (sampled-data) PI stabilizers as well as analog (continuous-time) PI stabilizers are examined in this paper. Two approaches, viz., the root-locus method and the suboptimal regulator method, are presented for determining the optimal stabilizer gains of the proposed PI stabilizer. The dynamic responses following a step disturbance by digital simulation are obtained by means of three types of stabilizers: the conventional power system stabilizer, the optimal stabilizer and the PI stabilizer. Simulation results show that the proposed PI stabilizer yields better system dynamic performance than the others in the sense of having greater damping in response to a step disturbance. A characteristic feature of the proposed PI stabilizer is that it is very simple for practical implementation, especially in the digital case, as commercial PI controllers have been widely employed by the industry for years.
Published in: IEEE Transactions on Power Systems ( Volume: 1, Issue: 2, May 1986)
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- IEEE Keywords
- Index Terms
- Stability Of System ,
- Power System ,
- Power System Stability ,
- Dynamic Response ,
- Dynamic Performance ,
- PI Controller ,
- Stable Type ,
- Optimal Stability ,
- Years In Industry ,
- Eigenvalues ,
- Digital Technologies ,
- State Variables ,
- Weight Matrix ,
- Equation Of State ,
- Postural Stability ,
- Step Change ,
- Changes In Demand ,
- Output Vector ,
- Voltage Regulation ,
- Single Machine ,
- Suboptimal Approach ,
- Digital Power ,
- Synchronous Motor
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Stability Of System ,
- Power System ,
- Power System Stability ,
- Dynamic Response ,
- Dynamic Performance ,
- PI Controller ,
- Stable Type ,
- Optimal Stability ,
- Years In Industry ,
- Eigenvalues ,
- Digital Technologies ,
- State Variables ,
- Weight Matrix ,
- Equation Of State ,
- Postural Stability ,
- Step Change ,
- Changes In Demand ,
- Output Vector ,
- Voltage Regulation ,
- Single Machine ,
- Suboptimal Approach ,
- Digital Power ,
- Synchronous Motor