Performance Improvement in Multi Area Diverse Source Interconnected Power System under IDDN Controller with AC-DC Line
This paper presents the soft computing algorithm-based modified classical controller for the load frequency control (LFC) of a multi-area diverse source (MADS) system. The modified classical controller of the integral-double derivative with filter (IDDN) optimized with the donkey and smuggler techni...
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Published in: | 2024 International Conference on Integrated Circuits and Communication Systems (ICICACS) pp. 1 - 6 |
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IEEE
23-02-2024
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Abstract | This paper presents the soft computing algorithm-based modified classical controller for the load frequency control (LFC) of a multi-area diverse source (MADS) system. The modified classical controller of the integral-double derivative with filter (IDDN) optimized with the donkey and smuggler technique (DST) is presented for the interconnected power system (IPS) network's frequency regulation. However, the efficacy of the suggested DST-based IDDN is validated with the other regulator's performance. To bring the study closer to reality, the MADS is addressed with communication time delays (CTDs) and its performance is evaluated using a 10% step load (SLD) disruption in area-1. Further, the high-voltage DC line is incorporated with the MADS system and the investigation reported the improvement in the performance. Finally, the suggested DST-tuned IDDN in coordination with the AC-DC lines of territorial control strategy robustness is verified through the sensitivity analysis. |
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AbstractList | This paper presents the soft computing algorithm-based modified classical controller for the load frequency control (LFC) of a multi-area diverse source (MADS) system. The modified classical controller of the integral-double derivative with filter (IDDN) optimized with the donkey and smuggler technique (DST) is presented for the interconnected power system (IPS) network's frequency regulation. However, the efficacy of the suggested DST-based IDDN is validated with the other regulator's performance. To bring the study closer to reality, the MADS is addressed with communication time delays (CTDs) and its performance is evaluated using a 10% step load (SLD) disruption in area-1. Further, the high-voltage DC line is incorporated with the MADS system and the investigation reported the improvement in the performance. Finally, the suggested DST-tuned IDDN in coordination with the AC-DC lines of territorial control strategy robustness is verified through the sensitivity analysis. |
Author | Sai Kalyan, CH. Naga Reddy, M. Sai Prasad Tellapati, Anuradha Devi Venkata Govardhan Rao, Kambhampati Sanjeev, Gadi Goud, B. Srikanth |
Author_xml | – sequence: 1 givenname: CH. Naga surname: Sai Kalyan fullname: Sai Kalyan, CH. Naga email: kalyanchallapalli@gmail.com organization: Vasireddy Venkatadri Institute of Technology,Department of EEE,Guntur,India – sequence: 2 givenname: M. Sai Prasad surname: Reddy fullname: Reddy, M. Sai Prasad email: mallesaiprasad@gmail.com organization: Vignana Bharathi Institute of Technology,Department of EEE,Hyderabad,India – sequence: 3 givenname: Gadi surname: Sanjeev fullname: Sanjeev, Gadi email: sanjeev.gadis@gmail.com organization: St.Martin's Engineering College,Department of ECE,Secunderabad,India – sequence: 4 givenname: Anuradha Devi surname: Tellapati fullname: Tellapati, Anuradha Devi email: anuradhadevi.eee@gmail.com organization: Vardhaman College of Engineering Kacharam,Department of EEE,Shamshabad, Hyderabad,India – sequence: 5 givenname: Kambhampati surname: Venkata Govardhan Rao fullname: Venkata Govardhan Rao, Kambhampati email: kv.govardhanrao@gmail.com organization: St.Martin's Engineering College,Department of ECE,Secunderabad,India – sequence: 6 givenname: B. Srikanth surname: Goud fullname: Goud, B. Srikanth email: bsgoud07@gmail.com organization: Anurag University,Department of EEE,Hyderabad,India |
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Snippet | This paper presents the soft computing algorithm-based modified classical controller for the load frequency control (LFC) of a multi-area diverse source (MADS)... |
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SubjectTerms | AC-DC lines Control systems CTDs Donkey and smuggler technique IDDN controller MADS system Power system reliability Regulators Robustness Sensitivity analysis Superluminescent diodes System dynamics |
Title | Performance Improvement in Multi Area Diverse Source Interconnected Power System under IDDN Controller with AC-DC Line |
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