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Ditemukan 21576 dokumen yang sesuai dengan query
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Kimbark, Edward Wilson
New York: IEEE Press, 1995
621.319 KIM p I (1)
Buku Teks SO  Universitas Indonesia Library
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Kimbark, Edward Wilson
New York: IEEE Press, 1995
621.319 KIM p III (1)
Buku Teks SO  Universitas Indonesia Library
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Kimbark, Edward Wilson
New York: IEEE Press, 1995
621.319 KIM p II (2)
Buku Teks SO  Universitas Indonesia Library
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Kimbark, Edward Wilson,
New York, Wiley: Wiley, 1948-56
621.319 KIM p II (1)
Buku Teks SO  Universitas Indonesia Library
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Taylor, Carson W.
New York: McGraw-Hill, 1994
621.319 TAY p
Buku Teks SO  Universitas Indonesia Library
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Machowski, Jan
Chichester: John Wiley and Sons, 1997
621.319 MAC p
Buku Teks SO  Universitas Indonesia Library
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Padiyar, K.R.
Singapore: John Wiley & Sons, 1996
621.31 PAD p
Buku Teks SO  Universitas Indonesia Library
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"In electric power systems that consist of some generators, electric power stability in supplies side
becomes the most important problems, which must be paid attention. In the interconnection system, if
there are some troubles in transmission, generator or load will cause another generators feel the
existence of instability condition. For instability condition which not too serious, system can overcome
the fault and will not influence stability of system as a whole. However, for in big scale of fault and
happened in a long duration can be ejected system becoming unstable and will result hampered of
electrics energy supply to the load For the worst condition could be blackout condition.
This article studies about improvement of the stability of the system by using excitation current and
the prime mover of generators, which is coordinated fuzzy logic control in synchronize generator. By
using annexation from three methods above, the condition of stability of the power system can attain the
stability. The transient stability needed control in order that system with good stability can return to
normal condition. Faulted electric power system often caused by failure in controlling the transient
stability. It is because in transient stability forms critical condition for electrical power system.
By controlling the level of excitation current and mechanical energy from the prime mover of
generators which controlled by fuzzy logic when the fault is happened will make acceleration area
become decreasing and deceleration area become increasing with the result that system can be stable
quickly. It visible that from result of simulation obtained if using generator oscillation of fuzzy logic
control, transient period becoming shorter and amplitude of oscillation wave is smaller compare by using
without fuzzy logic. Likewise, this method is able loo to overcome transient condition at starting period of
a generator.
"
Jurnal Teknologi, 19 (1) Maret 2005: 10-16, 2005
JUTE-19-1-Mar2005-10
Artikel Jurnal  Universitas Indonesia Library
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Faya Safirra
"Dalam sistem tenaga listrik, penyaluran tenaga listrik yang baik merupakan hal yang vital dalam memenuhi kebutuhan beban. Pada sistem tenaga listrik Jawa Bali, terdapat permasalahan dalam transmisi tenaga listrik dari timur ke barat Jawa, yaitu ketidakseimbangan pembebanan jalur utara (Sirkit Ungaran-Mandiracan 1&2) dan jalur selatan (Sirkit Pedan-Tasik & sirkit Pedan-Kesugihan-Tasik) karena perbedaan impedansi saluran, juga masalah penurunan tegangan pada sisi barat Jawa. Permasalahan tersebut bisa diselesaikan dengan memasang UPFC pada sistem tenaga listrik Jawa Bali. Hasil simulasi menunjukkan bahwa pemasangan UPFC pada sirkit Pedan-Tasik dapat membantu meningkatkan transfer jalur selatan sampai sebesar 5% dan menurunkan transfer jalur utara sampai sebesar 5% untuk semua skenario transfer. Peningkatan nilai tegangan pada sisi barat Jawa yaitu region 1 dan 2 juga bisa didapat. Kestabilan sistem setelah terjadi gangguan juga bisa dicapai dalam waktu yang lebih singkat jika dibandingkan dengan sistem tanpa UPFC.
In electric power system, a good power transmission is vital in meeting the needs of the load. In Java Bali electric power system, there are problems in the transmission of electric power from east to west of Java, namely the loading imbalance of north transmission line (Ungaran-Mandiracan 1 & 2) and the south transmission line (Pedan-Tasik & Pedan-Kesugihan-Tasik) because of differences in line impedance, also the voltage drop problem on the west side of Java. Those problems can be solved by using the UPFC in the Java-Bali power system. The simulation results show that UPFC installation on Pedan-Tasik circuit can improve the transfer of the south transmission line up to 5% and lower the transfer of north transmission line up to 5% for all transfer scenarios. Increasing the voltage on the western side of Java, the region 1 and 2, can also be obtained. In addition, the stability of the system after an interruption can be achieved in a shorter time compared to system without UPFC."
Depok: Fakultas Teknik Universitas Indonesia, 2016
S65261
UI - Skripsi Membership  Universitas Indonesia Library
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Kurniadi Ramadhan
"Gangguan dalam menghasilkan sistem tenaga listrik dapat menyebabkan ketidakstabilan tegangan pada sistem beban. Ketidakstabilan tegangan dalam sistem menyebabkan sistem beroperasi secara tidak normal yang menyebabkan keruntuhan tegangan atau pemadaman total di seluruh sistem. Makalah ini membahas analisis stabilitas tegangan statis dan dinamis dari Sistem Tenaga Senayan-Sambas dengan menggunakan perangkat lunak ETAP12.6.0 untuk simulasi aliran beban dan simulasi analisis sementara. Perubahan pengaruh persentase beban dan catu daya reaktif dari tegangan sistem akan diamati menggunakan analisis statis. Skema pelepasan beban dengan relai di bawah tegangan dan kompensator daya reaktif dalam beban, yang akan dilindungi ketika terjadi gangguan masif pada generator, akan digunakan sebagai sistem. Skema pelepasan beban disampaikan untuk mengembalikan dan menstabilkan tegangan sistem. Skema tersebut kemudian akan menjatuhkan beberapa beban prioritas tinggi dari sistem. 15 MVA atau 12,32% dari seluruh beban akan dihemat untuk mencegah beban dari tersandung kompensator daya reaktif yang digunakan dengan 30 capasitive rating MVAR.

Interference in generating electric power systems can cause voltage instability in the load system. Voltage instability in the system causes the system to operate abnormally which causes a voltage collapse or a total blackout throughout the system. This paper discusses the static and dynamic stress stability analysis of the Senayan-Sambas Power System using ETAP12.6.0 software for load flow simulations and transient analysis simulations. Changes in the effect of the percentage load and reactive power supply of the system voltage will be observed using static analysis. A load release scheme with a relay under voltage and a reactive power compensator in the load, which will be protected when there is massive interference with the generator, will be used as a system. The load release scheme is delivered to restore and stabilize the system voltage. The scheme will then drop some high priority loads from the system. 15 MVA or 12.32% of the total load will be saved to prevent the load from tripping over the reactive power compensator used with 30 MVAR rating capacities."
Depok: Fakultas Teknik Universitas Indonesia, 2019
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
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