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2018 | OriginalPaper | Buchkapitel

7. Small-Signal Stability of a Power System Integrated with an MTDC Network for the Wind Power Transmission

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Abstract

As it is introduced in Chap. 1, small-signal stability of an AC power system integrated with a multi-terminal DC (MTDC) network for the wind power transmission is determined by the dynamic interactions between the VSCs and synchronous generators (SGs). The dynamic interactions are through both the MTDC network and AC grid. Hence, the small-signal stability of an MTDC/AC power system is a complicated issue, which is addressed in this chapter by focusing on the following three particular aspects.

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Literatur
1.
Zurück zum Zitat Wang XF, Song YH, Irving M (2011) Modern power systems analysis. Springer, Berlin Wang XF, Song YH, Irving M (2011) Modern power systems analysis. Springer, Berlin
2.
Zurück zum Zitat Wang HF, Du WJ (2016) Analysis and damping control of power system low-frequency oscillations. Springer, New YorkCrossRef Wang HF, Du WJ (2016) Analysis and damping control of power system low-frequency oscillations. Springer, New YorkCrossRef
4.
Zurück zum Zitat Padiyar KR (1996) Power system dynamics stability and control. Wiley, New York Padiyar KR (1996) Power system dynamics stability and control. Wiley, New York
5.
Zurück zum Zitat Dobson I, Zhang J, Greene S, Engdahl H, Sauer PW (2001) Is strong resonance a precursor to power system oscillations. IEEE Trans Circuits Syst I Fundam Theory Appl 48(3):340–349CrossRef Dobson I, Zhang J, Greene S, Engdahl H, Sauer PW (2001) Is strong resonance a precursor to power system oscillations. IEEE Trans Circuits Syst I Fundam Theory Appl 48(3):340–349CrossRef
6.
Zurück zum Zitat Padiyar KR, SaiKumar HV (2006) Investigations on strong resonance in multimachine power systems with STATCOM supplementary modulation controller. IEEE Trans Power Syst 21(2):754–762CrossRef Padiyar KR, SaiKumar HV (2006) Investigations on strong resonance in multimachine power systems with STATCOM supplementary modulation controller. IEEE Trans Power Syst 21(2):754–762CrossRef
7.
8.
Zurück zum Zitat Li SH, Haskew TA (2012) Optimal and direct-current vector control of direct-driven PMSG wind turbines. IEEE Trans Power Electron 27(5):2325–2337CrossRef Li SH, Haskew TA (2012) Optimal and direct-current vector control of direct-driven PMSG wind turbines. IEEE Trans Power Electron 27(5):2325–2337CrossRef
9.
Zurück zum Zitat Lu W, Ooi BT (2003) Optimal acquisition and aggregation of offshore wind power by multi terminal voltage-source HVDC. IEEE Trans Power Del 18(1):201–206CrossRef Lu W, Ooi BT (2003) Optimal acquisition and aggregation of offshore wind power by multi terminal voltage-source HVDC. IEEE Trans Power Del 18(1):201–206CrossRef
10.
Zurück zum Zitat Dierckxsens C, Srivastava K, Reza M, Cole S, Beerten J, Belmans R (2012) A distributed DC voltage control method for VSC MTDC systems. Elect Power Syst Res 82:54–58CrossRef Dierckxsens C, Srivastava K, Reza M, Cole S, Beerten J, Belmans R (2012) A distributed DC voltage control method for VSC MTDC systems. Elect Power Syst Res 82:54–58CrossRef
11.
Zurück zum Zitat Rouzbehi K, Miranian A, Candela JI, Luna A, Rodriguez P (2015) A generalized voltage droop strategy for control of multiterminal DC grids. IEEE Trans Ind Appl 51(1):607–618CrossRef Rouzbehi K, Miranian A, Candela JI, Luna A, Rodriguez P (2015) A generalized voltage droop strategy for control of multiterminal DC grids. IEEE Trans Ind Appl 51(1):607–618CrossRef
12.
Zurück zum Zitat Anderson PM, Agrawal BL, Van Ness JE (1990) Subsynchronous proximity in power systems. IEEE Press, New York Anderson PM, Agrawal BL, Van Ness JE (1990) Subsynchronous proximity in power systems. IEEE Press, New York
13.
Zurück zum Zitat Haileselassie TM, Uhlen K (2012) Impact of DC line voltage drops on power flow of MTDC using droop control. IEEE Trans Power Syst 27(3):1441–1449CrossRef Haileselassie TM, Uhlen K (2012) Impact of DC line voltage drops on power flow of MTDC using droop control. IEEE Trans Power Syst 27(3):1441–1449CrossRef
14.
Zurück zum Zitat Chaudhuri NR, Majumder R, Chaudhuri B (2013) System frequency support through multi-terminal DC (MTDC) grids. IEEE Trans Power Syst 28(1):347–356CrossRef Chaudhuri NR, Majumder R, Chaudhuri B (2013) System frequency support through multi-terminal DC (MTDC) grids. IEEE Trans Power Syst 28(1):347–356CrossRef
15.
Zurück zum Zitat Anderson PM, Agrawal BL, Van Ness JE (1999) Subsynchronous resonance in power systems. Wiley, IEEE Press, New YorkCrossRef Anderson PM, Agrawal BL, Van Ness JE (1999) Subsynchronous resonance in power systems. Wiley, IEEE Press, New YorkCrossRef
Metadaten
Titel
Small-Signal Stability of a Power System Integrated with an MTDC Network for the Wind Power Transmission
verfasst von
Wenjuan Du
Haifeng Wang
Siqi Bu
Copyright-Jahr
2018
DOI
https://doi.org/10.1007/978-3-319-94168-4_7