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- W4381857166 abstract "SIPS, the individual/hierarchical combination of monitoring, protection and control functions, is installed in many modern power systems to preserve integrity following major contingency events. The fundamental concepts underlying SIPS have been reviewed in this chapter, including system classifications, architectures and design considerations. Synchrophasor-based power system monitoring, protection and control schemes, which are applied widely, have been discussed in detail with a pictorial view of their hierarchical operation as part of SIPS. A list of synchrophasor-based SIPS implemented in the real world has also been provided in this chapter, highlighting the nature of applications and a number of the challenges experienced with respect to their operation. Uncertainty associated with power generation (particularly highly distributed renewables), reductions in system inertia, varying fault levels, and changes to fault behaviours and 'signatures' have all been identified as major challenges to reliable operation of future power systems. The influence of such factors on SIPS operation has been discussed individually for monitoring, protection and control functions, along with a focus on some recent advances that are intended to address a number of issues associated with present and future schemes. Finally, some coverage of how SIPS must satisfy reliability metrics, and an overview of testing requirements for ensuring dependable and secure operation of future power systems with net-zero carbon emissions, has been included. SIPS will undoubtedly play an ever-more critical role in the future as the power system continues its transition and evolution." @default.
- W4381857166 created "2023-06-25" @default.
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- W4381857166 date "2023-06-23" @default.
- W4381857166 modified "2023-09-27" @default.
- W4381857166 title "System integrity protection schemes for future power systems" @default.
- W4381857166 doi "https://doi.org/10.1049/pbpo190e_ch8" @default.
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