Arrangements to detect and respond to disturbances in...

Data processing: measuring – calibrating – or testing – Measurement system in a specific environment – Electrical signal parameter measurement system

Reexamination Certificate

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C702S060000, C702S064000, C702S189000, C702S198000, C324S620000, C324S621000, C361S018000, C361S035000, C361S060000, C307S004000, C307S038000, C307S075000

Reexamination Certificate

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06950764

ABSTRACT:
A control arrangement and method is provided for detecting and responding to disturbances in electrical power systems. In a preferred arrangement, an integration is initiated that is based on a comparison of actual voltage of a source and a reference voltage. When the integration exceeds a predetermined value, the source is considered unreliable. Also in a preferred arrangement, a determination is made as to whether or not the disturbance is a downstream fault condition. For example, this is useful for applications where a transfer is made from a first source to a second source when predetermined disturbances are detected. In this manner, the transfer of the load to a second source is avoided which would continue the supply of the downstream fault. Additionally, the arrangement distinguishes between various degrees of disturbances to permit appropriate response based on the severity and type of disturbance. For example, a first immediate response, i.e. without intentional delay, is provided for more severe disturbances while a second delayed response is provided for less severe disturbances. The control arrangements transfers the load to an alternate source of power via the use of a high-speed source-transfer switching system that both avoids undesirable current flow between sources and minimizes undesirable transfer delays.

REFERENCES:
patent: 4143315 (1979-03-01), Kelley, Jr.
patent: 5943246 (1999-08-01), Porter
patent: 6081768 (2000-06-01), Hu et al.
patent: 6360177 (2002-03-01), Curt et al.
Alegria et al., ‘Static Voltage Regulator (SVR)—Ride Through Support For Semiconductor Facilities’, Power Quality Conference, Nov. 1998, PG & E, pp. 1-7.
Mueller et al., ‘Detecting, Identifying, and Correcting Power Quality Problems’, Feb. 1995, Electrotek, pp. 1-8.
Forti et al., ‘Analysis of Errors in Transient Disturbance Measurements Using High-Pass Probes’, Aug. 1990, IEEE Article, vol. 32, No. 3, pp. 205-216.

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