Working Principle Of Impedance Relay at Dylan Pridmore blog

Working Principle Of Impedance Relay. The principle of distance relaying is governed by the ratio of voltage to current at the relay location and the operating time of the relay automatically increases with an increase of this ratio. The voltage ele­ment of the relay is excited through a potential transformer. The princi­ple of operation of an impedance relay is illustrated in fig. The relay will operate when. The apparent impedance so calculated is compared with the reach point impedance. In an impedance relay, the torque produced by a current element is opposed by the torque produced by a voltage element. The basic principle of distance protection involves the division of the voltage at the relaying point by the measured current.

Relay Circuit Diagram And Operation
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The relay will operate when. The principle of distance relaying is governed by the ratio of voltage to current at the relay location and the operating time of the relay automatically increases with an increase of this ratio. The basic principle of distance protection involves the division of the voltage at the relaying point by the measured current. The voltage ele­ment of the relay is excited through a potential transformer. The apparent impedance so calculated is compared with the reach point impedance. In an impedance relay, the torque produced by a current element is opposed by the torque produced by a voltage element. The princi­ple of operation of an impedance relay is illustrated in fig.

Relay Circuit Diagram And Operation

Working Principle Of Impedance Relay The apparent impedance so calculated is compared with the reach point impedance. In an impedance relay, the torque produced by a current element is opposed by the torque produced by a voltage element. The voltage ele­ment of the relay is excited through a potential transformer. The apparent impedance so calculated is compared with the reach point impedance. The relay will operate when. The basic principle of distance protection involves the division of the voltage at the relaying point by the measured current. The principle of distance relaying is governed by the ratio of voltage to current at the relay location and the operating time of the relay automatically increases with an increase of this ratio. The princi­ple of operation of an impedance relay is illustrated in fig.

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