Power distribution system suitable for scenic spots and its configuration method
A technology of a power distribution system and configuration method, which is applied to the power distribution system and its configuration field of scenic spots, can solve the problems of large power load of power facilities, threats to the personal safety of tourists, and troubles for staff, so as to achieve timely troubleshooting and optimization of monitoring data. Collection process to ensure the effect of maintenance costs
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specific Embodiment 1
[0055] Combine figure 1 The present invention refers to a power distribution system suitable for scenic spots, characterized in that the power distribution system includes distribution boxes, maintenance stations, passenger flow collection devices distributed in the scenic spots, and a management computer set in the monitoring center .
[0056] The management computer is respectively connected with a distribution box, a maintenance station, and a passenger flow collection device, and the maintenance station has a corresponding relationship with multiple distribution boxes.
[0057] The distribution box is provided with a monitoring device to monitor the real-time power parameters of each power facility connected to the distribution box, and send the real-time power parameters to the management computer according to the set detection period; the management computer receives And analyze the real-time power parameters, if abnormal power parameters occur, generate fault information for...
specific Embodiment 2
[0100] When the number of power facilities with the highest power risk level in the scenic area is small, or all of them need to be separately equipped with distribution boxes, the following configuration methods can also be used to set up distribution boxes and maintenance stations, the configuration methods include:
[0101] S01: Set the control area corresponding to each power facility.
[0102] S02: Calculate the risk values of all power facilities, divide the power facilities into several groups according to the preset risk value range, and each group corresponds to a power risk level.
[0103] S03: Divide the control area corresponding to the power facility with the highest power risk level into key monitoring areas, and each key monitoring area corresponds to a distribution box.
[0104] S04: Regarding that the power facilities of various power risk levels included in each distribution box are within their respective preset number thresholds as constraints, the other control a...
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