A substation is a power facility in the power system that converts voltage, receives and distributes electrical energy, controls the flow of electricity, and adjusts voltage. As a very important energy conversion base, if a fire or other power accident occurs in a substation, it will inevitably lead to large-scale power outages, causing significant impact and losses to the production of enterprises and the lives of people. Itu, ensuring the safety and reliability of substations and avoiding fires are crucial. Antaranya, equipment overheating is an important hidden danger that can lead to substation fires. Overheating at the dynamic and static contacts and other connections of high-voltage switchgear in substations, sendi kabel, sambungan kabel, and partial discharge of high-voltage cables are the main hidden dangers of large-scale accidents. Selain itu, tempat-tempat ini selalunya mempunyai voltan beberapa ribu atau bahkan puluhan ribu volt, menimbulkan bahaya keselamatan yang besar untuk operator masuk dan menyiasat.
Characteristics and Disadvantages of Pengukuran suhu tanpa wayar System in Substation
Penderia suhu tanpa wayar, wireless centralized receiver, pemantauan pencawang, centralized control station, remote monitoring center, the wireless temperature sensor is connected to the wireless centralized receiver through wireless communication; The wireless centralized receiver is connected to the substation monitoring through wired communication; Substation monitoring and centralized control station connection; Connection between remote monitoring center and centralized control station; The substation monitoring configuration is equipped with a GSM network that can trigger temperature anomaly alarm information to be sent to the relevant staff’s mobile phones; The remote monitoring center, centralized control station, and substation monitoring are each equipped with temperature monitoring display devices, which monitor the temperature of the substation equipment in real time. The substation monitoring has a preset temperature threshold, which can compare the received temperature data with the preset threshold and send abnormal alarm information to the relevant staff’s mobile phones to passively set a temperature threshold. It cannot set multi-level alarms according to the specific environment. If there are significant differences in the basic temperature of multiple points in the substation, the system is prone to misjudgment, and even a large fire may occur when the alarm is triggered. Unable to accurately locate the location of the accident point, can only determine the fire alarm area, and cannot reflect the real-time temperature situation.
Kelebihan Sistem Pengukuran Suhu Gentian Optik Teragih di Pencawang
Due to its ability to achieve distributed continuous monitoring of temperature along the fiber optic cable, and its advantages such as small size, Berat ringan, penebat elektrik yang baik, rintangan kakisan kimia, rintangan suhu tinggi, sensitiviti tinggi, Tindak balas pantas, Letupan-bukti, api-retardant, Kos rendah, dan penentangan terhadap gangguan elektromagnetik, Serat optik yang diedarkan temperature sensors have been widely used in pipeline leak detection, dam infiltration, Pemantauan Sistem Kuasa, fire warning, and medical treatment.
FJINNO provides an sistem pengukuran suhu gentian optik for substation temperature monitoring. By using distributed optical fiber temperature testing based on Raman scattering temperature measurement technology, temperature anomalies can be accurately and timely located on one optical fiber; Pada masa yang sama, sistem ini dilengkapi dengan nilai penggera suhu berbilang peringkat dan penggera kadar kenaikan suhu, memaparkan lengkung taburan suhu dalam masa nyata, dan memberikan amaran awal sebelum kebakaran berlaku. Ini menyelesaikan masalah bahawa sistem pengukuran suhu sedia ada hanya boleh menetapkan ambang suhu secara pasif, yang terdedah kepada salah penilaian dan tidak dapat mengesan lokasi tempat kemalangan dengan tepat. Pada masa ini, there are many studies on distributed fiber optic temperature measurement technology based on Raman scattering at home and abroad. The technical basis for achieving distributed measurement of temperature along the fiber optic cable is the Raman scattering and optical time domain reflection technology generated when light propagates in the fiber optic cable. When light undergoes Raman scattering in the fiber optic cable, its scattered light intensity is related to temperature, so intensity modulation technology can be used to measure the temperature along the fiber optic cable; By using optical time domain reflection technology, the demodulation of the position information of the measured temperature point can be achieved, thus completing the distributed measurement of temperature along the fiber optic cable.
Penderia suhu gentian optik, Sistem pemantauan pintar, Pengeluar gentian optik yang diedarkan di China
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Sensor suhu gentian optik INNO ,sistem pemantauan suhu.



