• Product
  • Suppliers
  • Manufacturers
  • Solutions
  • Free tools
  • Knowledges
  • Experts
  • Communities
Search


Akwụkwọ Instrument Transformer (CIT) Solution: Isi Nkasi Ọrụ & Akụkọ Mmemme Nke Ngosi Agbanyeghị

1. Karkasolusi Kontsep: Platform Modular na Isolasi Gomina

  • Dizain:​ Bayyana aiki da takamƙar, platform modular mai hanyar tattauna amfani da funktiyoyi masu karamin kayayyakin kashi da fassara tsawon karamin kayan kashi a cikin ɗaya, ɗaya na yadda ake aikata.
  • Isolasi:​ Amfani da liffafin isolasi gomina. An bayyana biyu na ayyuka:
    • Gas SF6:​ Yadda ake tabbatar da shi a kan haɗin karamin kayan kashi da abubuwa masu kyau a kansa kayan kashi (misali, 72.5 kV da uku). An bayyana aiki na hakuri masu haɗin gas da teknologi na hakuri gomina.
    • Bayanai Mai Gomina (Isolasi Na Fassara):​ Amsa mai zurfi na zamani game da amfani da alama mai zafi na polimida da shirin silicon. Mafi yawan da dadi a kan haɗin kashi ko kuma a matsayin yanayin da suka dogara wajen iya yi amfani da gas SF6. An bayyana aiki na haɗin kashi da abubuwan da suka dogara wajen iya yi amfani da gas SF6.
  • Modularity:​ Bayyana ayyukan da interfesu a cikin bayanai:
    • Scalability across different voltage classes (e.g., through insulator length adjustment).
    • Adaptation to specific bushing interface requirements.
    • Potential for future sensor technology upgrades.

2. Integrated Sensing Technology Implementation

  • Current Measurement:
    • Sensor:​ High-accuracy, temperature-compensated Rogowski coils. Selected for:
      • Wide Dynamic Range:​ Excellent linearity from small fractions of nominal current up to high fault currents (e.g., >40 kA).
      • No Saturation:​ Fundamental advantage over iron-core CTs, eliminating saturation risk during faults.
      • Lightweight:​ Significantly reduces mechanical stress on the overall structure.
    • Integration:​ Coils strategically placed within the insulator envelope, concentric with the primary conductor. Secure mechanical mounting resistant to vibration.
  • Voltage Measurement:
    • Sensor:​ High-stability capacitive voltage dividers (CVDs) as standard. Resistive dividers (RVDs) considered for specific DC or wide-bandwidth applications requiring fast transient response.
    • Integration:​ CVD sensing electrodes (low-impedance) integrated directly into the insulator structure. Precision grading electrodes ensure uniform field distribution and thermal/pollution stability. Critical shielding prevents external field interference.

3. Advanced Electromagnetic Field Modeling & Isolation (Critical Engineering Challenge)

  • Modeling:​ Mandatory, high-fidelity 3D Finite Element Method (FEM) modeling of the entire platform:
    • Precisely characterizes internal electromagnetic fields under all operational conditions (sinusoidal, transient, distorted waveforms).
    • Evaluates proximity effects from conductors, enclosure, and adjacent phases.
  • Minimizing Crosstalk:
    • Physical Separation:​ Optimal geometric arrangement of sensing elements (coils, CVD electrodes) based on modeling results. Maximize distance within constraints.
    • Active Shielding:​ Implementation of grounded electrostatic shields strategically placed between sensor elements based on field simulation data.
    • Guard Rings:​ Utilize conductive guard rings around Rogowski coil outputs to drain displacement currents.
  • Precise Measurement Isolation:
    • Dedicated Signal Paths:​ Routing signals from individual sensors using shielded, twisted-pair cabling within the enclosure immediately upon capture.
    • Compensated Circuit Design:​ Electronic conditioning circuits designed with crosstalk cancellation techniques informed by FEM models.
    • Validation:​ Rigorous factory testing (including harmonic injection tests) to characterize and verify isolation margins and crosstalk levels (< 0.1% specified).

4. Integrated Digital Processing & Standardized Interfaces

  • Onboard Signal Processing:
    • Dedicated, low-power ASICs or high-reliability microcontrollers directly integrated onto the sensor platform or adjacent sealed module.
    • Functions include: Rogowski coil integrator, scaling, ADC conversion, harmonic computation (if applicable), linearization, temperature compensation, and timestamping.
  • Standardized Digital Output:
    • Embedded Interfaces:​ Incorporate IEC 61869 compliant digital output circuitry directly within the CIT unit.
    • Protocols:​ Standardized support for:
      • IEC 61850-9-2:​ Sampled Values (SV) stream over Ethernet (typically multicast).
      • IEC 61850-9-3LE:​ Lightning Edition SV profile for guaranteed low-latency determinism.
    • Additional Options:​ Provision for legacy outputs (analog, IEC 60044-8 FT3) where required via optional modules.
  • Data Quality:​ Integrated Merging Unit (MU) functionality meeting relevant IEC 61869 accuracy (TPE/TPM class) and timing (PLL synchronization) standards.

5. Engineering Design & Integration Considerations

  • Thermal Management:​ Models include thermal performance analysis. Power dissipation from electronics actively managed using low-power components, potential localized heatsinks, and optimized convection paths within the insulator.
  • EMC/EMI Robustness:​ Conformal coating, shielded enclosures, ferrites, and optimized grounding strategies applied to internal electronics. Surge protection compliant with relevant standards (IEC 61000-4-5).
  • Mechanical Integrity:​ Structural analysis performed for seismic loads, wind loading, ice loading, and dynamic forces during faults. Optimized use of materials (composite/porcelain/SF6) contributes to lower seismic mass.
  • Factory Calibration & Testing:​ Comprehensive calibration against reference standards (optical/VTBI methods). Includes verification of EM isolation effectiveness, timing accuracy, protocol compliance, and full-power dielectric testing.
  • Lifecycle & Serviceability:​ Designed for minimal maintenance (especially SF6 or solid insulation). Modular electronics potentially accessible/testable without major disassembly. End-of-life disposal pathways considered (SF6 recovery/recycling).

Benefits Realized through this Design & Integration Approach:

  • Footprint Reduction:​ Up to 40-50% space savings vs. separate CTs/VTs – crucial for retrofits and compact GIS/AIS designs.
  • Enhanced Accuracy & Safety:​ Eliminates traditional CT saturation risks, improves transient response (Rogowski/CVD), reduces external connections/risks.
  • Simplified Installation:​ Single unit mounting and commissioning significantly reduce field labor and cabling complexity.
  • Lower Lifecycle Costs:​ Reduced installation, cabling, civil work, maintenance overhead.
  • Digital Substation Readiness:​ Direct IEC 61850-9-2/3LE output enables seamless integration into modern protection, control, and monitoring systems (SAS).
  • Future-Proof Platform:​ Modular design accommodates evolving sensor technologies and communication standards.
  • Reduced Environmental Impact (Solid Insulation Option):​ Eliminates SF6 usage and associated risks.
07/22/2025
Tambayar Da Yawanci
Engineering
Gwamnati na IEE-Business a Soluci Don Zama da Turuwa na Kashi da Karamin Rabi Don Jibohi Masu Yawanci
Afikaka​Bayanin da ake bayar ya nuna hanyoyi mai yawa na tattalin arziki na kayayyakin jirgin saman, tattalin kawo sararin jirgin saman, tattalin cika abinci da tattalin kudin ruwa. Tana ce ta gane muhimmanci da ke kan al'umma da suka fi shiga, tare da masu iya daidai, tattalin kawo sararin jirgin saman, tattalin cika abinci da tattalin kudin ruwa. Hanyoyin ya yi nasara da tattalin "kawo sararin jirgin saman - cika abinci - kudin ruwa", an yi hanyoyin da zai iya daidai, tattalin da za'a da lafiy
Engineering
Akwụkwọ Nri-ọnụ Na Nri-ekpere Etiti Site Fuzzy-PID Control maka Ihe Nrite Onye Ịkwalite Akụ na MPPT
Anci​Na proposal yana nuna aiki mai tattalin kasa na gida da zafi a cikin teknologi mai kontrol mai zurfi, da yake maimaita masu aiki da al'amuran mutane da ke juyin wurare da ma'aikata masu sauki. Kafin aikinsa yana cikin sistema mai kontrol mai zurfi da take a kan ATmega16 microprocessor. Wannan sistema yana yi Maximum Power Point Tracking (MPPT) don kasa da zafi, da kuma amfani da alhakin da ya haɗa PID da fuzzy control don iya shirya da al'adu tsari ga battery. Saboda haka, yana ƙara tsari t
Engineering
Kọ̀-ẹ̀kọ̀ Soluṣọn Ẹ̀ka-Awọn Arẹ̀ Ọ̀kan: Buck-Boost Converter & Smart Charging Jẹ́ Ẹ̀kọ̀ Fún Ìpínlé Síṣe
Abstrak​Solusi ini mengusulkan sistem pembangkit listrik hibrid angin-surya berdaya tinggi yang inovatif. Menangani kekurangan inti dalam teknologi yang ada seperti efisiensi penggunaan energi rendah, umur baterai pendek, dan stabilitas sistem buruk, sistem ini menggunakan konverter DC/DC buck-boost sepenuhnya digital, teknologi paralel interleave, dan algoritma pengisian tiga tahap cerdas. Ini memungkinkan pelacakan titik daya maksimum (MPPT) pada rentang kecepatan angin dan radiasi surya yang
Engineering
Sistema ɗin Tsohon Karamin Hawa da Karamin Rana na Gaba: Wani Bayanin Inganci na Kirkiro wanda Yake Daidai Don Iyakokin Mai Tsarki
Magana da Hanyar1.1 Dangantaka na Tattalin Kashi da TuranciTattalin kashi da turanci na PV ko tattalin kashi da hawa na musamman suna da dangantaka. Tattalin kashi da PV yana jin dadin da ya shafi gurbin ranar da kuma harsuna, wanda tattalin kashi da hawa ke amfani da kayan hawa mai yawa, wanda ke samu karfin da ya shafi da aiki. Don haka don in ba da aiki mai tsawo, an bukata sabon bayanai masu kyau don inganta da zama. Amma, batari da take yi aiki da dace-dace suna da kyau a matsayin cikakken
Aika tambaya
Kwamfuta
Samun IEE Business Application
Yi amfani da IEE-Business app don samun abubuwan aikin, samun halayyin, haɗi da malamai, kuma kai tsauraran takaiddun kasoshin duka lokaci, duka wurin—dole bai karfin takamaltar hulɗin ku na alintakargida da kasuwanci.