1. Ágæða
1.1 Ekki nógu gott áhvarf við tveggja stefnu straum
Tveggja stefnu straumur aukar óstöðugleika í spennu og yfirbærum hættu, sem er til trúa fyrir umræður og netþjóns heildar. Aukin áhvarfað skipulag er nauðsynlegt.
Heimilisleg 10 kV dreifitransformatorar, sem eru skipulögðir fyrir einstefnu straum, hafa erfitt við að taka tillit til dreifigenerations samþátta í mikrogrísum.
Aukin transformator skipulag auka tveggja stefnu strauma áhvarf, sem tryggir stöðugt straumgildi og lengri tækjalíf.
1.2 Ágæða við straumgæðakostnaðar
Mikrogrísur standa framandi vegna brotinna endurnýjanlegra orka og harmoníska órennslu af straumteknísku, sem dregur út á spenna/tíðni stöðugleika.
Flókið straumumhverfi hræddar transformator tap og staðbundið ofarhit, sem leiðir til yfirborðs eldunar og villutökur.
Framfarandi straumgæðakostnaðar lagning minnkar transformator tap og villutökur, sem tryggir öruggari mikrogrísur.
1.3 Dæmalaust samskipti & Stjórnunarsamstarf
Ábendingar 10 kV transformatorar hafa ekki örugg samskiptargögn fyrir mikrogrísu orkustýringarkerfi (EMS) samþáttu.
Takmarkað samskipti hættir fleksibla sendingu og bestu mikrogrísu vinnumat.
Snjallar transformator uppfærslu með IoT-gerðum samskiptaprotokoll (til dæmis, IEC 61850) eru mikilvægar fyrir stjórnun á gríða endanum.
1.4 Ekki nógu góð verndarstillingar
Heimilisleg verndar skipulag geta ekki tekið tillit til breytinga á villutökastefnu vegna dreifiorkur (DER).
Tveggja stefnu straumur flókkar á yfirstraum/jörðavillutökustýrslu samstarf, sem aukar hættu að misvirðingum.
Stefnu yfirstraumspárir og synchrophasor-based reiknirit eru nauðsynleg fyrir villutökastilliti í sameiningar gríðum.
2. Vizman Straumorkulösningar
2.1 Almennt kjarnaskipulag auka
Stutt 11-66 kV spennustigi, tvífrekvencia vinnumat (50/60 Hz), og 3-phases 4-wire (TN-C/TN-S)/5-wire (IT system) skipulag.
IEC 61850-7-420-samþátta viðmælir með UL 1741 SA/CE staðfesting tryggja almennt mikrogrísu samþátta.
2. 2 Auka umhverfisþol
IP65-staðfest skemmtun með -50°C til +55°C vinnumat, staðfest eftir IEC 60068-3 fyrir jarðskjálftazónu 4 (8 Richter scale).
Rostfjólublá rafmagnsskemmtun með epoxi lausnir fullnægja ISO 9227 salt spray staðlar fyrir kyst/indústriu notkun.
2.3 Staðbundið snjall stýring
Samþátta DNP3, Modbus, og IEC 60870-5-104 fyrir sömlaus EMS/SCADA samþátta.
AWS/Azure-samþátta með API-dreifðum viðmælum fyrir Schneider EcoStruxure og Siemens Spectrum Power.
2.4 Orku geymslu & Stjórnarráðstafanir samþátta
Plug-and-play viðmælir fyrir LFP, flow batteries, og vetnis geymslu, samþátta með NFPA 855/EU Battery Regulation.
AI-gjöld orkustýringarkerfi (EMS) auka ToU/negative pricing strategies fyrir EU/Australian markaði.
2.5 Reliability Certification & Compliance-Oriented Design
Weitzmann Power Solutions strictly comply with technical standards formulated by international standardization bodies, including:
International Electrotechnical Commission (IEC) and Institute of Electrical and Electronics Engineers (IEEE).
Seamless Diesel Generator Transfer System:
Integrated with IEC 61439-compliant automatic transfer switch (ATS) and dual-bus synchronization controller, achieving <16ms transfer latency (per IEEE 1547 Class IV requirements) for uninterrupted power supply.
Embedded VERRA VCS/Gold Standard-certified emission monitoring module with IEC 62305-1-compliant surge protection, enabling real-time carbon credit generation and blockchain-based trading via ISO 14064-2-aligned reporting protocols.
2.6 Project International Standards & Certifications
Complies with electromagnetic compatibility (EMC) standards EN 55032 (CE) and FCC Part 15, while meeting environmental requirements of RoHS (EU) and REACH (PFAS-free compliance), effectively reducing electromagnetic interference and environmental pollution.
Weitzmann Power Solutions comply with electrical safety standards IEC 60076 and IEEE C57.12.00, ensuring engineered safety in product design and manufacturing processes, with effective prevention of electrical faults and personnel injuries.
Certified to flame retardancy standards UL 94 V-0 (USA) and EN 45545 (EU), while meeting energy efficiency requirements of DOE 2016 (USA) and EU Tier 3, ensuring safe operation and high-efficiency performance of electrical equipment.
3. Náðar niðurstöður
3.1 Auka straumskynja öruggleika
3.2 Auka straumgæði
Þrú samþátta straumgæða stýringar virkni, harmonískur efni í mikrogrísum er strikt stýrt innan þjóðarstaðla takmarkanir, sem efstur munni skemmu á rafmagnstæki og straumkerfum vegna harmonískar órennslu.
Framfarandi spennuflóð dæmilaust teknologi tryggir stöðug spenna hjá notanda, sem minnkar tæki villutökur og straumgæða atriði vegna spennuflóða.
Auka straumgæði munni mjög skemmu á rafmagnstæki vegna straumgæða atriða, sem auka tækilíf, bæti efni, og býður hágæða straum notendum.
Auka straumgæði munni tæki villutökur og viðhaldskostnað vegna straumgæða atriða, sem bæti fjárhagslega kostnaðar og þjónustu gæða fyrir straumskynjar.
3.3 Auka vinnumatsefni
Intelligent system auto-adjusts tap changers & reactive compensation
Reduces redundant power flow 15-20%
Real-time voltage regulation slashes transformer losses
Improves energy efficiency by 25%+
Smart grid coordination cuts maintenance costs
Ensures long-term microgrid viability
Boosts clean energy integration rate
Achieves sustainable O&M model
3.4 Auka kerfisþróun
The upgraded 10kV distribution transformers enable rapid response to microgrid power fluctuations, efficiently accommodating distributed power sources. This ensures optimal energy utilization and complementary energy synergies.
Through optimized transformer design, flexible load regulation is achieved, effectively balancing supply-demand relationships in microgrids. This enhances operational flexibility and renewable energy accommodation capacity.
The upgraded 10kV distribution transformers drive widespread application of clean energy, significantly improving microgrids' renewable energy accommodation capacity. This lays the foundation for future energy infrastructure transformation.
With capabilities including rapid power fluctuation response, efficient distributed power integration, and flexible load regulation, the upgraded 10kV transformers substantially improve microgrid operational flexibility.
4. Framtíðar trendar
4.1 Intelligent & Digital Convergence
Advance transformer recycling/reuse to drive sustainability, minimize waste, and forge collaborative green ecosystems.
4.2 Highly Adapted to New-Type Power Systems
4.3 Development of Green and Environment - friendly Products
Future transformers will employ eco-friendly insulation materials and energy-efficient manufacturing to reduce both operational energy consumption and ecological footprint.
4.4 Integrated Function and Modular Design
10kV transformers will evolve into multifunctional modular units incorporating power quality management, protection, communication, and control capabilities to address micro-grid demands.
streamlines installation, maintenance, and upgrades while enhancing product versatility/interchangeability, enabling rapid field component replacement to cut costs and boost system efficiency.