# 🏭 DatovĂĄ centra ## Tier klasifikace (TIA-942 / Uptime Institute) | Tier | Dostupnost | Downtime / rok | Redundance | |------|-----------|----------------|------------| | **Tier I** | 99.671 % | 28.8 h | N — bez redundance | | **Tier II** | 99.741 % | 22.7 h | N+1 — redundantnĂ­ komponenty | | **Tier III** | 99.982 % | 1.6 h | N+1 — současně udrĆŸovatelnĂ© | | **Tier IV** | 99.995 % | 26.3 min | 2N+1 — fault tolerant | ## KlíčovĂ© subsystĂ©my | SystĂ©m | Popis | |--------|-------| | **Power** | UPS, generĂĄtory (diesel), ATS, PDU, redundantnĂ­ pƙívody (A/B feed) | | **Cooling** | CRAC/CRAH, chilled water, free cooling, containment (hot/cold aisle) | | **FyzickĂĄ bezpečnost** | KamerovĂœ systĂ©m, biometric access, mantrap, bezpečnostnĂ­ zĂĄmky rackĆŻ | | **Cabling** | Structured cabling (Cat6A/7/8, OM3/OM4 single-mode fiber), patch panely | | **Fire suppression** | Poplach, inertnĂ­ plyny (Novec, FM-200), VESDA (very early smoke detection) | | **Monitoring** | DCIM (Data Center Infrastructure Management), SNMP, BMS (Building Management System) | ## Aisle containment ``` ┌────────────────────────────────────┐ │ Rack Row │ │ ┌──┐ ┌──┐ ┌──┐ ┌──┐ ┌──┐ ┌──┐ │ Cold │ │ │ │ │ │ │ │ │ │ │ │ │ │ Cold Aisle <──│ └──┘ └──┘ └──┘ └──┘ └──┘ └──┘ ──> Aisle │ ┌──┐ ┌──┐ ┌──┐ ┌──┐ ┌──┐ ┌──┐ │ Hot │ │ │ │ │ │ │ │ │ │ │ │ │ │ Hot Aisle ──>│ └──┘ └──┘ └──┘ └──┘ └──┘ └──┘ <── Aisle └────────────────────────────────────┘ ``` ## Environmental tƙídy (ASHRAE TC 9.9) ASHRAE Technical Committee 9.9 definuje teplotnĂ­ a vlhkostnĂ­ obĂĄlky pro IT zaƙízenĂ­ v DC. | Tƙída | Teplota (doporučeno) | Teplota (allowable) | PouĆŸitĂ­ | |-------|---------------------|---------------------|---------| | **A1** | 18-27 °C | 15-32 °C | Enterprise DC, pƙísnĂĄ kontrola | | **A2** | 18-27 °C | 10-35 °C | BÄ›ĆŸnĂ© DC | | **A3** | 18-27 °C | 5-40 °C | VolnějĆĄĂ­ prostƙedĂ­ | | **A4** | 18-27 °C | 5-45 °C | MaximĂĄlnĂ­ Ășspora chlazenĂ­ | | **H1** | 18-22 °C | 5-25 °C | High-density air-cooled (AI/ML) | - 5. edice (2021) pƙidala tƙídu H1 pro high-density a rozơíƙila liquid cooling W-tƙídy (W17, W27, W32, W40, W45, W+) - 2024: novĂ© S-tƙídy pro Technology Cooling System (TCS) chlazenĂ­ kapalinou - Vlhkost: doporučeno −9 °C DP aĆŸ 70 % RH (pƙi nĂ­zkĂœch polutantech); max 50 % RH pƙi vysokĂ© korozivitě ## Power ### Power chain ``` Grid ──> Transformer ──> UPS ──> PDU ──> Rack PDU ──> Server PSU │ ├──> Generator (ATS pƙepĂ­nĂĄ pƙi vĂœpadku) └──> STS/ATS (Static Transfer Switch) ``` A/B feed topology: ``` Grid A ──> UPS A ──> PDU A1 ──> Rack PDU A ──> PSU A (server) │ Grid B ──> UPS B ──> PDU B1 ──> Rack PDU B ──> PSU B (server) ``` KaĆŸdĂœ server mĂĄ 2 PSU — kaĆŸdĂĄ napĂĄjena z jinĂ© větve (A/B). Pƙi vĂœpadku jednĂ© větve server pokračuje bez pƙeruĆĄenĂ­. ### UPS typy | Klasifikace | IEC 62040-3 | Popis | PƙepĂ­nĂĄnĂ­ | Use case | |-----------|-------------|-------|-----------|----------| | **VFD** (Voltage & Frequency Dependent) | Passive standby | UPS v bypassu, pƙi vĂœpadku pƙepne na invertor | 4-10 ms | SOHO, edge | | **VI** (Voltage Independent) | Line-interactive | Regulace napětĂ­ pƙes autotransformĂĄtor | 2-4 ms | MenĆĄĂ­ racky, office | | **VFI** (Voltage & Frequency Independent) | Double-conversion | AC → DC → AC, plnĂĄ izolace, ĆŸĂĄdnĂœ pƙepĂ­nacĂ­ čas | 0 ms | Enterprise DC, Tier III/IV | Pro DC je standard **VFI (double-conversion)** — online UPS, nulovĂœ pƙepĂ­nacĂ­ čas, plnĂĄ izolace od sĂ­tě. ### Battery technologies | Typ | Hustota (Wh/L) | Ćœivotnost (cykly) | Ćœivotnost (roky) | Teplota | Cena/kWh | PoznĂĄmka | |-----|---------------|-------------------|------------------|---------|----------|----------| | **VRLA** (AGM/Gel) | 50-80 | 200-500 | 3-5 | 20-25 °C | ~$150-200 | LevnĂ©, velkĂ©, tÄ›ĆŸkĂ©, citlivĂ© na teplotu | | **Li-ion (LFP)** | 200-350 | 3000-5000 | 10-15 | 0-40 °C | ~$300-500 | MalĂ©, lehkĂ©, dlouhĂĄ ĆŸivotnost, BMS nutnĂœ | | **Li-ion (NMC)** | 250-400 | 1000-2000 | 8-12 | 0-40 °C | ~$250-400 | VyĆĄĆĄĂ­ hustota, riziko thermal runaway | | **NiCd** | 80-150 | 1000-2000 | 10-15 | −20-50 °C | ~$400-600 | ExtrĂ©mnĂ­ teploty, paměƄovĂœ efekt | | **Flow battery** (V/Zn/Br) | 20-40 | 10,000+ | 20+ | 10-35 °C | ~$500-800 | NeomezenĂ© cykly, velkĂ©, dlouhodobĂ© zĂĄlohovĂĄnĂ­ | Li-ion (LFP) se stĂĄvĂĄ standardem pro novĂ© DC dĂ­ky delĆĄĂ­ ĆŸivotnosti, menĆĄĂ­mu pĆŻdorysu a lepĆĄĂ­mu chovĂĄnĂ­ pƙi vysokĂœch teplotĂĄch. ### Generator sizing | Varianta | Velikost | Fuel | Start time | Run time | Use case | |----------|---------|------|-----------|----------|----------| | **Diesel** | 500-2500 kVA | Diesel (Nafta) | 10-30 s | 24-72 h (dle nĂĄdrĆŸe) | Standard pro enterprise DC | | **Nat. gas** | 200-1500 kVA | ZemnĂ­ plyn | 10-30 s | Neomezeno (plynovod) | MĂ©ně častĂ©, niĆŸĆĄĂ­ emise | | **CHP** (cogeneration) | 500-2000 kVA | ZemnĂ­ plyn | 5-15 min | Neomezeno | Kombinace power + cooling (absorption chiller) | Sizing: Generator by měl pokrĂœt 100 % IT loadu + 100 % cooling loadu (vč. chillerĆŻ) — typicky 1.3-1.8× IT load. DieselovĂĄ nĂĄdrĆŸ min. na 24 h provozu, bÄ›ĆŸně 48-72 h. DennĂ­ spotƙeba ~0.3-0.4 L/kWh. ### ATS vs STS | Vlastnost | ATS (Automatic Transfer Switch) | STS (Static Transfer Switch) | |-----------|-------------------------------|-----------------------------| | **PƙepĂ­nĂĄnĂ­** | 4-10 ms (mechanickĂ© relĂ©) | < 4 ms (tyristorovĂ©) | | **Ćœivotnost** | ~10,000 pƙepnutĂ­ | NeomezenĂĄ (solid-state) | | **Cena** | NĂ­zkĂĄ | VysokĂĄ (~3-5× ATS) | | **Use case** | GenerĂĄtor → UPS feed | Mezi dvěma UPS vĂœstupy | ### PDU typy | Typ | Popis | Use case | |-----|-------|----------| | **Basic** | PasivnĂ­ rozbočenĂ­ (no monitoring) | Edge, office | | **Metered** | MěƙenĂ­ proudu na Ășrovni PDU | Standard DC | | **Monitored** | MěƙenĂ­ per outlet, SNMP, web GUI | Enterprise DC | | **Switched** | On/off per outlet, remote reboot | Enterprise DC, colo | | **High-density** | 3-phase, 60-100 A, C19 outlets | GPU/HPC/AI racky | ### Power calculation ``` Total Power = ÎŁ(P_server + P_storage + P_network + P_cooling + P_losses) P_server = P_idle + (P_max - P_idle) × Utilization% P_cooling = P_IT / PUE Pƙíklad: 100 serverĆŻ × 500 W (avg) = 50 kW IT load PUE = 1.5 → celkem 75 kW UPS + generĂĄtor → dimenzovĂĄno na 75 kW × 1.2 (safety factor) = 90 kW ``` ### PUE (Power Usage Effectiveness) ``` PUE = Total Facility Energy / IT Equipment Energy ``` | PUE | Efektivita | Typ | |-----|-----------|-----| | 1.0-1.1 | VynikajĂ­cĂ­ | Hyperscale (Google, Meta) | | 1.1-1.3 | Velmi dobrĂœ | ModernĂ­ DC | | 1.3-1.6 | DobrĂœ / prĆŻměr | Enterprise DC | | 1.6-2.0 | PodprĆŻměr | StarĆĄĂ­ DC | | >2.0 | Ć patnĂœ | Legacy | PUE se měƙí na Ășrovni celĂ©ho DC, nikoliv per rack. Zahrnuje: UPS ztrĂĄty, chlazenĂ­, osvětlenĂ­, ztrĂĄty v rozvodu. Nezahrnuje: vĂœrobu paliva (well-to-tank), embodied carbon. CĂ­l pro modernĂ­ DC: PUE < 1.2. ### WUE a CUE | Metrika | Popis | Vzorec | CĂ­l | |---------|-------|--------|-----| | **WUE** (Water Usage Effectiveness) | Spotƙeba vody na IT energii | WUE = Annual Water Usage / IT Energy (L/kWh) | < 0.5 L/kWh | | **CUE** (Carbon Usage Effectiveness) | CO₂ emise na IT energii | CUE = Total CO₂ / IT Energy (kg CO₂/kWh) | < 0.2 kg CO₂/kWh | WUE je kritickĂœ v suchĂœch oblastech (jihozĂĄpad USA, AustrĂĄlie, StƙednĂ­ vĂœchod). AdiabatickĂ© chlazenĂ­ spotƙebuje vĂœrazně vĂ­ce vody neĆŸ chlazenĂ­ s uzavƙenĂœm okruhem. ### 3-phase vs Single-phase | Vlastnost | Single-phase (230 V) | 3-phase (400 V) | |-----------|---------------------|-----------------| | **NapětĂ­** | 230 V (L-N) | 230/400 V (L-N/L-L) | | **VĂœkon per feed** | ~7.4 kW (32 A) | ~22 kW (32 A, 3-f) | | **Efektivita** | NiĆŸĆĄĂ­ (vĂ­ce ztrĂĄt) | VyĆĄĆĄĂ­ (niĆŸĆĄĂ­ proud) | | **Use case** | MenĆĄĂ­ racky, office | Standard v DC, high-density | | **PDU** | Single-phase (C13/C19) | 3-phase (C13/C19, 3-f monitoring) | | **BalancovĂĄnĂ­** | AutomatickĂ© | NutnĂ© balancovat fĂĄze (L1/L2/L3) | ### Rack power density | Kat. | Typ | kW/rack | NapĂĄjenĂ­ | Cooling | |------|-----|---------|----------|---------| | NĂ­zkĂĄ | Office, storage | 1-3 kW | 1-f, 16 A | Air (free cooling) | | StƙednĂ­ | Standard compute | 5-10 kW | 3-f, 32 A | Air (CRAC/CRAH) | | VysokĂĄ | GPU, HPC | 15-30 kW | 3-f, 60 A | Air + liquid assist | | Ultra | AI/ML clusters | 40-100+ kW | 3-f, 100+ A | Direct-to-chip / immersion | ### Rack PDU konektory | Konektor | Max proud | Typ zaƙízenĂ­ | |----------|-----------|-------------| | **C13** | 10 A (250 V) | Servery, switche, 1U | | **C19** | 16 A (250 V) | Servery s vyĆĄĆĄĂ­m vĂœkonem, UPS | | **IEC 60309** (3-f) | 16-125 A | Rack PDU vstupy | | **NEMA L6-30** | 30 A (250 V) | US spec | ## Cooling ### ChlazenĂ­ — pƙehled technologiĂ­ | Technologie | Typ | VĂœkon (kW/rack) | PUE typickĂœ | CAPEX | Use case | |-----------|------|----------------|-------------|-------|----------| | **Free air cooling** | Air | < 5 | 1.05-1.15 | NĂ­zkĂœ | Klimaticky vhodnĂ© lokality | | **CRAC (DX)** | Air | 5-10 | 1.4-1.8 | StƙednĂ­ | MenĆĄĂ­ DC, retrofit | | **CRAH (CW)** | Air | 5-15 | 1.2-1.5 | VysokĂœ | Enterprise DC | | **In-row cooling** | Air | 10-25 | 1.2-1.4 | VysokĂœ | High-density racky | | **Rear-door HX** | Hybrid | 15-30 | 1.1-1.3 | StƙednĂ­ | Retrofity, GPU | | **Direct-to-chip** | Liquid | 40-100+ | 1.05-1.15 | VysokĂœ | AI/ML, HPC | | **Immersion (single-phase)** | Liquid | 50-100+ | 1.03-1.10 | VysokĂœ | Bitcoin, hyperscale | | **Immersion (two-phase)** | Liquid | 100-200+ | 1.03-1.08 | Velmi vysokĂœ | Extreme density | ### Chilled water vs Direct Expansion (DX) | Vlastnost | Chilled water (CW) | Direct Expansion (DX) | |-----------|-------------------|----------------------| | **Medium** | Voda + glycol | Freon (R134a, R410A, R454B) | | **CRAC/CRAH** | CRAH (Coolant-based) | CRAC (refrigerant compressor) | | **Efektivita** | VyĆĄĆĄĂ­ (COP 5-7) | NiĆŸĆĄĂ­ (COP 2-4) | | **Teplota vody** | 7-12 °C (standard), 18-22 °C (high-temp) | −5-10 °C (evaporator) | | **Komplexita** | VyĆĄĆĄĂ­ (chillers, pumps, pipes, cooling tower) | JednoduĆĄĆĄĂ­ | | **ÚdrĆŸba** | VyĆĄĆĄĂ­ (vodnĂ­ Ășprava, prevence legionely) | NiĆŸĆĄĂ­ | | **Use case** | VelkĂ© DC > 500 kW, enterprise | MenĆĄĂ­ DC, edge, retrofit | ### Containment typy | Typ | Popis | Efektivita | Implementace | |-----|-------|-----------|-------------| | **Cold aisle containment (CAC)** | UzavƙenĂĄ studenĂĄ ulička, teplĂœ vzduch se vracĂ­ do mĂ­stnosti | VysokĂĄ | Dveƙe na koncĂ­ch uličky, stropnĂ­ panely | | **Hot aisle containment (HAC)** | UzavƙenĂĄ teplĂĄ ulička, teplĂœ vzduch jde pƙímo do zpĂĄtečky | VyĆĄĆĄĂ­ | Dveƙe + stropnĂ­ panely, zpĂĄtečka do CRAH | | **Chimney / rear duct** | KaĆŸdĂœ rack mĂĄ vlastnĂ­ vĂœfukovĂœ komĂ­n do stropu | NejvyĆĄĆĄĂ­ | SamostatnĂ© ducty per rack, nĂĄkladnĂ© | | **Open aisle** | Bez containmentu, studenĂœ a teplĂœ vzduch se mĂ­sĂ­ | NĂ­zkĂĄ | Legacy, levnĂ© | DoporučenĂ­: CAC/HAC pƙi hustotě > 5 kW/rack. HAC je o 5-10 % efektivnějĆĄĂ­ neĆŸ CAC (teplĂœ vzduch je pƙímo odvĂĄděn, nemĂ­sĂ­ se s mĂ­stnostĂ­). ### CFD modeling Computational Fluid Dynamics (CFD) simuluje prouděnĂ­ vzduchu v DC pƙed fyzickou implementacĂ­: - Identifikace hot spots (recirkulace teplĂ©ho vzduchu do studenĂ© uličky) - Optimalizace pozice perforovanĂœch dlaĆŸdic - NĂĄvrh bypass airflow (kabelovĂ© otvory, nezakrytĂ© pozice) - Simulace vĂœpadku CRAH jednotky (what-if scĂ©náƙe) - NĂĄstroje: Future Facilities (6Sigma DC), Ansys Fluent, OpenFOAM ### Free cooling - **Air-side** — nasĂĄvĂĄnĂ­ venkovnĂ­ho vzduchu pƙi vhodnĂ© teplotě (filtrace, humidifikace) - **Water-side** — vyuĆŸitĂ­ chladnĂ© vody z venkovnĂ­ch chillerĆŻ (strainer cycle) bez kompresoru - **KlimatickĂ© pĂĄsmo** — free cooling vyuĆŸitelnĂœ ~2000-8000 hodin/rok podle lokality - SkandinĂĄvie: 7000-8000 h/rok - StƙednĂ­ Evropa: 4000-6000 h/rok - JiĆŸnĂ­ Evropa: 2000-4000 h/rok - **Hybrid** — kombinace free cooling + mechanical cooling (nejbÄ›ĆŸnějĆĄĂ­) - **Economizer types**: Class A1 (dry cooler), Class A2 (evaporative), Class B (air-side) ### Liquid cooling detail | Typ | Teplota vstupu | Kapacita (kW/rack) | Medium | Instalace | |-----|---------------|-------------------|--------|-----------| | **Cold plate (D2C)** | 20-45 °C | 40-100+ | Voda, propylenglykol | CDU per rack nebo per row | | **Rear-door HX** | 18-27 °C | 15-30 | Voda | PasivnĂ­, bez Ășpravy serveru | | **Immersion (1-f)** | 35-50 °C | 50-100+ | DielektrickĂœ olej | NĂĄdrĆŸ, CDU, heat exchanger | | **Immersion (2-f)** | 25-35 °C | 100-200+ | Dielektrikum (var) | NĂĄdrĆŸ + kondenzĂĄtor | **CDU (Coolant Distribution Unit)**: - ZajiĆĄĆ„uje teplotu a tlak chladiva do rackĆŻ - PrimĂĄrnĂ­ okruh (facility water) + sekundĂĄrnĂ­ okruh (rack coolant) - DimenzovĂĄnĂ­: 1 CDU na 4-8 rackĆŻ (40-100 kW per CDU) - Redundance: N+1 CDU, dual coolant loops **Water quality requirements**: - Vodivost: < 1 ”S/cm (demineralizovanĂĄ voda) - pH: 6.5-8.0 - Částice: < 50 ”m (filtrace) - Prevence koroze: inhibitory, glykol (10-30 %) - Prevence biologickĂ©ho rĆŻstu: UV, biocidy ### Adiabatic cooling VyuĆŸitĂ­ odpaƙovĂĄnĂ­ vody pro ochlazenĂ­ vzduchu: - **Direct adiabatic** — vzduch prochĂĄzĂ­ vodou (media pad), ochlazuje se a zvlhčuje - **Indirect adiabatic** — vzduch se ochlazuje pƙes heat exchanger bez pƙímĂ©ho kontaktu s vodou - **Spotƙeba vody**: 3-5 L/kWh (direct), 1-2 L/kWh (indirect) - Účinnost zĂĄvisĂ­ na vlhkosti vzduchu — v suchĂ©m klimatu efektivnějĆĄĂ­ ## KabelĂĄĆŸ a structured cabling ### TIA-942 cabling hierarchy ``` Entrance Room (ER) │ ├── Backbone cabling (fiber single-mode / multi-mode) │ │ │ ├── Main Distribution Area (MDA) │ │ │ │ │ ├── Horizontal Distribution Area (HDA) │ │ │ │ │ │ │ └── Equipment Distribution Area (EDA) → rack │ │ │ │ │ └── Intermediate Distribution Area (IDA) — volitelnĂœ │ │ │ └── Telecommunication Room (TR) — pro office │ └── Backbone cabling (fiber / copper) ``` ### Copper cabling categories | Kategorie | Frekvence | Rychlost | DĂ©lka | Konektor | Use case | |-----------|----------|----------|-------|----------|----------| | **Cat5e** | 100 MHz | 1 GbE | 100 m | RJ45 | Legacy, voice | | **Cat6** | 250 MHz | 1 GbE (10 GbE do 55 m) | 100 m (10 GbE: 55 m) | RJ45 | BÄ›ĆŸnĂ© DC, enterprise | | **Cat6A** | 500 MHz | 10 GbE | 100 m | RJ45 | Standard pro novĂ© DC | | **Cat7** (GG45) | 600 MHz | 10 GbE | 100 m | GG45/TERA | Niche, nahrazen Cat6A/8 | | **Cat8.1** | 2000 MHz | 25/40 GbE | 30 m | RJ45 | Top-of-rack, storage | | **Cat8.2** | 2000 MHz | 25/40 GbE | 30 m | GG45/TERA | Top-of-rack, storage | V DC se standardně pouĆŸĂ­vĂĄ **Cat6A** (10 GbE do 100 m) pro horizontĂĄlnĂ­ rozvody. Cat8 pouze pro propojky v rĂĄmci racku (do 30 m). ### Fiber optic typy | Typ | Core | Modal BW | Rychlost | Max dĂ©lka | Use case | |-----|------|----------|----------|-----------|----------| | **OS1** (SM) | 9 ”m | — | 100 GbE - 800 GbE | 10-80 km | Backbone, campus, WAN | | **OS2** (SM) | 9 ”m | — | 100 GbE - 800 GbE | 2-80 km (CWDM/DWDM) | Backbone, DWDM | | **OM1** (MM) | 62.5 ”m | 200 MHz·km | 1 GbE | 275 m | Legacy | | **OM2** (MM) | 50 ”m | 500 MHz·km | 10 GbE | 82 m | Legacy | | **OM3** (MM) | 50 ”m | 2000 MHz·km | 10 GbE do 300 m, 100 GbE do 100 m | 300 m (10G) | Standard DC, VCSEL | | **OM4** (MM) | 50 ”m | 4700 MHz·km | 100 GbE do 150 m, 400 GbE do 100 m | 550 m (10G) | VĂœkonnĂœ standard DC | | **OM5** (MM) | 50 ”m | 4700+ MHz·km | 200/400 GbE SWDM | 150 m (100G) | Emerging, SWDM | Pro novĂ© DC: **OM4** jako standard pro multi-mode, **OS2** pro single-mode backbone (LR, DWDM). OM5 nenĂ­ ĆĄiroce nasazen — OM4 + paralelnĂ­ optika (SR4) je bÄ›ĆŸnějĆĄĂ­. ### Connector types | Konektor | Typ | Insertion loss | Počet vlĂĄken | Use case | |----------|-----|---------------|-------------|----------| | **LC** | Duplex | < 0.15 dB | 2 | Standard pro SFP/SFP+/QSFP | | **SC** | Duplex | < 0.2 dB | 2 | StarĆĄĂ­ instalace, patch panely | | **MPO/MTP** (12-f) | Multi-fiber | < 0.35 dB | 12/24 | 40/100/400 GbE paralelnĂ­ | | **MPO/MTP** (24-f) | Multi-fiber | < 0.5 dB | 24 | 400 GbE (SR4.2, DR4) | | **SN** | Duplex (mini) | < 0.15 dB | 2 | High-density (QSFP-DD, OSFP) | | **CS** | Duplex (mini) | < 0.15 dB | 2 | High-density (QSFP-DD, OSFP) | ### MPO/MTP polarity | Metoda | Popis | Use case | |--------|-------|----------| | **Type A** (Straight) | VlĂĄkno 1→1, 2→2, ... | Duplex aplikace s cross-over na obou koncĂ­ch | | **Type B** (Crossed) | VlĂĄkno 1→12, 2→11, ... | ParalelnĂ­ optika (SR4, SR8) — standard | | **Type C** (Pairs crossed) | PĂĄry 1-2→2-1, 3-4→4-3 | 40 GbE SR4 (4×10G) | ### Breakout kazety ``` MPO (12-f) ──> Breakout kazeta ──> 6× LC duplex (12 vlĂĄken = 6× duplex) MPO (24-f) ──> Breakout kazeta ──> 12× LC duplex (24 vlĂĄken = 12× duplex) ``` Use case: PropojenĂ­ MPO portu (switch) s LC porty (servery, storage). Kazety jsou v patch panelu, ne v aktivnĂ­ cestě. ### Copper vs fiber decision | KritĂ©rium | Copper (Cat6A/8) | Fiber (OM4/OS2) | |-----------|-----------------|-----------------| | **Dosah** | 30-100 m | 100 m - 80 km | | **Rychlost** | 1-40 GbE | 1-800 GbE | | **Cena transceiveru** | NiĆŸĆĄĂ­ (RJ45) | VyĆĄĆĄĂ­ (SFP+/QSFP) | | **Cena kabelu** | NiĆŸĆĄĂ­ | VyĆĄĆĄĂ­ (patch cord) | | **Spotƙeba portu** | 2-5 W (25 GbE) | 1-3 W (25 GbE SR) | | **ElektromagnetickĂ© ruĆĄenĂ­** | CitlivĂœ | ImunnĂ­ | | **VĂĄha (100 m)** | ~3-4 kg | ~0.5-1 kg | | **DoporučenĂ­** | Do 30 m, server→ToR switch | Backbone, storage, >30 m | ### Cabling best practices - **Horizontal cabling**: max 90 m permanent link + 10 m patch cords (TIA-942) - **Fiber management**: slack spools, cable managers, minimĂĄlnĂ­ poloměr ohybu 10× prĆŻměr kabelu - **Color coding**: OS1/OS2 (yellow), OM3 (aqua), OM4 (magenta/purple), OM5 (lime green) - **Labeling**: oba konce, patch panely, faceplates — standard ANSI/TIA-606-B - **Overhead vs underfloor**: overhead (ladder rack) je preferovĂĄn v DC (lepĆĄĂ­ airflow, jednoduĆĄĆĄĂ­ změny) - **MPO cassettes**: plĂĄnovat 15-20 % rezervu vlĂĄken pro budoucĂ­ potƙeby ## FyzickĂĄ bezpečnost ### Multi-layer security model (defense in depth) ``` Layer 1: Perimeter (plot, brĂĄna, strĂĄĆŸe) Layer 2: Building (zdi, zĂĄmky, CCTV, čtečky karet) Layer 3: DC hall (biometrie, mantrap, CCTV, detekce pohybu) Layer 4: Rack / Cage (elektronickĂ© zĂĄmky, senzory) Layer 5: Data (ĆĄifrovĂĄnĂ­, HSM, access control) ``` ### Access control | Metoda | Faktor | Úroveƈ | PoznĂĄmka | |--------|--------|--------|----------| | **RFID / proximity card** | Něco, co mĂĄte | Standard | ZĂĄkladnĂ­ pƙístup, levnĂ© | | **Smart card (PKI)** | Něco, co mĂĄte + PIN | StƙednĂ­ | CertifikĂĄt na kartě, anti-passback | | **Biometric (fingerprint)** | Něco, co jste | VysokĂĄ | RychlĂœ, hygienickĂœ (čtečky bez dotyku) | | **Biometric (palm/finger vein)** | Něco, co jste | Velmi vysokĂĄ | TÄ›ĆŸko falĆĄovatelnĂœ, bezkontaktnĂ­ | | **Biometric (iris/retina)** | Něco, co jste | NejvyĆĄĆĄĂ­ | Velmi pƙesnĂœ, pomalĂœ, drahĂœ | | **Multi-factor** | 2+ faktory | NejvyĆĄĆĄĂ­ | Karta + biometrie + PIN — Tier IV DC | ### Mantrap design ``` VnějĆĄĂ­ dveƙe ──> Mantrap (prostor) ──> VnitƙnĂ­ dveƙe │ ├── Weight sensor (anti-tailgating) ├── CCTV (obě dveƙe) ├── Intercom (nouzovĂœ vĂœchod) └── Motion detector (v mantrapu) ``` - OtevĂ­rĂĄ se vĆŸdy jen jedny dveƙe - Anti-tailgating: vĂĄhovĂœ senzor detekuje vĂ­ce osob - VĂœstup (exit) pƙes breakout button + detekce pohybu - NouzovĂœ vĂœchod: panic bar + alarm ### CCTV | Prvek | DoporučenĂ­ | |-------|-----------| | **RozliĆĄenĂ­** | Min. 1080p, ideĂĄlně 4K (6 MP+) | | **FPS** | 15-30 FPS (zĂĄznam), 30+ FPS (realtime monitoring) | | **Retence** | Min. 30 dnĂ­ (90 dnĂ­ pro audit) | | **Storage** | NVR (on-prem), cloud (AWS KVS, Azure Video Indexer) | | **AI analytics** | Detekce obličeje, ANPR (poznĂĄvacĂ­ značky), object detection | | **ZornĂ© pole** | KaĆŸdĂ© dveƙe, kaĆŸdĂĄ ulička — bez slepĂœch mĂ­st | ### Asset tracking | Technologie | Pƙesnost | Cena | Use case | |-----------|----------|------|----------| | **Barcode** | Rack-level | Velmi nĂ­zkĂĄ | ManuĂĄlnĂ­ inventura | | **RFID (passive)** | Rack-level (door sweep) | NĂ­zkĂĄ | AutomatickĂĄ detekce otevƙenĂ­ racku | | **RFID (active, UWB)** | 10-30 cm | StƙednĂ­ | Real-time tracking v reĂĄlnĂ©m čase | | **Bluetooth BLE** | 1-3 m | NĂ­zkĂĄ | OrientačnĂ­ pozice | | **GPS** | 1-10 m | StƙednĂ­ | VenkovnĂ­ tracking | ## DC layout a design ### Raised floor vs Slab | Vlastnost | Raised floor | Slab (pevnĂĄ podlaha) | |-----------|-------------|----------------------| | **Airflow** | Underfloor air distribution (zvednutĂĄ podlaha jako plĂ©num) | Overhead air, in-row cooling | | **Flexibilita** | SnadnĂ© pƙidĂĄnĂ­ perforovanĂœch dlaĆŸdic | OmezenĂ© (nutnĂ© overhead cooling) | | **Hmotnost** | Limit 500-1000 kg/mÂČ (zĂĄvisĂ­ na vĂœĆĄce) | NeomezenĂ© | | **Cena** | VyĆĄĆĄĂ­ (~$200-400/mÂČ) | NiĆŸĆĄĂ­ (~$100-200/mÂČ) | | **VĂœĆĄka** | 600-900 mm (standard), 900-1200 mm (high-density) | — | | **Trend** | KlesajĂ­cĂ­ (pƙechod na in-row/overhead cooling) | RostoucĂ­ (novĂ© DC, high-density) | ModernĂ­ high-density DC (AI/ML, GPU) se odklĂĄnějĂ­ od raised floor k slab + overhead/in-row cooling — vyĆĄĆĄĂ­ hmotnost rackĆŻ (1000-2000 kg), nemoĆŸnost dostatečnĂ©ho airflow podlahou. ### Rack layout a rozměry | Parametr | Standard | High-density | PoznĂĄmka | |----------|----------|-------------|----------| | **Rack ơíƙka** | 600 mm (19") | 600-750 mm | 750 mm pro GPU (kabelĂĄĆŸ, chlazenĂ­) | | **Rack hloubka** | 1000-1200 mm | 1200-1500 mm | GPU servery, delĆĄĂ­ kabely | | **Rack vĂœĆĄka** | 42U | 48U / 52U | VyĆĄĆĄĂ­ rack = lepĆĄĂ­ power density | | **Ulička ơíƙka (studenĂĄ)** | 1200-1500 mm | 1500-1800 mm | ServisnĂ­ pƙístup, airflow | | **Ulička ơíƙka (teplĂĄ)** | 900-1200 mm | 1200-1500 mm | UĆŸĆĄĂ­ neĆŸ studenĂĄ | | **Max zatĂ­ĆŸenĂ­ racku** | 500-800 kg | 1000-2000 kg | NutnĂ© podlahovĂ© nosnĂ­ky | ### Space planning ``` Pro Tier III DC (pƙíklad): IT prostor: 1000 mÂČ â””â”€â”€ 20 ƙad × 10 rackĆŻ = 200 rackĆŻ pƙi 42U └── 200 rackĆŻ × 5 kW avg = 1 MW IT load └── PUE 1.4 → 1.4 MW facility PodpĆŻrnĂ© prostory: └── UPS + baterie: 200 mÂČ â””â”€â”€ GenerĂĄtory: 100 mÂČ (venkovnĂ­) └── ChlazenĂ­ (chillery, cooling tower): 300 mÂČ â””â”€â”€ Kanceláƙe, sklady, loading dock: 400 mÂČ Celkem: ~2000 mÂČ (50% IT, 50% support) ``` ### Zone approach (TIA-942) | ZĂłna | Popis | Pƙístup | Security | |------|-------|---------|----------| | **Z1** (VeƙejnĂĄ) | Recepce, kanceláƙe | VolnĂœ | MinimĂĄlnĂ­ | | **Z2** (KanceláƙskĂĄ) | Administrativa, NOC | Zaměstnanci + hostĂ© | RFID | | **Z3** (DC support) | UPS, generĂĄtory, chlazenĂ­ | DC operĂĄtoƙi | RFID + biometrie | | **Z4** (DC hall) | Servery, storage, networking | DC operĂĄtoƙi + schvĂĄlenĂ­ | RFID + biometrie + mantrap | | **Z5** (Rack/cage) | KonkrĂ©tnĂ­ rack nebo cage | Pouze oprĂĄvněnĂœ personĂĄl | ElektronickĂœ zĂĄmek | ## Fire suppression ### Detekce | SystĂ©m | Typ | Doba detekce | FaleĆĄnĂ© poplachy | Use case | |--------|-----|-------------|------------------|----------| | **VESDA** (Very Early Smoke Detection) | AspiračnĂ­, laserovĂ© čidlo | < 30 s (4 stupně alarmu) | Velmi nĂ­zkĂ© | Standard pro DC | | **Spot detection** | IonizačnĂ­ / optickĂœ kouƙovĂœ detektor | 2-5 min | StƙednĂ­ | Legacy, menĆĄĂ­ DC | | **Heat detection** | TepelnĂœ detektor (teplota / rychlost nĂĄrĆŻstu) | 5-10 min | Velmi nĂ­zkĂ© | ZĂĄloha za VESDA | | **Line-type (LHD)** | LineĂĄrnĂ­ tepelnĂœ kabel | 2-5 min | NĂ­zkĂ© | Cable trays, nad stropem | VESDA je standard — aktivnĂ­ aspirace nasĂĄvĂĄ vzduch z DC, laserovĂ© čidlo detekuje částice kouƙe ve 4 ĂșrovnĂ­ch (Alert → Action → Fire 1 → Fire 2). UmoĆŸĆˆuje zĂĄsah jeĆĄtě pƙed viditelnĂœm kouƙem. ### Suppression systĂ©my | SystĂ©m | Medium | VĂœhody | NevĂœhody | Typ DC | |--------|--------|--------|----------|--------| | **Novec 1230** (FK-5-1-12) | Plyn | BezpečnĂœ pro lidi, nulovĂœ ODP, krĂĄtkĂœ atmospheric lifetime (5 dnĂ­) | VyĆĄĆĄĂ­ cena | Enterprise DC | | **FM-200** (HFC-227ea) | Plyn | RychlĂœ (10 s), ĂșčinnĂœ | VysokĂœ GWP (3220), ODP nemĂĄ | Legacy DC | | **Inergen** (IG-541) | InertnĂ­ plyn (52% N₂, 40% Ar, 8% CO₂) | Zcela bezpečnĂœ, pƙírodnĂ­ plyn | VelkĂ© mnoĆŸstvĂ­ (objem), vysokĂœ tlak | Enterprise DC | | **Argonite** (IG-55) | 50% Ar, 50% N₂ | BezpečnĂœ, pƙírodnĂ­ | VelkĂ© mnoĆŸstvĂ­, vyĆĄĆĄĂ­ tlak | Enterprise DC | | **Water mist** | Voda (jemnĂĄ mlha) | ChlazenĂ­, potlačenĂ­ kouƙe, nĂ­zkĂĄ cena | Voda v DC (riziko), jen local application | Retrofity | | **Pre-action sprinkler** | Voda | DvojĂ­ spuĆĄtěnĂ­ (detekce + sprinkler) | Riziko vody, nutnĂ© odvodněnĂ­ | Tier I-II | **Koncentrace**: Novec (4-6 % objemu), FM-200 (7-9 %), Inergen (35-50 %). Novec a Inergen jsou bezpečnĂ© pro dĂœchĂĄnĂ­ (min. 5-7 min evakuace). ### DetekčnĂ­ zĂłny ``` DC hall ──> zĂłny po ~200 mÂČ (max) │ ├── VESDA (kaĆŸdĂĄ zĂłna vlastnĂ­ aspirĂĄtor) ├── KouƙovĂ© detektory (podhled + podlaha) └── Heat detection (zĂĄloĆŸnĂ­) ``` ## DCIM (Data Center Infrastructure Management) ### Co DCIM pokrĂœvĂĄ | Oblast | Metriky | VĂœstup | |--------|---------|--------| | **Power** | Per PDU, per outlet, per rack, celkem | Capacity planning, PUE, kW/rack | | **Cooling** | Teplota, vlhkost, airflow (senzory per rack) | Hot spot mapy, airflow optimalizace | | **Asset** | Co je v kterĂ©m racku, U pozice, serial, warranty | Asset inventory, lease management | | **Network** | Port utilization, patch panel propojenĂ­ | Patch management, port tracking | | **Space** | VolnĂ© U v racku, volnĂ© racky | Capacity planning, "what-if" simulace | ### NĂĄstroje | NĂĄstroj | Typ | Platforma | Cena | PoznĂĄmka | |---------|-----|-----------|------|----------| | **Nlyte (Carrier)** | Enterprise DCIM | On-prem / Cloud | $$$ | TrĆŸnĂ­ leader, complex | | **Sunbird DCIM** | Enterprise DCIM | Cloud | $$$ | Power monitoring, asset tracking | | **Device42** | DCIM + IPAM | On-prem / Cloud | $$ | IntegrovanĂœ IPAM, CMDB | | **NetBox** | Open source DCIM | On-prem | Zdarma | IPAM, DCIM, asset tracking | | **OpenDCIM** | Open source | On-prem | Zdarma | ZĂĄkladnĂ­ DCIM, asset management | | **RackTables** | Open source | On-prem | Zdarma | JednoduchĂœ, asset + networking | | **Vendor-specific** | Dell OME, HPE OneView | On-prem | Součást hw | Pouze danĂœ vendor | ## Site selection ### KritĂ©ria pro vĂœběr lokality DC | Kategorie | KritĂ©rium | VĂĄha | |-----------|-----------|------| | **Power** | Dostupnost elektƙiny (grid capacity), cena/kWh, moĆŸnost dvou nezĂĄvislĂœch pƙívodĆŻ | VysokĂĄ | | **Connectivity** | Dostupnost fiber backbone, počet poskytovatelĆŻ konektivity, latency k major POP | VysokĂĄ | | **PƙírodnĂ­ rizika** | ZemětƙesenĂ­, povodně, hurikĂĄny, tornĂĄda, lesnĂ­ poĆŸĂĄry — historickĂĄ data + predikce | VysokĂĄ | | **Klima** | PrĆŻměrnĂĄ teplota, vlhkost (free cooling potenciĂĄl) | StƙednĂ­ | | **PracovnĂ­ sĂ­la** | Dostupnost technikĆŻ, DC operĂĄtorĆŻ, network/admin inĆŸenĂœrĆŻ | StƙednĂ­ | | **Daně a regulace** | DaƈovĂ© pobĂ­dky, environmental regulations, stavebnĂ­ povolenĂ­ | StƙednĂ­ | | **Bezpečnost** | Kriminalita, politickĂĄ stabilita, teroristickĂ© riziko | VysokĂĄ | | **DopravnĂ­ dostupnost** | BlĂ­zkost letiĆĄtě, dĂĄlnice (pro dodĂĄvky HW, personĂĄl) | NĂ­zkĂĄ | ### PƙírodnĂ­ rizika — mapovĂĄnĂ­ | Riziko | Oblasti | Mitigace | |--------|---------|----------| | **ZemětƙesenĂ­** | Pacific Ring of Fire (CA, Japonsko, Chile) | Base isolation, seismic bracing, flexibilnĂ­ propojenĂ­ | | **HurikĂĄny** | Karibik, jihovĂœchod USA, jihovĂœchodnĂ­ Asie | ZesĂ­lenĂĄ konstrukce, generĂĄtory nad ĂșrovnĂ­ zĂĄplav | | **Povodně** | ƘíčnĂ­ ĂșdolĂ­, pobƙeĆŸnĂ­ oblasti | UmĂ­stěnĂ­ mimo zĂĄplavovou zĂłnu, bariĂ©ry | | **LesnĂ­ poĆŸĂĄry** | Kalifornie, AustrĂĄlie, Stƙedomoƙí | DefenzivnĂ­ zĂłny, filtrace vzduchu, monitoring | ### Power availability po regionech | Region | Grid reliability | Cena/kWh (industriĂĄlnĂ­) | PoznĂĄmka | |--------|-----------------|------------------------|----------| | **SevernĂ­ Evropa** (SE, NO, FI) | VysokĂĄ (99.99 %) | $0.04-0.08 | LevnĂĄ zelenĂĄ energie, chladnĂ© klima | | **StƙednĂ­ Evropa** (DE, NL, CZ) | VysokĂĄ (99.99 %) | $0.10-0.20 | StabilnĂ­, renewables rostou | | **VĂœchodnĂ­ USA** (VA, NC) | VysokĂĄ | $0.05-0.08 | NejvětĆĄĂ­ DC hub (Ashburn, VA) | | **ZĂĄpadnĂ­ USA** (CA, OR) | StƙednĂ­ (PG&E issues) | $0.10-0.15 | CALISO grid, blackout risk | | **Singapur** | VysokĂĄ | $0.15-0.20 | Moratorium na novĂĄ DC (2023), voda | | **Dubai / UAE** | VysokĂĄ | $0.06-0.10 | LevnĂĄ energie, vysokĂĄ teplota (cooling) | ## Compliance a certifikace | Standard / Certifikace | Oblast | Popis | |----------------------|--------|-------| | **TIA-942** (Rated 1-4) | DC design | Klasifikace redundance, kabelĂĄĆŸe, bezpečnosti (analogickĂœ k Uptime Tier) | | **Uptime Institute** (Tier I-IV) | DC design | ProvoznĂ­ certifikace, konstrukčnĂ­ dokumentace | | **ISO 27001** | ISMS | InformačnĂ­ bezpečnost, ƙízenĂ­ rizik | | **ISO 27701** | Privacy | RozơíƙenĂ­ ISO 27001 pro GDPR compliance | | **SOC 2** (Type I/II) | Service org | Controls: Security, Availability, Confidentiality, Integrity, Privacy | | **PCI DSS** | PlatebnĂ­ karty | FyzickĂĄ bezpečnost, pƙístup k cardholder data | | **HIPAA** | ZdravotnictvĂ­ | USA, ochrana zdravotnĂ­ch dat | | **FedRAMP** | US government | Cloud service authorization, DC security | | **GDPR** | EU | Ochrana osobnĂ­ch ĂșdajĆŻ, data residency | | **NIST SP 800-53** | DC security | Security control catalog pro US federal | | **ISO 14001** | EMS | Environmental management, sustainability | ## Sustainability ### UhlĂ­kovĂĄ stopa DC ``` CelkovĂ© emise = Scope 1 (pƙímĂ©) + Scope 2 (energie) + Scope 3 (dodavatelskĂœ ƙetězec) Scope 1: GenerĂĄtory (diesel), Ășniky chladiva Scope 2: NakoupenĂĄ elektƙina (grid mix) Scope 3: VĂœroba HW, transport, EOL recyklace (~60-80 % celkovĂœch emisĂ­) ``` ### Redukce emisĂ­ | OpatƙenĂ­ | Dopad na PUE | SnĂ­ĆŸenĂ­ emisĂ­ | NĂĄvratnost | |----------|-------------|---------------|------------| | **ZvĂœĆĄenĂ­ teploty** (22→27 °C) | −0.1-0.2 | 10-20 % chlazenĂ­ | Ihned | | **Free cooling** | −0.1-0.3 | 20-40 % chlazenĂ­ | 1-2 roky | | **Liquid cooling** | −0.2-0.4 | 30-50 % chlazenĂ­ | 2-4 roky | | **LED osvětlenĂ­ + senzory** | −0.01-0.02 | < 1 % | 1 rok | | **PPA (Power Purchase Agreement)** | — | 100 % Scope 2 | VariabilnĂ­ | | **ObnovitelnĂ© zdroje** (solĂĄrnĂ­ na stƙeĆĄe) | — | 5-15 % spotƙeby | 5-10 let | | **ZelenĂœ generĂĄtor** (HVO biodiesel) | — | 90 % CO₂ redukce | +30 % fuel cost | ### Certifikace udrĆŸitelnosti | Certifikace | Popis | |-----------|-------| | **LEED** (BD+C: DC) | U.S. Green Building Council — design a konstrukce | | **BREEAM** | UK, European sustainability assessment | | **Climate Neutral Data Centre Pact** (EU) | Self-regulatory, PUE < 1.4 do 2030 | | **ISO 50001** | Energy management system | | **Energy Star** | EPA, energetickĂĄ Ășčinnost (jen US) | ## Decision diagram — nĂĄvrh DC topologie ```mermaid flowchart TD Start(["DC design"]) --> TIER{"PoĆŸadovanĂœ Tier?"} TIER -->|"Tier I / II"| T1["N / N+1 redundance
Jednoduché napåjení, single path
CRAC/CRAH, free cooling
PUE 1.4-1.6, cena 1×"] TIER -->|"Tier III"| T3["N+1, současně udrĆŸovatelnĂ©
Dual path (A/B feed)
Hot aisle containment
PUE 1.2-1.4, cena 2×"] TIER -->|"Tier IV"| T4["2N+1, fault tolerant
Dual redundant + STS
Hot + cold containment
PUE 1.1-1.3, cena 3×"] TIER --> POWER{"Power chain"} POWER -->|"UPS"| UPS{"UPS typ"} UPS -->|"Enterprise DC"| UPS1["VFI double-conversion
Li-ion (LFP), 10-15 let
N+1 nebo 2N modulĂĄrnĂ­"] UPS -->|"Edge / office"| UPS2["VI line-interactive
VRLA, 3-5 let"] POWER -->|"GenerĂĄtor"| GEN["Diesel 500-2500 kVA
NĂĄdrĆŸ na 24-72 h
ATS 4-10 ms pƙepnutí"] POWER -->|"PDU"| PDU["3-phase 400 V
Monitored/Switched
A/B feed do rackĆŻ"] Start --> DENS{"Hustota vĂœkonu"} DENS -->|"< 10 kW/rack"| COOL1["Air cooling
CRAC/CRAH, raised floor
Hot aisle containment
ASHRAE A1-A2"] DENS -->|"10-25 kW/rack"| COOL2["Hybrid
In-row cooling
Rear door HX
ASHRAE A1-H1"] DENS -->|"> 25 kW/rack"| COOL3["Liquid cooling
CDU, direct-to-chip
Immersion single/two-phase
ASHRAE W-tƙídy"] Start --> CLIM{"Klimatická zóna"} CLIM -->|"Mírná (ČR, DE)"| FC1["Free cooling 4000-6000 h/rok
Chiller + economizer
PUE saving 0.2-0.3"] CLIM -->|"Teplá (ES, US South)"| FC2["Chiller celoročně
Adiabatic cooling
PUE 1.3-1.6"] CLIM -->|"ChladnĂĄ (SE, NO)"| FC3["Free cooling 7000+ h/rok
Air-side economizer
PUE < 1.2"] ``` ## Monitoring diskĆŻ — S.M.A.R.T. Self-Monitoring, Analysis and Reporting Technology — prediktivnĂ­ monitoring HDD/SSD. | KlíčovĂœ atribut | ID | Popis | |----------------|----|-------| | Reallocated Sectors Count | 5 | Počet pƙemapovanĂœch sektorĆŻ (nĂĄrĆŻst = konec disku) | | Power-On Hours | 9 | CelkovĂĄ doba provozu v hodinĂĄch | | Reported Uncorrectable Errors | 187 | NekorigovatelnĂ© chyby (červenĂĄ kontrolka) | | CRC Error Count | 199 | Chyby na SATA lince (kabel/controller) | | SSD Life Left | 231 | % zbĂœvajĂ­cĂ­ ĆŸivotnosti SSD | | Media Wearout Indicator | 233 | CelkovĂœ zĂĄpis do NAND | NĂĄstroje: `smartmontools` (smartctl, smartd), Prometheus exporter (`node_exporter`), OTeL collector. ## Zdroje Odkazy, knihy a standardy: [sources/infrastructure/sources.md](sources/infrastructure/sources.md) ### DoporučenĂĄ literatura | Kniha | Autoƙi | ISBN | Popis | |-------|--------|------|-------| | The Data Center as a Computer (4th ed., 2025) | Barroso, Hölzle, Ranganathan | 978-3-031-99488-3 | KomplexnĂ­ vĂœvoj designu warehouse-scale computer (WSC) od Google architektĆŻ. PokrĂœvĂĄ hardware, software, power, cooling, networking a 25 let zkuĆĄenostĂ­ s WSC. KlíčovĂĄ publikace pro architekturu datovĂœch center. | | Electronics Cooling: From the Chip to the Datacenter (Vol. 62) | Abraham et al. | 978-0-443-47084-4 | PraktickĂœ prĆŻvodce tepelnĂœm managementem od Ășrovně tranzistoru po datovĂ© centrum. Zahrnuje conduction, convection, liquid immersion a phase change cooling. NezbytnĂœ zdroj pro nĂĄvrh chlazenĂ­ DC. | ## PĂĄteƙnĂ­ sluĆŸby datovĂ©ho centra Pƙi stavbě novĂ©ho DC je potƙeba nejdƙíve nasadit zĂĄkladnĂ­ infrastrukturnĂ­ sluĆŸby — bez nich nelze provozovat vyĆĄĆĄĂ­ vrstvy: ### DNS | Role | SluĆŸba | Popis | |------|--------|-------| | **Authoritative** | Bind, PowerDNS, NSD | PrimĂĄrnĂ­ DNS zĂłna pro internĂ­ domĂ©ny | | **Recursive** | Unbound, Bind (caching), CoreDNS | Resolver pro internĂ­ + externĂ­ dotazy | | **Anycast** | DNS anycast (BGP) | Redundance, niĆŸĆĄĂ­ latence | | **Integrace** | Infoblox, BlueCat, dnsmasq | IPAM + DNS + DHCP v jednom | Best practices: oddělenĂ© auth a recursive resolvery, DNSSEC, split-horizon (internĂ­ vs externĂ­ pohled), TSIG pro pƙenos zĂłn, monitoring (DNS query latency, NXDOMAIN rate). ### NTP (časovĂĄ synchronizace) - **Primary**: GPS-disciplinovanĂ© NTP servery (Microchip S600, Meinberg) - **Secondary**: Stratum 1/2 NTP (ntpd, chrony, NTPsec) - **All nodes**: chrony (modernĂ­ nĂĄhrada ntpd), lokĂĄlnĂ­ NTP server na kaĆŸdĂ©m rack switchi (boundary clock) - **Precision**: PTP (IEEE 1588) pro telco/fintech — sub-microsecond accuracy - **DC topologie**: GPS antĂ©na → Grandmaster (PTP) → Boundary clock (rack switch) → Ordinary clock (server) ### DHCP + IPAM | NĂĄstroj | Popis | |---------|-------| | **ISC DHCP** | Legacy, stĂĄle ĆĄiroce nasazen | | **Kea** | ModernĂ­ nĂĄhrada ISC DHCP (ISC + Linux Foundation) | | **Infoblox / BlueCat** | Enterprise IPAM + DHCP + DNS | | **NetBox / phpIPAM** | Open-source IPAM | ### LDAP / Identity Management | NĂĄstroj | Popis | |---------|-------| | **FreeIPA** | IntegrovanĂ© IDM (LDAP + Kerberos + DNS + CA) — Linux | | **Active Directory** | Microsoft, LDAP + Kerberos + Group Policy | | **389 Directory Server** | Open-source LDAP (Red Hat) | | **OpenLDAP** | KlasickĂœ open-source LDAP | | **Keycloak / Authentik** | ModernĂ­ OIDC/SAML/LDAP brĂĄny | ### PKI a certifikĂĄty - **Enterprise CA**: EJBCA, Smallstep, HashiCorp Vault (PKI engine) - **ACME**: Cert-Manager (Kubernetes), certbot (Let's Encrypt) - **mTLS**: Vault PKI, spire (SPIFFE), Cilium - **Best practices**: root CA offline, intermediate CA per prostƙedĂ­, certifikĂĄty s krĂĄtkou platnostĂ­ (max 90 dnĂ­), revocation (CRL/OCSP) ### Monitoring a observabilita Viz [MONITORING.md](MONITORING.md). Pƙed spuĆĄtěnĂ­m prvnĂ­ch workloadĆŻ musĂ­ DC mĂ­t: - Sběr metrik (Prometheus, Zabbix) - CentralizovanĂ© logy (Loki, ELK) - Alerting (Alertmanager, PagerDuty) - Uptime monitoring (heartbeat checky) ### Logistika nasazenĂ­ — poƙadĂ­ krokĆŻ ``` 1. DNS (alespoƈ recursive + local resolver) 2. NTP (časovĂĄ synchronizace) 3. DHCP + IPAM (prvnĂ­ servery dostanou IP) 4. LDAP / IAM (uĆŸivatelĂ©, skupiny, pƙístupovĂĄ prĂĄva) 5. PKI (certifikĂĄty pro ĆĄifrovĂĄnĂ­) 6. Configuration management (Ansible, Puppet) 7. Monitoring + logging (vidět co se děje) 8. Container registry / Package repo (docker registry, apt/yum mirror) 9. Load balancer (pro sluĆŸby) 10. Storage backend (Ceph, NFS, SAN) 11. Orchestrace (Kubernetes, OpenStack) ``` ## OpenStack v datacentru OpenStack pƙinĂĄĆĄĂ­ do DC softwarovou abstrakčnĂ­ vrstvu, kterĂĄ umoĆŸĆˆuje multi-tenancy a self-service: ### Control plane architektura - **Controller nodes** — management sluĆŸby (Keystone, Nova API, Neutron API, Horizon, RabbitMQ, DB) - **Compute nodes** — hypervisor (KVM), Nova Compute, Neutron agent - **Storage nodes** — Ceph OSD, Cinder volumes, Swift object storage - **Network nodes** — Neutron L3 router, DHCP agent, DVR ### PoĆŸadavky na DC infrastrukturu | Komponenta | PoĆŸadavek | |------------|-----------| | **Controller** | 3-5 node HA cluster, 16+ vCPU, 32+ GB RAM, SSD | | **Compute** | HustĂœ vĂœkon na rack (GPU, high-core), NUMA-aware design | | **Storage (Ceph)** | 10-25 GbE networking, NVMe/SSD OSD, 3+ replica | | **Network** | 25/100 GbE spine-leaf, L3 BGP underlay, VXLAN overlay | | **Rack power** | 10-30 kW/rack pro GPU compute | ### Use cases - PrivĂĄtnĂ­ cloud pro enterprise (multi-tenant, self-service Horizon) - NFVI pro telco (DPDK, SR-IOV, low-latency) - AkademickĂ© / HPC clustery (Ironic, Cyborg, Manila) - Government / regulated prostƙedĂ­ (on-prem, audit trail) *PoslednĂ­ revize: 2026-06-03*