Nkesa ọkụ eletrik obodo Ụdị dị ndụ

I na-arụ transformer 500 kVA na feeder voltaji dị ala nke na-enye ụlọ 150 na ụgbọ ala eletrik ha. Ibu ọnụ na-ekpo insulation ma na-eme ka ọ ka nká ngwa ngwa; feeder ogologo na-eme ka voltaji dajụọ n'ọnụ ọzọ. Otu nzọụkwụ bụ nkeji 5.

Ihe ị ga-amụta

Simulator

Oge 0 min
Okpomọkụ ebe winding kacha ekpo ọkụ 59 °C · Ibu na transformer 42% · Voltaji n'ọnụ feeder 100.0% · Ike ịgbanye EV 0 kWỌkụ MV✓ 59°42%500 kVAONAN⌂⌂⌂⌂⌂⌂⌂⌂⌂⌂Voltaji na transformer 100.9% → Voltaji n'ọnụ feeder 100.0% · Nzọụkwụ regulator voltaji 0🚗 0 kW · 🌡 30.8 °C · Ọnwụ 3.1 kW⊣⊢Ibu transformer dị nso 42%⏱ 14:00 · Ume enyeghị 0 kWh
  • Ebe ọkụ kachasị nke transformer n'okpuru 110 °C
  • Ebe kacha ekpo ọkụ 110–120 °C (ịka nká ngwa ngwa)
  • Ebe kacha ekpo ọkụ n'elu 120 °C
  • Ụlọ nwere voltaji n'ime oke
  • Ụlọ nso oke voltaji
  • Pụọ n'oke ma ọ bụ enweghị ọkụ
  • Fan / capacitor na-arụ ọrụ
  • Ihe dị ka EV atọ na-agbanye

Njikwa

Fan na-eweli ọkwa jụụ ihe dị ka otu ụzọ n'ụzọ atọ; mmanụ na-adị jụụ maka otu ibu.

Ụdị a na-achịkwa na-emetụta naanị ndị ọkwọ ụgbọ ala debanyere aha na mmemme ahụ; ndị ọzọ na-agbanye mgbe ha rutere.

Na-emechi tie switch maka akụkụ nke feeder. Onye agbata obi nwere oke nke ya (120 %) ma tie ogologo na-ebelata voltaji.

150 kvar nkwado reactive: na-ebuli voltaji n'ọnụ ọzọ ma na-ebelata ntakịrị ọkụ eletrik.

Nzọụkwụ ọ bụla na-ebuli voltaji niile site na 1,25 % — n'ibu dị mfe ọ nwere ike ịchụpụ ọnụ nso karịa +5 %.

Nchịkwa ibu kpọmkwem nke ndị na-ekpo mmiri na ihe nkụ ikuku: otu ngọngọ nke −15 % nke ibu ezinụlọ maka nkeji 60, mgbe ahụ mkpọchi awa 2 ka ha na-agbake. Ọkara nke ume e wepụrụ na-alaghachi ma e mesịa.

Ihe ngosi

Okpomọkụ ebe winding kacha ekpo ọkụ
59°C
nkịtị
Ibu na transformer
42%
nkịtị
Ọdịiche voltaji kacha njọ
0.9%
nkịtị
Ihe ngwa ngwa ịka nká
0.00×
nkịtị
Okpomọkụ mmanụ elu53 °C
Okpomọkụ n'èzí30.8 °C
Ndụ insulation ejiri (awa hà nhata)0.0 h
Ibu transformer202 kW
Ike ịgbanye EV0 kW
Voltaji na transformer100.9 %
Voltaji n'ọnụ feeder100.0 %
Ọnwụ3.1 kW
Ume enyeghị0 kWh
Ibu wepụrụ site na nchịkwa0 kWh
Ume EV ka na-efu0 %
Ibu transformer dị nso42 %
Ihe cold-load pickup1.00 ×

Ọnọdụ

Okpomọkụ ebe winding kacha ekpo ọkụ: — °C1600

Ọnọdụ nsogbu

Ọkwa 1 · Elu EV n'anyasị oke okpomọkụ

Ehihie oge ọkụ dị ukwuu: ihe nkụ ikuku na-arụ ọrụ n'ụlọ ọ bụla ma ụgbọ ala eletrik 100 ga-etinye ọkụ n'etiti 17:00 na 20:00 — n'elu elu ibu ụlọ nke mgbede. Naanị 70 % nke ndị na-anya ụgbọ ka debara aha na ịchaji a na-achị. Gafee ruo 07:00 n'enweghị ime ka transformer kpoo oke ma ọ bụ daa, ma n'enweghị ịdabere na ịwepụ ibu.

  • Ebe kacha ekpo ọkụ adịghị agafe 110 °C
  • Ndụ insulation ejiri ≤ 17 h (ọ bụghị ngwa ngwa karịa nkịtị)
  • Onye ahịa ọ bụla adịghị efu ọkụ
  • Ibu e wepụrụ ≤ 60 kWh

Ọkwa 2 · Nsogbu onye agbata obi: iburu ndị ahịa ya

Na 17:00 transformer dị nso na-emebi. Ọkara nke ụlọ ya ka a gbanyere n'ọnụ ọzọ nke feeder gị site na kebụl tie ogologo. Ọkụ eletrik ọzọ na-asọ n'ogologo ahịrị gị niile: debe ụlọ niile n'ime ±5 % nke voltaji nkịtị (ANSI C84.1 Range A) ma zere ibufe transformer gị nke ukwuu.

  • Voltaji niile n'ime ±5 % (site na nkeji 10 mgbe nsogbu gasịrị)
  • Onye ahịa ọ bụla adịghị efu ọkụ
  • Ebe kacha ekpo ọkụ adịghị agafe 120 °C
  • Ibu e wepụrụ ≤ 60 kWh

Ọkwa 3 · Cold-load pickup mgbe ọkụ gbasịrị

Ọkụ gbasịrị awa isii n'abalị oyi na-atụ ọnụ na-akwụsị na 18:00. Ihe niile na-ekpo ọkụ anọwo n'efu, ma EV ọ bụla na-eche ịchaji. Mgbe ndị otu mechiri switch, ibu na-alaghachi n'elu nke ọkọlọtọ — ọ bụrụ na ọdịiche furu, transformer ga-adaghachi. Weghachi n'enweghị ọkụ gbasịa nke abụọ, debe voltaji n'ime oke na mbelata dị ntakịrị.

  • Enweghị ọkụ gbasịrị nke abụọ (ume enyeghị = 0)
  • Voltaji niile n'ime ±5 % (site na nkeji 10 mgbe nweghachi gasịrị)
  • Ibu wepụrụ ≤ 120 kWh
  • EV ọ bụla agbanyere tupu 07:00 (≤ 2 % na-efu)
  • Ibu transformer na-anọ n'okpuru pickup relay 150 % mgbe e mechiri switch (site na 18:05)

Ntọala — ụdị dị n'azụ ọnụọgụ

Mmekọrịta ọ bụla simulator na-eji, na isi mmalite ya. Ihe na-agbanwe agbanwe akara dị ka echiche bụ nhazi ngosi.

Ọchịchọ ụlọ na-agbaso profaịlụ kwa ụbọchị na ihu igwe; EV ọ bụla na-agbanye na 7,2 kW ruo mgbe ọ juru.
P_homes = 150 × 2.0 kW × shape(h) × [1 + 0.025·max(0, θa−24) + 0.02·max(0, 15−θa)] × CLPU(t); P_EV = Σ 7.2 kW while plugged and not full[9]Echiche: profaịlụ ibu, ọnụ ọgụgụ EV, impedance feeder, ihe cold-load na ọkwa fan bụ ụkpụrụ ngosi maka feeder ókèala izugbe, ọ bụghị data sitere na netwọk n'ezie.
Ịrị elu mmanụ elu na-abịaru ọnụ ọgụgụ ya kachasị maka ibu dị ugbu a n'ụzọ exponential, nwere oge mgbe nile nke awa.
Δθ_TO,U = 55 K · [(K²R+1)/(R+1)]ⁿ; Δθ_TO ← Δθ_TO,U + (Δθ_TO − Δθ_TO,U)·e^(−Δt/τ_TO), τ_TO = 180 min (ONAN) / 150 min (ONAF); R = P_k/P₀ at the rating K is referred to: 5 (ONAN), 5 × 1.33² ≈ 8.8 (ONAF)[1][2]
Ebe winding kacha ekpo ọkụ dị n'elu mmanụ ma na-eso ọkụ eletrik n'ime nkeji.
Δθ_H,U = 25 K · K^(2m); Δθ_H ← Δθ_H,U + (Δθ_H − Δθ_H,U)·e^(−Δt/(k22·τw)), k22·τw = 8 min; θ_H = θ_A + Δθ_TO + Δθ_H[1][2]Nkọwa dị mfe: ịrị elu ebe ọkụ kachasị na-esote otu exponential (k21 = 1, oge mgbe niile k22·τw). A naghị eṅomi obere overshoot nke f2(t) okwu abụọ nke IEC 60076-7 mgbe nzọụkwụ ibu mberede gasịrị, ya mere ebe ọkụ kachasị nwere ike igosi ntakịrị kelvin dị ala nwa oge.
Ọkwa jụụ: fan na-agbanwe ndị exponent na ọkwa a na-ezo aka ibu ya.
ONAN n = 0.8, m = 0.8; ONAF n = 0.9, m = 0.8 (IEEE C57.91), with K and R referred to the ONAF rating (1.33 × ONAN, R ≈ 8.8)[1][3]Echiche: profaịlụ ibu, ọnụ ọgụgụ EV, impedance feeder, ihe cold-load na ọkwa fan bụ ụkpụrụ ngosi maka feeder ókèala izugbe, ọ bụghị data sitere na netwọk n'ezie.
Ịka nká nke insulation ntụnyere ntụnye 110 °C; na-abụọ ugboro ugboro ihe dị ka 6–7 K ọ bụla.
F_AA = exp(15000/383 − 15000/(θ_H + 273)); aged hours = Σ F_AA·Δt; F_EQA = Σ F_AA·Δt / Σ Δt; normal life 180 000 h[1][3][2]
Ọnwụ enweghị ibu gbakwunyere ọnwụ ibu na-arị elu na square nke ọkụ eletrik.
P_loss = P₀ + P_k·K² + r_f·S_b·(|s_d|²/3 + Re(s_d·s_p*) + |s_p|²) + r_tie·S_b·|s_tie|², s_d = distributed load, s_p = far-end block (incl. capacitor); P₀ = 1 kW, P_k = 5 kW[7][2]
Ọdịda voltaji dị nso n'akụkụ transformer na feeder.
ΔV ≈ p·r + q·x (pu); distributed load drops ½ of the lumped value; capacitor Q_c raises V by Q_c·x; V_src = 1.02 + 0.02·(0.5 − shape) + tap × 1.25 %[7]Echiche: profaịlụ ibu, ọnụ ọgụgụ EV, impedance feeder, ihe cold-load na ọkwa fan bụ ụkpụrụ ngosi maka feeder ókèala izugbe, ọ bụghị data sitere na netwọk n'ezie.
Oke voltaji ọrụ site na ụkpụrụ voltaji.
target |V − 1| ≤ 5 % (ANSI C84.1 Range A); Range B −8.3 % / +5.8 %; EN 50160: ±10 % for 95 % of 10-min means[4][5][6]
Nchedo: mgbe transformer na onye agbata obi na-atụda.
trip if K ≥ 1.5 for 30 min (accumulated), K ≥ 2.0 at once, or θ_H ≥ 140 °C; neighbour trips if K_B ≥ 1.2 for 30 min; re-energised after 60 min[2]Echiche: ntọala ibu ọnụ 30-nkeji, ihe 2,0 pu ozugbo na ntụpụ 140 °C ebe kacha ekpo ọkụ bụ ntọala ngosi e wuru na oke IEC 60076-7 maka transformer nkesa (1,5 pu cyclic nkịtị, 2,0 pu ihe mberede oge nta, 140 °C ebe kacha ekpo ọkụ). Nchedo n'ezie na-eji fuse ma ọ bụ relay curve.
Mgbe ọkụ gbasịrị, ibu thermostat niile na-agbanye n'otu oge; ibu ọzọ na-agbada n'ụzọ exponential.
M0 = 1 + 1.4·(1 − e^(−D/90 min)); CLPU(t) = 1 + (M0 − 1)·e^(−t/60 min)[8][1]Echiche: profaịlụ ibu, ọnụ ọgụgụ EV, impedance feeder, ihe cold-load na ọkwa fan bụ ụkpụrụ ngosi maka feeder ókèala izugbe, ọ bụghị data sitere na netwọk n'ezie.
Ihe kwụsiri ike ndị ọzọ nke ụdị ahụ na-eji.
500 kVA transformer, 30 °C rated ambient (55 K oil + 25 K gradient → 110 °C) · 60 EVs, 6–20 kWh need, arrival ≈ N(18:30, 1 h), depart 07:00 · curtailed charging 3.6 kW · transformer r = 1 %, x = 4 %; feeder r = 4 %, x = 2 %; tie r = 10 %, x = 4 % (500 kVA base) · neighbour 400 kVA, 120 homes, transfer ≤ 40 % · capacitor 150 kvar · tap ±4 × 1.25 % · shedding one 15 % block for 60 min, 120 min lockout, 50 % payback · fans 0.4 kW · ±3 % load noise, ±5 % daily scaleEchiche: profaịlụ ibu, ọnụ ọgụgụ EV, impedance feeder, ihe cold-load na ọkwa fan bụ ụkpụrụ ngosi maka feeder ókèala izugbe, ọ bụghị data sitere na netwọk n'ezie.

Enweghị usoro: ihe mmepụta mulberry32 nwere mkpụrụ; nkesa ejiri — uniform, exponential (inverse CDF), normal (Box–Muller), Poisson (Knuth). A na-egosi mkpụrụ ma nwee ike ikekọrịta ya.

Isi mmalite

  1. IEEE Std C57.91-2011 — IEEE Guide for Loading Mineral-Oil-Immersed Transformers and Step-Voltage Regulators (clause 5 ageing, clause 7 temperature, Annex on cold-load pickup) — IEEE, 2011
  2. IEC 60076-7:2018 — Power transformers, Part 7: Loading guide for mineral-oil-immersed power transformers — IEC, 2018
  3. Comparison of Loading Guide Standards (IEEE C57.91 and IEC 60076-7): ageing equations, exponents n/m by cooling mode, 180 000 h normal life — IEEE PES Transformers Committee, C57.91 working group
  4. ANSI C84.1 — Electric Power Systems and Equipment: Voltage Ratings (60 Hz); Range A service voltage ±5 % (114–126 V on 120 V), Range B 110–127 V — NEMA / ANSI (summarised in USDA Rural Utilities Service guidance), 2020
  5. EN 50160:2022 — Voltage characteristics of electricity supplied by public electricity networks, clause 4 low-voltage supply characteristics (clause 4 is not in the free preview, which ends at the scope) — CENELEC, CLC/TC 8X (official preview of the English text via the Slovak national standards body ÚNMS SR, STN EN 50160:2023), 2022
  6. A. Klajn, M. Bątkiewicz-Pantuła — Application Note: Standard EN 50160, Voltage characteristics of electricity supplied by public electricity networks (LV supply voltage variations: Un ± 10 % for 95 % of the 10-min mean rms values of each week) — European Copper Institute / Leonardo ENERGY, Publication No. Cu0147, 2013
  7. W. H. Kersting — Distribution System Modeling and Analysis (approximate voltage drop, uniformly distributed load, line losses) — CRC Press, 2017
  8. C. Hachmann et al. — Cold load pickup model parameters based on measurements in distribution systems (exponential decay model, CLPU factors ≈ 1.9–2.8) — IET Generation, Transmission & Distribution 13(23), 2019
  9. SAE J1772 — Electric Vehicle and Plug-in Hybrid Electric Vehicle Conductive Charge Coupler (AC Level 2 charging, e.g. 32 A × 240 V ≈ 7.7 kW) — SAE International, 2017

Ndị na-arụ nke a dị ka ọrụ

Ụdị agụmakwụkwọ — ọ bụghị maka mkpebi ọrụ. Ebe n'ezie na-edozi ihe niile na-agbanwe agbanwe dịka ngwá ọrụ na data nke ha si dị.