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HEV-Inverter Li-Ion Battery Simulation using PSpice

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HEV-Inverter Li-Ion Battery Simulation
using PSpice

Published in: Engineering
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HEV-Inverter Li-Ion Battery Simulation using PSpice

  1. 1. All Rights Reserved Copyright (C) Bee Technologies Corporation 2013 1 HEV-Inverter Li-Ion Battery Simulation using PSpice Tsuyoshi Horigome
  2. 2. V+ V V- V+ V- V+ V-V+ V- VP U1 2MBI1400VXB-120P-50 D1 D2MBI1400VXB-120P-50 U2 2MBI1400VXB-120P-50 D2 D2MBI1400VXB-120P-50 WP U3 2MBI1400VXB-120P-50 D3 D2MBI1400VXB-120P-50 U4 2MBI1400VXB-120P-50 D4 D2MBI1400VXB-120P-50 U5 2MBI1400VXB-120P-50 D5 D2MBI1400VXB-120P-50 UD U6 2MBI1400VXB-120P-50 D6 D2MBI1400VXB-120P-50VD + - U7 LI-ION_BATTERY SOC = 1 NS = 25 TSCALE = 3600 C = 50 WD + - U8 LI-ION_BATTERY SOC = 1 NS = 25 TSCALE = 3600 C = 50 HI RV 173.75m 0 M N0 U9 LL = 105U LOAD = 100 KT = 1.6 KE = 0.02 RLL = 0.0125 AC_MOTOR 1 2 3 4 NO RW 173.75m U NO V RU 173.75m W U10 GDRV UD UP VD VP WD WP UDUP VP VD WP WD 0 0 0 0 0 0 UP - + + - E1 E 2 - + + - E2 E 2 - + + - E3 E 2 - + + - E4 E 2 - + + - E5 E 2 - + + - E6 E 2 Simulation Circuit and Setting - Lithium Ion Battery All Rights Reserved Copyright (C) Bee Technologies Corporation 2013 2 SOC : 100% ILOAD=100Arms NS =25 VBATT VUN
  3. 3. Simulation Result All Rights Reserved Copyright (C) Bee Technologies Corporation 2013 3 SPEED SOC VBATT VUN

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