Table 3 Values of different simulation parameters.

From: Dual layer energy management model for optimal operation of a community based microgrid considering electric vehicle penetration

S.No

Parameter

Value

S.No

Parameter

Value

1

\(\zeta_{PV}^{O\& M}\)

0.057 $/h

11

\(\eta_{B,Ch} /\eta_{B,Dch}\)

0.85

2

\(SOC_{B}^{\acute{M}}\)

100%

12

\(N_{EV}\)

10,20,30

3

\(SOC_{B}^{\acute{m}}\)

30%

13

\(\alpha_{E} ,\alpha_{V} ,\alpha_{R}\)

30%,50%,20%

4

\(E_{B}^{R}\)

81kWh

14

\(N_{EV\_P}\)

3

5

\(P_{G,Ex}^{\acute{M}}\)

kW

15

\(\eta_{EV,Ch} /\eta_{EV,Dch}\)

90%

6

\(P_{{G,{ }Im}}^{\acute{M}}\)

 − 35 kW

16

\(D_{EV}\)

4

7

\(P_{{B,{\text{Ch}}/Dch}}^{\acute{M}}\)

 − 4.05 kW/4.05 kW

17

\(TD_{{{ }L}}^{\acute{m}}\)

3 h

8

\(\Phi_{B}^{O\& M}\)

  

\(SOC_{EV}^{\acute{M}}\)

100%

9

\(\Psi_{B}^{O\& M}\)

0.02854 $/h

19

\(SOC_{EV,Dch}^{th}\)

60%

10

\(\rho_{B}\)

5% per month

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