Table 3 Values of different simulation parameters.
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 | \(\Phi_{B}^{O\& M}\) | Â | Â | \(SOC_{EV}^{\acute{M}}\) | 100% |
9 | \(\Psi_{B}^{O\& M}\) | 0.02854 $/h | 19 | \(SOC_{EV,Dch}^{th}\) | 60% |
10 | \(\rho_{B}\) | 5% per month | Â | Â | Â |