China Safety Science Journal ›› 2026, Vol. 36 ›› Issue (7): 207-215.doi: 10.16265/j.cnki.issn1003-3033.2026.07.0801
• Public Safety and Emergency Management • Previous Articles Next Articles
Received:2026-02-05
Revised:2026-04-11
Online:2026-07-28
Published:2027-01-28
CLC Number:
Lei Ting, Hui Xiaojing. An evolutionary game model for coordinated emergency material reserve considering public participation[J]. China Safety Science Journal, 2026, 36(7): 207-215.
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URL: http://www.cssjj.com.cn/EN/10.16265/j.cnki.issn1003-3033.2026.07.0801
Table 1
Payment matrix of four-party evolutionary game
| 策略选择 | 媒体 B | 政府G | ||||
|---|---|---|---|---|---|---|
| 强储备需求x | 弱储备需求1-x | |||||
| 公众L 强参与储备意愿o | 公众 弱参与储备意愿1-o | 公众 强参与储备意愿o | 公众 弱参与储备意愿1-o | |||
| 应急 产业 W | 深合 作 y | 积极 宣传 z | G1=-P2Q2(1+π)(1-ε)-S+M(1-β) W1=Q2(P2-C)(1+π)(1-ε)- K(1-ε)+Q3(P1-C)(1-ε)(1-δ) B1=S+K(1-ε)+Q3(P1-C)(1-ε)δ L1=ϕS+Kη-P1Q3(1-ε) | G2=-P2Q2(1+π)(1-ε)-S W2=Q2(P2-C)(1+π)(1-ε)- K(1-ε) B2=S+K(1-ε) L2=-(η-ε)(1+β)H | G3=-P1Q1(1-ε)-T-βN W3=Q1(P1-C)(1-ε)+T- K(1-ε)+Q3(P1-C)(1-ε)(1-δ) B3=K(1-ε)+Q3(P1-C)(1-ε)δ L3=Kη-P1Q3(1-ε) | G4=-P1Q1(1-ε)-T W4=Q1(P1-C)(1-ε)+T-K(1-ε) B4=K(1-ε) L4=-(η-ε)H |
| 消极 宣传 1-z | G5=-P2Q2(1+π)(1-ε)+ F(1+β)(1+ω)+M(1-β) W5=Q2(P2-C)(1+π)(1-ε)- K(1-ε)+Q3(P1-C)(1-ε)(1-ω) B5=-F(1+β)(1+ω)+K(1-ε)+ Q3(P1-C)(1-ε)ω L5=-Kω-P1Q3(1-ε) | G6=-P2Q2(1+π)(1-ε)+F(1+β) W6=Q2(P2-C)(1+π)(1-ε)-K(1-ε) B6=-F(1+β)+K(1-ε) L6=(ω+ε)(1+β)H | G7=-P1Q1(1-ε)-T+F(1+β)(1+ω)-βN W7=Q1(P1-C)(1-ε)+T-K(1-ε)+ Q3(P1-C)(1-ε)(1-ω) B7=-F(1+β)(1+ω)+K(1-ε)+ Q3(P1-C)(1-ε)ω L7=-ωK-P1Q3(1-ε) | G8=-P1Q1(1-ε)-T+F(1+β) W8=Q1(P1-C)(1-ε)+T-K(1-ε) B8=-F(1+β)+K(1-ε) L8=(ω+ε)H | ||
| 浅合 作 1-y | 积极 宣传 z | G9=-P2Q2(1+π)-S+M(1-β) W9=Q2(P2-C)(1+π)-K+ Q3(P1-C)(1-δ) B9=S+K+Q3(P1-C)δ L9=ϕS+Kη-P1Q3 | G10=-P2Q2(1+π)-S W10=Q2(P2-C)(1+π)-K B10=S+K L10=-ηH(1+β) | G11=-P1Q1-βN W11=Q1(P1-C)-K+Q3(P1-C)(1-δ) B11=K+Q3(P1-C)δ L11=Kη-P1Q3 | G12=-P1Q1 W12=Q1(P1-C)-K B12=K L12=-ηH | |
| 消极 宣传 1-z | G13=-P2Q2(1+π)+ F(1+β)(1+ω)+M(1-β) W13=Q2(P2-C)(1+π)-K+ Q3(P1-C)(1-ω) B13=-F(1+β)(1+ω)+K+ Q3(P1-C)ω L13=-Kω-P1Q3 | G14=-P2Q2(1+π)+F(1+β) W14=Q2(P2-C)(1+π)-K B14=-F(1+β)+K L14=ωH(1+β) | G15=-P1Q1+F(1+β)(1+ω)-βN W15=Q1(P1-C)-K+Q3(P1-C)(1-ω) B15=-F(1+β)(1+ω)+K+Q3(P1-C)ω L15=-Kω-P1Q3 | G16=-P1Q1+F(1+β) W16=Q1(P1-C)-K B16=-F(1+β)+K L16=ωH | ||
Table 2
Asymptotic stability analysis of equilibrium point
| 均衡点 | 特征值 | 符号 | 稳定条件 |
|---|---|---|---|
| (1,0,1,0) | ε[K-Q2(P2-C)(1+π)],-S-F(1+β), S-P1Q1+P2Q2(1+π),ηK-P1Q3+ϕS+η(1+β)H | (×,-,×,×) | εK<εQ2(P2-C)(1+π),S+P2Q2(1+π)<P1Q1 ηK+ϕS+η(1+β)H<P1Q3 |
| (1,0,1,1) | ε[K-Q3(P1-C)(1-δ)-Q2(P2-C)(1+π)], -Q3(P1-C)(δ-ω)-F(β+1)(ω+1)-S, P1Q3-ηK-ϕS-η(1+β)H,S-P1Q1- βN-M(1-β)+P2Q2(1+π) | (×,-,×,×) | εK<εQ3(P1-C)(1-δ)+εQ2(P2-C)(1+π) P1Q3<ηK+ϕS+η(1+β)H S+P2Q2(1+π)<P1Q1+βN+M(1-β) |
| (1,1,1,0) | -S-F(1+β),-ε[K-Q2(P2-C)(1+π)], S-T-[P1Q1-P2Q2(1+π)](1-ε), ηK+ϕS-P1Q3(1-ε)-ε(1+β)H+η(1+β)H | (-,×,×,×) | εQ2(P2-C)(1+π)<εK S+P2Q2(1+π)(1-ε)<T+P1Q1(1-ε) ηK+ϕS+η(1+β)H<P1Q3(1-ε)+ε(1+β)H |
| (1,1,1,1) | -ε[K-Q3(P1-C)(1-δ)-Q2(P2-C)(1+π)], -S-F(1+β)(1+ω)-Q3(P1-C)(δ-ω)(1-ε), ε(1+β)H-η(1+β)H-ϕS+(1-ε)P1Q3-ηK, S-T-βN-[P1Q1-P2Q2(1+π)](1-ε)-M(1-β) | (×,-,×,×) | εQ3(P1-C)(1-δ)+εQ2(P2-C)(1+π)<εK ε(1+β)H+(1-ε)P1Q3<ηK+ϕS+η(1+β)H S+P2Q2(1+π)(1-ε)<T+βN+ M(1-β)+P1Q1(1-ε) |
| (0,0,1,0) | T+ε[K-Q1(P1-C)],-F(β+1), -P1Q3+ηK+ηH,P1Q1-S-P2Q2(1+π) | (×,-,×,×) | T+εK<εQ1(P1-C),ηK+ηH<P1Q3 P1Q1<S+P2Q2(1+π) |
| (0,0,1,1) | -Q3(P1-C)(δ-ω)-F(β+1)(ω+1), T+ε[K-Q1(P1-C)-Q3(P1-C)(1-δ)], P1Q3-ηK-ηH,P1Q1-S+Nβ+M(1-β)-P2Q2(1+π) | (-,×,×,×) | T+εK<εQ1(P1-C)+εQ3(P1-C)(1-δ) P1Q3<ηK+ηH P1Q1+Nβ+M(1-β)<S+P2Q2(1+π) |
| (0,1,1,0) | -T-ε[K-Q1(P1-C)],ηK-εH+ηH-P1Q3(1-ε), -F(β+1),T-S+(1-ε)[P1Q1-P2Q2(1+π)] | (×,×,-,×) | εQ1(P1-C)<T+εK,ηK+ηH<εH+P1Q3(1-ε) T+(1-ε)P1Q1<S+(1-ε)P2Q2(1+π) |
| (0,1,1,1) | -T-ε[K-Q1(P1-C)-Q3(P1-C)(1-δ)], -F(β+1)(ω+1)-Q3(P1-C)(δ-ω)(1-ε), εH-ηH-ηK+P1Q3(1-ε), T-S+Nβ+(1-ε)[P1Q1-P2Q2(1+π)]+(1-β)M | (×,-,×,×) | εQ1(P1-C)+εQ3(P1-C)(1-δ)<T+εK εH+P1Q3(1-ε)<ηH+ηK T+Nβ+(1-ε)P1Q1+(1-β)M< S+(1-ε)P2Q2(1+π) |
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