TY - JOUR
T1 - The new energy vehicle’s research and development competition with technology uncertainty under dual credit policy
AU - Tao, Zhiying
AU - Li, Jianbin
AU - Zhang, Jihong
AU - Wang, Zhaohua
N1 - Publisher Copyright:
Copyright © 2026. Published by Elsevier B.V.
PY - 2026/10
Y1 - 2026/10
N2 - The dual-credit policy is a market-based mechanism designed to reduce carbon emissions from the automotive industry by promoting new energy vehicles (NEVs) and restricting fuel vehicles (FVs). This study provides a low-carbon operations perspective on how such a policy interacts with technological uncertainty and market competition to shape NEV R&D strategies and, crucially, the resulting carbon emission reductions. We develop a game-theoretic newsvendor framework that endogenizes FV market decay and incorporates a usage-phase carbon accounting model aligned with IPCC guidelines. Under imperfect competition, we decompose the marginal carbon impact of the credit price into four driven forces: quality improvement, competitive spillover, market contraction interaction, and output incentive. We show that a higher credit price reduces total emissions only when the energy-efficiency for the quality improvement of NEVs is sufficiently large. Under perfect competition, the FV shrinkage acceleration effect dominates, but excessive credit price may paradoxically increase emissions by crowding out the FVM’s own NEV yield. We further derive equilibrium R&D quality, yield, and launch-timing strategies, and demonstrate through Difference-in-Differences analysis of 2019–2024 production data that the policy significantly accelerated NEV adoption. Numerical studies reveal that perfect competition and technological progress can substitute for policy incentives, suggesting a transition from policy-driven to technology-driven decarbonization. These findings provide a low-carbon policy roadmap: maintaining moderate credit prices, pairing price adjustments with energy-efficiency standards, and enacting mandatory FV phase-out schedules to align the dual-credit policy with net-zero goals.
AB - The dual-credit policy is a market-based mechanism designed to reduce carbon emissions from the automotive industry by promoting new energy vehicles (NEVs) and restricting fuel vehicles (FVs). This study provides a low-carbon operations perspective on how such a policy interacts with technological uncertainty and market competition to shape NEV R&D strategies and, crucially, the resulting carbon emission reductions. We develop a game-theoretic newsvendor framework that endogenizes FV market decay and incorporates a usage-phase carbon accounting model aligned with IPCC guidelines. Under imperfect competition, we decompose the marginal carbon impact of the credit price into four driven forces: quality improvement, competitive spillover, market contraction interaction, and output incentive. We show that a higher credit price reduces total emissions only when the energy-efficiency for the quality improvement of NEVs is sufficiently large. Under perfect competition, the FV shrinkage acceleration effect dominates, but excessive credit price may paradoxically increase emissions by crowding out the FVM’s own NEV yield. We further derive equilibrium R&D quality, yield, and launch-timing strategies, and demonstrate through Difference-in-Differences analysis of 2019–2024 production data that the policy significantly accelerated NEV adoption. Numerical studies reveal that perfect competition and technological progress can substitute for policy incentives, suggesting a transition from policy-driven to technology-driven decarbonization. These findings provide a low-carbon policy roadmap: maintaining moderate credit prices, pairing price adjustments with energy-efficiency standards, and enacting mandatory FV phase-out schedules to align the dual-credit policy with net-zero goals.
KW - Carbon emission reduction
KW - Dual-credit policy
KW - New energy vehicle development
KW - R&D uncertainty
UR - https://www.scopus.com/pages/publications/105045558368
U2 - 10.1016/j.ijpe.2026.110117
DO - 10.1016/j.ijpe.2026.110117
M3 - Article
AN - SCOPUS:105045558368
SN - 0925-5273
VL - 300
JO - International Journal of Production Economics
JF - International Journal of Production Economics
M1 - 110117
ER -