The Optimal Logistics Distribution Service Strategy of the E-commerce Closed-Loop Supply Chain Network under Blockchain Technology and the Government Blockchain Subsidy

Sustainability Pub Date : 2024-07-23 DOI:10.3390/su16156294
Yan Zhou, Cong Liang, K. Wong
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Abstract

The booming development of e-commerce has promoted the diversified development of logistics distribution services (LDS). For LDS, e-commerce retailers (e-retailers) often choose either the outsourced logistics distribution services strategy (OLDSS) or the self-built logistics distribution services strategy (SBLDSS). Although there are problems such as products getting lost and damaged during the logistics distribution process, the high transparency and traceability characteristics of blockchain technology (BT) can help solve the problem of products being lost and damaged in the logistics distribution process. However, due to the high cost of BT, e-retailers may encounter reduced sales, which causes the supply chain corporate profits to decrease. To encourage the BT investment enthusiasm of the e-retailers and regulate corporate profits, the government implements subsidies for e-retailers’ BT, namely, the government blockchain subsidy (GBS). In addition, in recent years, environmental degradation has become increasingly severe, causing negative impacts on people’s lives. To promote sustainable development, we use variational inequality to establish an e-commerce closed-loop supply chain (E-CLSC) network equilibrium model in which the network equilibrium decisions of e-retailers choosing the OLDSS and those choosing the SBLDSS are obtained. Then, we analyze the impact of the BT input cost and the GBS quota on equilibrium decisions by studying their properties and verifying the theoretical results by performing numerical examples. Finally, we analyze the profits of the e-retailers to obtain the impact of the BT input cost and the GBS quota on e-retailers’ choice of the optimal LDS strategy; in this way, we provide a scientific basis for e-retailers to choose the optimal LDS strategy. The results show that increasing the BT input costs reduces e-retailers’ product sales under the two LDS strategies, which decreases the production rate and the recovery rate of the products. When the BT input cost is low, SBLDSS is the best choice for e-retailers. When the BT input cost is high, OLDSS is the best choice for e-retailers. Moreover, there is a positive correlation between GBS and e-retailers’ product sales; thus, GBS is conducive to expanding market demand, regulating the profits of manufacturers, increasing the e-retailers’ profits, improving the enthusiasm of the e-retailers for BT investment, and promoting the overall development of supply chain enterprises. For e-retailers, choosing the OLDSS can lead to a better development of the E-CLSC.
区块链技术和政府区块链补贴下电子商务闭环供应链网络的最优物流配送服务策略
电子商务的蓬勃发展促进了物流配送服务(LDS)的多元化发展。对于物流配送服务,电子商务零售商(网络零售商)通常会选择外包物流配送服务战略(OLDSS)或自建物流配送服务战略(SBLDSS)。虽然在物流配送过程中存在产品丢失和损坏等问题,但区块链技术(BT)的高透明度和可追溯性特点有助于解决物流配送过程中的产品丢失和损坏问题。但由于 BT 成本较高,网络零售商可能会遇到销售额减少的问题,导致供应链企业利润下降。为了鼓励网络零售商的 BT 投资热情,调节企业利润,政府对网络零售商的 BT 实施补贴,即政府区块链补贴(GBS)。此外,近年来,环境恶化日益严重,给人们的生活带来了负面影响。为了促进可持续发展,我们利用变分不等式建立了电子商务闭环供应链(E-CLSC)网络均衡模型,在该模型中得到了选择 OLDSS 的网络零售商和选择 SBLDSS 的网络零售商的网络均衡决策。然后,我们分析了 BT 投入成本和 GBS 配额对均衡决策的影响,研究了它们的特性,并通过数值示例验证了理论结果。最后,分析网络零售商的利润,得出 BT 投入成本和 GBS 配额对网络零售商选择最优 LDS 策略的影响,从而为网络零售商选择最优 LDS 策略提供科学依据。结果表明,增加 BT 投入成本会降低两种 LDS 策略下网络零售商的产品销量,从而降低产品的生产率和回收率。当 BT 投入成本较低时,SBLDSS 是网络零售商的最佳选择。当 BT 投入成本较高时,OLDSS 是网络零售商的最佳选择。此外,GBS 与网络零售商的产品销量呈正相关关系,因此,GBS 有利于扩大市场需求,调节生产商的利润,增加网络零售商的利润,提高网络零售商对 BT 投入的积极性,促进供应链企业的整体发展。对于网络零售商来说,选择 OLDSS 可以使 E-CLSC 得到更好的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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