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June 3, 2026Agriculture0 citationsOpen Access

Research Status and Development Trends of Agricultural Machinery Chassis for Hilly and Mountainous Areas

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XWXinpeng WangQJQinghai JiangZSZhiyu Song

Key Points

  • To analyze the status and trends in agricultural machinery chassis development for hilly and mountainous regions, focusing on their mechanization challenges.
  • Conducted a systematic literature review of key technologies for agricultural machinery chassis.
  • Examined power transmission systems, support mechanisms, leveling control, and navigation tracking.
  • Identified trends towards intelligentization and improved adaptability in chassis technologies.
  • Chassis technology is advancing toward intelligentization with enhanced efficiency and sustainability.
  • Technological pathways are converging, exhibiting both mechanical and electric drive advancements.
  • Future priorities include intelligent control architectures, green power innovation, and modular design.

Abstract

Hilly and mountainous regions are strategically vital for national food security. However, due to complex topographical constraints, their agricultural mechanization levels remain severely underdeveloped. This creates a critical bottleneck in agricultural modernization. Conventional agricultural machinery faces multifaceted challenges in terrain adaptability, operational efficiency, and safety assurance when deployed in these environments, necessitating the urgent development of specialized chassis with enhanced trafficability and stability. Following a systematic literature review of key technologies, including power transmission systems, traveling and support mechanisms, leveling control, and navigation tracking, this study reveals that current chassis technology is advancing toward intelligentization, enhanced efficiency, environmental sustainability, and improved terrain adaptability. The analysis demonstrates that multiple technological pathways, encompassing mechanical, hydraulic, and electric drives, are exhibiting convergent and complementary trends. Future research and development should prioritize the following areas: integrated intelligent coordinated control architectures, green and sustainable power system innovation, modular and reconfigurable platform design, and the establishment of collaborative frameworks among industry, academia, research institutions, and application sectors. Comprehensive standardization systems are also needed. These strategic directions are essential for comprehensively elevating agricultural mechanization levels and maximizing developmental benefits in hilly and mountainous regions.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc530dee9eb8c0dce698ahttps://doi.org/10.3390/agriculture16111223
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