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聚焦智能体产业化,“智在灵玑”论坛在京举办,聚焦智能体产业化,“智在灵玑”论坛在京举办_我的网站

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一 |       北京8月21日电 (陶思阅)“智在灵玑”智能体产业协同发展论坛近日在北京举办。    

Wensuyalatu checks the growth of sour jujube seedlings. Photos: Chinanews.com
    Wensuyalatu checks the growth of sour jujube seedlings. Photos: Chinanews.comAcross the vast desert landscape of the Urad Rear Banner in North China's Inner Mongolia Autonomous Region, one grassroots official has spent more than three decades turning barren sands into patches of green.
Ecological restoration
For over 30 years, Wensuyalatu, a member of the leadership group of the Urad Rear Banner forestry and grassland bureau, has made the Gobi Desert his workplace, dedicating his life to combating desertification, advancing ecological restoration through technological innovation, and helping local herders increase their incomes, according to the local bureau's official WeChat account.
Located on the edge of the desert in Bayannur's Urad Rear Banner, it is a key area in China's Three-North Shelterbelt Forest Program, a major ecological project aimed at strengthening the country's northern ecological security barrier. 
However, early afforestation efforts in the desert were far from easy at the start.
The project covers 103,800 mu (about 6,920 hectares), including comprehensive treatment of 24,500 mu of desertified land, ecological restoration of 4,100 mu of non-desertified land, and 75,200 mu of enclosed grassland restoration. The project also includes the construction of 11 small-scale water conservation facilities, all of which required strict standards and extensive coordination.
The project also includes the construction of 11 small-scale water conservation facilities, all of which required strict standards and extensive coordination.
In 1991, Wensuyalatu, then in his early 20s, chose to devote himself to forestry and grassland conservation in the Urad Rear Banner. Since then, he has remained on the front lines of desertification control, witnessing the region's harshest environmental challenges and working to find solutions adapted to the fragile desert ecosystem.
In the early years, afforestation in the Gobi Desert was an extremely difficult task. The most critical planting season in spring often coincided with the strongest sandstorms of the year. Every year during the key afforestation period, Wensuyalatu would stay deep in the desert, guiding workers on planting techniques and management practices, while carefully overseeing every detail of the ecological restoration projects.
"Every spring, the wind and blown sand were so strong that it was hard to keep your eyes open. The sand hit your face like needles. During the day, we followed workers to dig holes and plant trees, and at night we stayed in temporary shelters to organize data and review the day's work. That was the normal routine for desertification fighters," Wensuyalatu recalled.
The road to restoring the desert was far from easy. Years of drought, low survival rates of seedlings, and skepticism from some local residents created major obstacles.
"At the beginning, it was really difficult. The climate was extremely dry, and many seedlings died after being planted. Some herders did not understand or support the work. They believed deserts were naturally barren and that no amount of effort could make trees grow there," Wensuyalatu said.
To change these perceptions, Wensuyalatu brought local residents to see firsthand the damage caused by desert expansion. Through visible results and long-term communication, he gradually won the understanding and support of the community.
Facing the ecological challenges of the Urad Rear Banner, Wensuyalatu began exploring new approaches beyond traditional restoration methods.
Staff members get ready to carry out aerial seeding operations.
    Staff members get ready to carry out aerial seeding operations.Aerial seeding
Since 2004, he has led efforts to tackle desert restoration challenges by introducing large-scale aerial seeding projects, creating a breakthrough approach for restoring degraded desert ecosystems in the region.
"Compared with traditional methods, aerial seeding is more efficient and can cover wider areas. Based on local climate and soil conditions, we select suitable desert plant seeds and precisely control the seeding height, density and timing to improve survival rates as much as possible and accelerate desert recovery," Wensuyalatu explained.
After years of effort, the aerial seeding projects under Wensuyalatu's leadership have restored more than 800,000 mu of desert land, with an effective restoration rate of 62.2 percent. 
He also developed an integrated management approach combining "protection, management, retreat, restoration and publicity," establishing a mixed vegetation system of trees, shrubs and grass to curb desert expansion and reduce sandstorms at their source.
Beyond restoring greenery, Wensuyalatu has also focused on strengthening scientific research and protecting native desert species.
Starting in 2010, he devoted himself to the artificial cultivation of endangered native desert plants. After more than a decade of repeated experiments, he successfully developed cultivation techniques for rare species such as the endangered evergreen broadleaf shrub Ammopiptanthus mongolicus, Mongolian almond and drought-resistant elm.
Under his leadership, his team cultivated 6.5 million seedlings and completed more than 4,000 mu of high-quality afforestation projects, with seedling survival rates consistently exceeding 80 percent. 
Engineering personnel operate drones to conduct aerial seeding as part of afforestation efforts in the Badain Jaran Desert in North China on June 17, 2025. Photo: VCG
    Engineering personnel operate drones to conduct aerial seeding as part of afforestation efforts in the Badain Jaran Desert in North China on June 17, 2025. Photo: VCGHis achievements filled a technological gap in large-scale cultivation of native desert plants and earned him second prize in the 2017 Inner Mongolia Autonomous Region Harvest Award.
For Wensuyalatu, desert restoration is not only about creating ecological benefits, but also about improving people's livelihoods.
He has long promoted the idea that "trees should bring both ecological value and economic value." By leveraging local desert resources, he helped establish a 10,000-mu industrial base for desert plants and cistanche - a medicinal plant often grown in desert environments - across four key local villages, integrating ecological restoration with specialty desert industries.
"In the past, people thought desertification control was simply about planting trees - it took a lot of efforts but brought little income. Now things are different. By planting trees and developing industries such as cistanche cultivation, desert land can generate real wealth," a local herder said.
To ensure that local communities benefit from ecological development, Wensuyalatu introduced enterprises, supported family forest farms and professional cooperatives, and promoted large-scale, market-oriented operations.
The once barren desert has gradually become a "green treasure chest" for local herders, achieving a win-win outcome: greener landscapes, improved ecosystems, stronger businesses and higher incomes.
"Desertification control is not just an ecological project, but also a project that benefits people," Wensuyalatu said. 
"Only when communities gain real benefits from protecting nature will they actively participate in ecological conservation. That is the key to making restoration efforts sustainable and achieving the vision that lucid waters and lush mountains are invaluable assets," Wensuyalatu said. 
Global Times

二 | 论坛围绕智能体技术创新、新型基础设施等议题展开研讨,致力于推动算力、模型、工具与行业场景衔接,助力智能体产业协同创新。

三 |   据介绍,当前,智能体已迈向产业化落地阶段。

四 | 智能体要实现自主执行、业务协同,不仅依靠模型能力,还需打通工具调用、数据互联、权限管控、多智能体协作等全流程环节。

五 | 在真实业务场景中,接口分散、复杂任务难落地、治理体系缺失、运行不稳定等问题普遍存在。  海光信息总裁助理郑武军介绍,智能体产业化同时涉及模型推理、数据处理、工具调用、业务逻辑和持续调度,需要依托开放生态网络串联上下游资源。  通明湖中心主任谢涛也表示,智能体规模化落地遇到的这些问题,属于产业走向企业级应用过程中产生的共性难题,需要一个面向智能体的“运行底座”。  谢涛补充道,“运行底座”不是传统操作系统的替代品,而是连接模型、数据、工具和计算资源的系统能力层基础设施。它可为智能体稳定运行、协同调度和安全治理提供系统支撑,并推动智能体从单点项目走向可复制的规模化应用。  与会人员达成共识:智能体产业化已进入系统能力构建的关键阶段,下一步,各方将持续深化技术共研与生态协作,合力推动智能体产业高质量发展,为数字经济与实体经济深度融合注入新动能。

六 |   据悉,本次论坛由北京通明湖信息技术应用创新中心、北京信息化协会信息技术应用创新工作委员会主办,海光信息承办。

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Published on:06:20:41


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