[AI88-3]查询企业简报聚合信息

get
https://connect.zhihuiya.com/eureka-pulse/tech-monitor-api/company-monitor/aggregated-info
在体验中心中试用

根据企业简报ID一次性查询企业简报的所有详细信息,包括基本信息、热点新闻、分组统计、概述、图表等数据聚合。可通过 [AI88-1] 获取企业简报列表(含企业简报ID)。

请求参数

此 API 接口支持的参数列表

名称类型示例描述
tech-monitor-id
必填
string0d68646fe871417ebe68a6905e698f24
企业简报ID
report_week
integer202620
企业简报报告期数

响应结构

API 响应数据的结构说明

字段名类型示例描述
data
object{}
企业简报聚合信息
status
booleantrue
请求响应状态
error_code
integer<int32>-
错误码

成功响应示例

成功调用 API 的响应示例

JSON
{
  "data": {
    "count": {
      "其他": {
        "news_ids": [],
        "item_count": 1,
        "tech_item_ids": [
          "a130bb07-6460-4aa8-873d-216acf43a4b5"
        ]
      },
      "新闻动态": {
        "news_ids": [
          "c151f5d9-033b-39ee-8f72-38698c0678c7",
          "2095a43d-f7f3-3c63-aca4-2d5207234b1b"
        ],
        "item_count": 2,
        "tech_item_ids": []
      },
      "比亚迪股份有限公司": {
        "news_ids": [],
        "item_count": 2,
        "tech_item_ids": [
          "30b3b687-248f-42c6-b34b-134c825efc90",
          "08249106-13c4-4c4d-ad4a-581ed2727f07"
        ]
      }
    },
    "hot_news": {
      "page": 1,
      "limit": 11,
      "total": 11,
      "records": [
        {
          "link": "https://www.electrive.com/2025/08/06/saic-launches-redesigned-mg4-with-semi-solid-state-battery-option/",
          "score": 5,
          "title": "上汽推出改款MG4,可选配半固态电池",
          "topics": [
            "热阻",
            "渗透测试",
            "能源消耗",
            "永磁电动机",
            "材料科学"
          ],
          "company": [
            "Tesla, Inc."
          ],
          "content": "这款电动车共有四种型号。这款紧凑型电动车基于上汽E3平台打造,配备120千瓦永磁电机。",
          "news_id": "d3433e1d-de8c-3bcf-bd94-fa82514190c1",
          "analysis": "新闻明确提及特斯拉上海工厂将量产人形机器人,与用户关注的人形机器人主题和特斯拉公司高度相关。这一举措代表了特斯拉在机器人制造领域的重大产能布局,具有重要的市场和技术意义,因此评分较高。",
          "sub_field_name": [
            "Tesla, Inc.",
            "新闻动态"
          ]
        }
      ],
      "has_next": false,
      "has_previous": false
    },
    "overview": {
      "coverage_note": "本期基于 14 件高相关度专利和 2 篇新闻报道,梳理了人形机器人关节在集成度、柔顺性、可靠性、传动精度等方面的技术方案与功效数据。",
      "overall_judgement": "### 人形机器人关节技术进展\n- **高集成度与小型化**:本期记录显示,人形机器人关节模组正朝着高集成度、小型化方向发展"
    },
    "basic_info": {
      "title": "锂电池能量密度",
      "industry": "锂电池",
      "created_at": "2026-07-17T02:08:15.262Z",
      "pulse_type": "COMPANY",
      "session_id": "0826177ba24e4ff49905766c91b8cc8e",
      "updated_at": "2026-07-17T02:08:15.262Z",
      "user_input": "如何提高锂电池的能量密度,重点筛选正极材料相关的技术",
      "intent_type": "TechKeyword",
      "paper_query": [
        "(高镍 正极 锂电池) OR (富锂 锰基 正极)"
      ],
      "core_subject": "锂电池能量密度提升",
      "patent_query": "(ALL_TECH:(\"锂电池\" OR \"锂离子电池\"))",
      "news_keywords": [
        "锂电池 能量 密度",
        "高镍 正极",
        "富锂 锰基 正极"
      ],
      "sub_field_list": [
        {
          "id": "d9e8a7aa582ef636e7bcb8741efbe030",
          "name": "比亚迪股份有限公司",
          "filter": [
            {
              "value": [
                "换热效率"
              ],
              "filter_key": "tech_route"
            }
          ],
          "data_scope": [
            "paper",
            "news"
          ],
          "classification_type": "tech"
        }
      ],
      "tech_monitor_id": "1893afcbc30444429a6915181e719082",
      "template_custom": {
        "summary": {
          "angle": "本期围绕'提高锂电池能量密度'这一技术问题,重点筛选正极材料相关的候选方案。"
        },
        "ai_fields": [
          {
            "field_key": "tech_means",
            "data_scope": [
              "invention_application",
              "invention_grant",
              "paper"
            ],
            "data_fields": [
              "ICLMS",
              "DESC",
              "ABST"
            ],
            "data_format": "text",
            "display_name": "技术手段",
            "enum_options": [
              "人形机器人"
            ]
          }
        ],
        "detail_module": {
          "mode": "split",
          "sub_modules": [
            {
              "name": "换热效率",
              "filter": [
                {
                  "value": [
                    "换热效率"
                  ],
                  "filter_key": "tech_route"
                }
              ],
              "data_scope": [
                "invention_application",
                "paper"
              ],
              "classification_type": "tech"
            }
          ]
        },
        "analysis_logic": "### 场景与目标\n用户输入'如何提高锂电池的能量密度,重点筛选正极材料相关的',属于技术方案检索场景。本次简报的核心目标是筛选出正极材料改性方向值得参考的候选技术方案,并区分其证据强弱。",
        "change_summary": "本次简报定位为**技术方案检索**场景,核心目标是围绕'提高锂电池能量密度',重点筛选正极材料相关的候选技术方案。",
        "typical_filters": [
          {
            "name": "玉米水稻抗虫技术",
            "filters": [
              {
                "value": [],
                "operator": "in",
                "field_key": "company"
              }
            ],
            "ai_fields": [],
            "judgement": "### 筛选目标\n挑出与玉米和水稻抗虫技术相关的典型技术样本。",
            "data_scope": [
              "invention_application",
              "paper"
            ],
            "card_fields": {
              "news": [
                "ai_summary",
                "event_type"
              ],
              "paper": [
                "tech_route",
                "abstract"
              ],
              "patent": [
                "tech_route",
                "technical_title"
              ]
            },
            "focus_guidance": "【事实核查】技术手段是什么;关键参数/结构特征;效果数据(如有);",
            "output_guidance": "display_summary_field_name: 抗虫技术看点\nextract_content_field_name: 技术手段与效果"
          }
        ]
      },
      "pre_compute_status": true,
      "classification_query": "IPC:(H01M4/ OR H01M10/) OR CPC:(H01M4/ OR H01M10/)"
    },
    "tech_items": [
      {
        "score": 6.6,
        "item_id": "dda8415b-31e1-4e21-addd-188c744dc3ea",
        "analysis": "该专利直接涉及富锂锰基正极材料的低锂化改性,通过构建层状-岩盐-尖晶石复合结构提升容量和循环性能,与‘锂电池能量密度提升’主题高度相关。创新点在于相组成调控与锂含量优化,属于渐进式改进。行业归属明确为锂电池领域。",
        "item_info": {
          "pn": "CN122158559A",
          "title": "一种具有层状-岩盐相-类尖晶石相复合结构的富锂锰基正极材料及其制备方法",
          "patent_id": "dda8415b-31e1-4e21-addd-188c744dc3ea",
          "llm_benefit": "材料在降低锂含量的情况下,表现出较高的充放电比容量和优秀的倍率性能,循环性能优异,成本也得以降低,适合工业化生产。"
        },
        "item_type": "patent",
        "sub_field_name": [
          "换热效率"
        ],
        "extracted_fields": {
          "tech_means": "通过降低锂含量(配锂量减少10%),制备以层状为主、含有少量岩盐相和类尖晶石相的复合结构富锂锰基正极材料,采用共沉淀法和高温固相法合成。"
        },
        "typical_candidate_tags": [
          "正极材料能量密度方案"
        ],
        "typical_extracted_fields": {
          "tech_means": "通过降低锂含量(配锂量减少10%),制备以层状为主、含有少量岩盐相和类尖晶石相的复合结构富锂锰基正极材料,采用共沉淀法和高温固相法合成。"
        }
      }
    ],
    "report_end_date": "20260711",
    "report_start_date": "20260705",
    "typical_tech_interpret": {}
  },
  "status": true,
  "error_code": 0
}

错误码

此接口可能返回的错误码列表

业务错误码

错误码描述
68300004请求参数异常!
68300005查询Api失败!
68300006解析基本存取错误!
68300007存在错误的请求!
68300008服务中断异常,请稍后再试!
68300010文件不符合上传规范!

平台错误码

错误码描述
67200001API整体限流错误!
67200002用户调用请求限流限制错误!
67200003申请token的key和secret不正确或者状态错误!
67200004无权限或该接口的套餐已超过系统设置的上限!
67200005账户余额不足,调用失败!
67200006客户端已过期,调用失败!
67200007超过调用额度,调用失败!

HTTP 状态码

状态码描述
0请求成功

性能指标

此接口的预期性能特征

正常响应时间

5000 ms

最大响应时间

10000 ms