WO2015062344A1 - 一种基于云平台物流智能送货方法及系统 - Google Patents

一种基于云平台物流智能送货方法及系统 Download PDF

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Publication number
WO2015062344A1
WO2015062344A1 PCT/CN2014/084615 CN2014084615W WO2015062344A1 WO 2015062344 A1 WO2015062344 A1 WO 2015062344A1 CN 2014084615 W CN2014084615 W CN 2014084615W WO 2015062344 A1 WO2015062344 A1 WO 2015062344A1
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logistics goods
logistics
cloud platform
transportation
goods
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PCT/CN2014/084615
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French (fr)
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王诗菡
贾西贝
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深圳市华傲数据技术有限公司
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Publication of WO2015062344A1 publication Critical patent/WO2015062344A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/08Logistics, e.g. warehousing, loading or distribution; Inventory or stock management
    • G06Q10/083Shipping
    • G06Q10/0833Tracking

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  • the field of logistics and transportation especially relates to a cloud-based logistics intelligent delivery method and system.
  • the present invention has been made to solve one of the above drawbacks. Therefore, the present invention provides a cloud platform logistics intelligent delivery method and system, and intelligently allocates a vehicle transportation and transportation route according to the logistics cargo information and the express station address information through the cloud platform, and the distribution center and the transportation vehicle carry out the cargo loading according to the instruction. Cargo transportation improves logistics delivery efficiency and reduces the cost of logistics delivery. Therefore, an embodiment of the present invention provides a cloud platform logistics intelligent delivery method, and the method includes the following steps:
  • the distribution center scans the logistics goods that are currently arriving at the distribution center batch, and transmits the scan information to the cloud platform, the scan information includes the weight, volume and final destination of the logistics goods;
  • the cloud platform summarizes the current distribution goods of the distribution center Information, using the geographic information of the express station to calculate the various logistics goods
  • the express delivery stations belonging to the goods are classified and numbered according to the subordinate express delivery stations;
  • the distribution center according to the cloud platform prompts and stacks the logistics goods belonging to the same express delivery station, the cloud platform is Distribution of transportation goods within the time period;
  • the cloud platform calculates the transportation route of each vehicle according to the address of the delivery station corresponding to the logistics goods delivered by each vehicle, and the distribution center loads the logistics goods onto the corresponding transportation vehicles according to the transportation line, and the transportation vehicle delivers according to the transportation line.
  • the logistics goods are classified according to the subordinate express delivery stations and numbered according to the number of the express delivery station.
  • the logistics cargo stack is stacked in the order of the logistics cargo number.
  • the cloud platform calculates, according to the courier address corresponding to the logistics goods delivered by each vehicle, a transportation list of each vehicle to generate an address list according to the courier address corresponding to the logistics goods for calculation.
  • the collection center loads the logistics cargo according to the transportation route and can be loaded in reverse order according to the transportation route.
  • the invention intelligently distributes the transportation and transportation path of the vehicle according to the logistics cargo information and the address information of the express delivery station through the cloud platform, and the distribution center and the transportation vehicle carry out the cargo loading and cargo transportation according to the instruction, thereby improving the logistics delivery efficiency and reducing the logistics delivery. the cost of.
  • Another embodiment of the present invention provides a cloud platform based intelligent delivery system, the system comprising the following steps:
  • a logistics cargo scanning unit configured for the distribution center to scan the logistics goods currently arriving at the distribution center batch, and transmit the scan information to the cloud platform, the scan information including the weight, volume and final destination of the logistics goods;
  • the logistics goods classification unit is used for collecting all current logistics goods information of the cloud platform summary distribution center, calculating the express delivery stations belonging to each logistics goods by means of the geographic information of the express delivery station, and classifying and numbering the logistics goods according to the subordinate express delivery stations;
  • a logistics goods distribution unit configured for the distribution center to pile up the logistics goods belonging to the same express station according to the cloud platform, and the cloud platform allocates the transportation vehicles to the logistics goods in a time period;
  • the logistics cargo transportation unit is used for the cloud platform to calculate the transportation route of each vehicle according to the address of the delivery station corresponding to the logistics goods delivered by each vehicle, and the distribution center loads the logistics goods onto the corresponding transportation vehicles according to the transportation line, and the transportation vehicle is The transport line is delivered.
  • the invention intelligently distributes the transportation and transportation path of the vehicle according to the logistics cargo information and the address information of the express delivery station through the cloud platform, and the distribution center and the transportation vehicle carry out the cargo loading and cargo transportation according to the instruction, thereby improving the logistics delivery efficiency and reducing the logistics delivery. the cost of.
  • FIG. 1 is a schematic flow chart of a method for intelligent delivery based on cloud platform logistics according to an embodiment of the present invention.
  • FIG. 2 is a schematic diagram of an undirected graph for calculating a transportation line according to an embodiment of the present invention.
  • the invention provides a method and a system for intelligent delivery based on cloud platform logistics.
  • the invention intelligently allocates a vehicle transportation and transportation route according to the logistics cargo information and the address information of the express delivery station through the cloud platform, and the distribution center and the transportation vehicle carry out the cargo loading according to the instruction.
  • Car and cargo transportation improve logistics delivery efficiency and reduce the cost of logistics delivery.
  • FIG. 1 is a schematic flow chart of a method for intelligent delivery based on cloud platform logistics provided by the present invention, which specifically includes the following steps:
  • Step S110 The distribution center scans the logistics goods that are currently arriving at the distribution center batch, and transmits the scan information to the cloud platform, where the scan information includes the weight, volume, and final destination of the logistics goods.
  • this step requires the collection center to scan the logistics goods that are currently arriving at the distribution center batch, and the scanning can be implemented in the form of a sensor, the scanning includes the weight, volume and finality of the logistics goods. destination.
  • the scan information is transmitted to the cloud platform.
  • Step S120 The cloud platform summarizes all current logistics goods information of the distribution center, and uses the geographical information of the express station Calculate the express station of each logistics goods, and classify and number the logistics goods according to the subordinate express delivery stations.
  • the step requires the cloud platform to summarize all the scanned information that is learned, and the cloud platform calculates the express station to which each logistics cargo belongs according to the geographic information of each express station, for example, according to the address of the express delivery station. information.
  • the logistics goods are classified and numbered according to the subordinate express delivery stations.
  • the logistics goods are classified according to the subordinate express delivery stations and numbered according to the number of the express delivery station.
  • Step S130 The distribution center prompts and distributes the logistics goods belonging to the same express station according to the cloud platform, and the cloud platform allocates the transportation vehicles to the logistics goods in one time period.
  • the distribution center needs to stack the logistics goods belonging to the same express delivery station in one place according to the prompt of the cloud platform, and the logistics goods stacking pairs are stacked in the order of the logistics goods number. Yunpingtai monitors the storage of logistics goods in real time, and distributes the transportation vehicles for the logistics goods within one time period.
  • the one time period can be a logistics cargo transportation period.
  • This step uses the backpack problem to distribute the transport vehicle.
  • the problem of the backpack means that the N vehicles are regarded as N backpacks, assuming that there are M cargoes to be allocated for loading, and the total weight of the transport vehicles is W, and the weight of each cargo is Wi (Wl, W2, ⁇ , Wm), the volume of the cargo is Ci (Cl, C2, ⁇ , Cm), this step is to achieve optimal loading, including:
  • N transport vehicles, traversing each vehicle, and then obtaining the weight and volume information of the vehicle;
  • the loading volume is greater than the total volume of the vehicle, the last item is taken out and the vehicle allocation process is ended; otherwise, the distribution result is directly output.
  • the recursive calculation is to determine whether the currently selected goods should be assigned to the corresponding transportation vehicle.
  • each item is numbered ⁇ 1, 2, ...., M ⁇
  • each layer recursion only considers the sub-problem of "putting the former i-item into the car of capacity W", so it is only necessary to consider whether to put the i-th item. If the i-th item is not placed, the result of this recursion is "put the first i-1 item into the volume of the car with the capacity W", thereby recursively judging whether the item is to be placed in the vehicle. conditions of, That is, the volume after the insertion and the volume cannot be greater than the total volume: put the current i-th item
  • the corresponding transportation vehicle result of the distribution of the logistics goods can be obtained, and the cloud platform statistically distributes the logistics goods number on a transportation vehicle and the corresponding delivery station to be delivered.
  • Step S140 The cloud platform calculates a transportation line of each vehicle according to the address of the delivery station corresponding to the logistics goods delivered by each vehicle, and the distribution center loads the logistics goods onto the corresponding transportation vehicle according to the transportation line, and the transportation vehicle according to the transportation line Make delivery.
  • the cloud platform calculates a transport list of each vehicle according to the address of the express station corresponding to the logistics goods delivered by each vehicle, and generates an address list according to the address of the express station corresponding to the logistics goods for calculation.
  • the cloud platform marks the address in the address list in the actual map, that is, the address of the delivery station of all the goods to be transported of the transportation vehicle is marked in the actual map, in order to be able to calculate the preferred transportation route, the present invention takes the actual map
  • the express station in the abstraction is abstracted into an undirected graph. As shown in Figure 2, the hub is abstracted as the starting and ending points of the route.
  • the connection between each two delivery points in the figure is abstracted according to the distance between the actual routes between the two delivery points.
  • the too far connection will be automatically abandoned by the system, such as delivery points A and D.
  • the connection between the two is too far, so only A, is reserved. with. , the connection between D.
  • a Hamiltonian loop from the obtained undirected graph, which is the delivery route of the car.
  • the route the distribution center to the pickup point C to the pickup point D to the pickup point B to the pickup point A and then return to the distribution center.
  • an undirected graph contains multiple Hamiltonian loops, but we just find a random one.
  • the calculation of the preferred delivery route can reduce the cost of logistics cargo transportation and improve transportation efficiency.
  • the distribution center loads the logistics goods onto the corresponding transportation vehicles according to the transportation line, and the loading of the logistics goods can be reversely loaded according to the transportation path, so as to facilitate the sequential unloading of the goods in each delivery when the express delivery stations are reached, thereby improving the efficiency of the goods distribution.
  • the transport vehicle is delivered according to the transport route.
  • the invention intelligently distributes the transportation and transportation path of the vehicle according to the logistics cargo information and the address information of the express delivery station through the cloud platform, and the distribution center and the transportation vehicle carry out the cargo loading and cargo transportation according to the instruction, thereby improving the logistics delivery efficiency and reducing the logistics delivery. the cost of.
  • Another embodiment of the present invention provides a cloud platform based intelligent delivery system, the system comprising the following steps:
  • a logistics cargo scanning unit configured for the distribution center to scan the logistics goods currently arriving at the distribution center batch, and transmit the scan information to the cloud platform, the scan information including the weight, volume and final destination of the logistics goods;
  • the logistics goods classification unit is used for collecting all current logistics goods information of the cloud platform summary distribution center, calculating the express delivery stations belonging to each logistics goods by means of the geographic information of the express delivery station, and classifying and numbering the logistics goods according to the subordinate express delivery stations;
  • a logistics goods distribution unit configured for the distribution center to pile up the logistics goods belonging to the same express station according to the cloud platform, and the cloud platform allocates the transportation vehicles to the logistics goods in a time period;
  • the logistics cargo transportation unit is used for the cloud platform to calculate the transportation route of each vehicle according to the address of the delivery station corresponding to the logistics goods delivered by each vehicle, and the distribution center loads the logistics goods onto the corresponding transportation vehicles according to the transportation line, and the transportation vehicle is The transport line is delivered.
  • the invention intelligently distributes the transportation and transportation path of the vehicle according to the logistics cargo information and the address information of the express delivery station through the cloud platform, and the distribution center and the transportation vehicle carry out the cargo loading and cargo transportation according to the instruction, thereby improving the logistics delivery efficiency and reducing the logistics delivery. the cost of.

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Abstract

一种基于云平台物流智能送货方法和系统。所述方法包括:集散中心对当前到达本集散中心批次的物流货物进行扫描,并将扫描信息传送到云平台;云平台汇总集散中心当前所有物流货物信息,按照分属的快递站对所述物流货物进行分类并编号;集散中心根据云平台提示并将分属相同快递站的物流货物堆放在一处;云平台计算运输线路,集散中心根据该运输线路将物流货物装载到对应的运输车辆上,运输车辆根据该运输线路进行送货。通过云平台根据物流货物信息和快递站地址信息智能分配车辆运输和运输路径,集散中心和运输车辆根据该指示进行货物装车和货物运输,提高了物流送货效率,降低了物流送货的成本。

Description

一种基于云平台物流智能送货方法及系统
技术领域
物流运输领域, 尤其涉及一种基于云平台物流智能送货方法及系统。
背景技术
随着商业智能技术和云计算技术的发展, 智能系统见诸于各工业应用领域, 物 流行业也在其中。 随着电子商务和网络购物的盛行, 物流需求空前巨大, 催生了众 多物流企业并带动了物流业的快速发展。 现有的物流系统中, 物流运输和传递过程 中, 物流货物运送到目的城市时先送到所属物流公司的集散中心, 然后再分配运输 车辆把这些物流货物运送到城市各物流快递站去。 在上述物流送货的过程中, 多数 环节都是依靠人力来完成, 不仅会导致物流运输资源的分配不合理或者浪费, 也影 响了物流业的效率。 为了解决这些问题, 有必要实现可以根据物流货物信息和快递 站地址信息智能分配车辆运输和运输路径的方法, 以实现对物流送货的智能化管 理, 以便提高了物流取货效率, 降低了物流取货的成本。
发明内容
为此, 本发明为了解决上述缺陷之一。 因而本发明提供一种基于云平台物流智能送货方法及系统, 通过云平台根据物 流货物信息和快递站地址信息智能分配车辆运输和运输路径, 集散中心和运输车辆 根据该指示进行货物装车和货物运输, 提高了物流送货效率, 降低了物流送货的成 本。 所以, 本发明一个实施例提供一种基于云平台物流智能送货方法, 所述方法包 括以下步骤:
集散中心对当前到达本集散中心批次的物流货物进行扫描, 并将扫描信息传送到云 平台, 所述扫描信息包括物流货物的重量、 体积和最终目的地; 云平台汇总集散中心当前所有物流货物信息, 借助快递站的地理信息计算各物流货 物分属的快递站, 按照分属的快递站对所述物流货物进行分类并编号; 集散中心根据云平台提示并将分属相同快递站的物流货物堆放在一处, 所述云平台 对一个时段内的物流货物分配运输车辆;
云平台根据每辆车配送的物流货物对应的快递站地址计算每辆车的运输线路, 集散 中心根据该运输线路将物流货物装载到对应的运输车辆上, 运输车辆根据该运输线 路进行送货。
优选地, 所述按照分属的快递站对所述物流货物进行分类并编号根据快递站的 编号进行。
优选地, 所述物流货物堆放对按物流货物编号顺序堆放。
优选地, 所述云平台根据每辆车配送的物流货物对应的快递站地址计算每辆车 的运输线路根据物流货物对应的快递站地址生成一个地址列表进行计算。
优选地, 所述集散中心根据该运输线路将物流货物装载可按照运输路径逆序进 行装载。 本发明通过云平台根据物流货物信息和快递站地址信息智能分配车辆运输 和运输路径, 集散中心和运输车辆根据该指示进行货物装车和货物运输, 提高了物 流送货效率, 降低了物流送货的成本。
本发明另一个实施例提供一种基于云平台物流智能送货系统, 所述系统包括以 下步骤:
物流货物扫描单元, 用于集散中心对当前到达本集散中心批次的物流货物进行扫 描, 并将扫描信息传送到云平台, 所述扫描信息包括物流货物的重量、 体积和最终 目的地;
物流货物分类单元, 用于云平台汇总集散中心当前所有物流货物信息, 借助快递站 的地理信息计算各物流货物分属的快递站, 按照分属的快递站对所述物流货物进行 分类并编号;
物流货物分配单元, 用于集散中心根据云平台提示并将分属相同快递站的物流货物 堆放在一处, 所述云平台对一个时段内的物流货物分配运输车辆; 物流货物运输单元, 用于云平台根据每辆车配送的物流货物对应的快递站地址计算 每辆车的运输线路, 集散中心根据该运输线路将物流货物装载到对应的运输车辆 上, 运输车辆根据该运输线路进行送货。 本发明通过云平台根据物流货物信息和快 递站地址信息智能分配车辆运输和运输路径, 集散中心和运输车辆根据该指示进行 货物装车和货物运输, 提高了物流送货效率, 降低了物流送货的成本。
附图说明
图 1 是本发明一个实施例提供的一种基于云平台物流智能送货的方法的流程示 意图。
图 2是本发明一个实施例提供的计算运输线路的无向图的示意图。
具体实施方式
为了使本发明的目的、 技术方案及优点更加清楚明白, 以下结合附图及实施例, 对本发明进行进一步的详细说明。 应当理解, 此处所描述的具体实施例仅仅用于解 释本发明, 并不用于限定本发明。
本发明提供一种基于云平台物流智能送货的方法及系统, 本发明通过云平台根 据物流货物信息和快递站地址信息智能分配车辆运输和运输路径, 集散中心和运输 车辆根据该指示进行货物装车和货物运输, 提高了物流送货效率, 降低了物流送货 的成本。
附图 1 是本发明提供的一种基于云平台物流智能送货的方法的流程示意图, 具 体包括以下步骤:
步骤 S 110 : 集散中心对当前到达本集散中心批次的物流货物进行扫描, 并将扫描信 息传送到云平台, 所述扫描信息包括物流货物的重量、 体积和最终目的地。 在本发明一个实施例中, 本步骤需要集散中心对当前到达本集散中心批次的物 流货物进行扫描, 所述扫描可以可才传感器的方式实现, 所述扫描包括物流货物的 重量、 体积和最终目的地。 所述扫描信息传送到云平台。
步骤 S 120: 云平台汇总集散中心当前所有物流货物信息, 借助快递站的地理信 息计算各物流货物分属的快递站, 按照分属的快递站对所述物流货物进行分类并编 号。
在本发明一个实施例中, 本步骤需要云平台对获悉的所有扫描信息进行汇总, 所述云平台根据各快递站的地理信息计算各物流货物所分属的快递站, 比如依据快 递站的地址信息。 并按照分属的快递站对所述物流货物进行分类并编号。 所述按照 分属的快递站对所述物流货物进行分类并编号根据快递站的编号进行。
步骤 S 130: 集散中心根据云平台提示并将分属相同快递站的物流货物堆放在一 处, 所述云平台对一个时段内的物流货物分配运输车辆。
在本发明一个实施例中, 本步骤需要集散中心按照云平台的提示将分属相同快 递站的物流货物堆放在一处, 所述物流货物堆放对按物流货物编号顺序堆放。 云平 台实时监控物流货物存放情况, 并对一个时段内的物流货物分配运输车辆, 所述一 个时段内可以为一个物流货物运输时段。 本步骤采用背包问题来分配运输车辆。 所 述背包问题是指将所述 N辆车看成 N个背包, 假设待分配装车的货物有 M个, 运 输车辆的总容重量为 W, 所述每个货物的重量为 Wi(Wl,W2,〜,Wm), 所述货物的 体积是 Ci (Cl,C2,〜,Cm), 本步骤即是实现最优装车, 具体包括:
已知: N辆运输车辆, 遍历每辆车, 进而获得车辆的重量和体积信息;
采用背包问题递归计算每辆车对应需装载的货物;
如装载体积大于所述车辆总体积, 则取出最后一件货物, 并结束该车辆分配过程; 否则, 直接输出分配结果。
在本步骤中, 所述递归计算为了判断当前选取的货物是否应该分配到所述对应 运输车辆上, 对于给定的 M个货物, 给每个货物一个编号 { 1, 2, ...., M}, 每一层递 归仅仅考虑 "将前 i件货物放入容量为 W的车中"这个子问题, 因此只需考虑是否 放第 i件商品。 如果不放第 i件货物, 那么这层递归的结果就是 "把前 i-1件物品放 入容量为 W的车中的体积和",由此得出递归判断这件物品是否要放入车辆的条件, 即放入后的体积和不能大于总的体积: 放入当前的第 i个物品之
Figure imgf000007_0001
后, 并不超出车的总重量的限制。
在本步骤中, 根据上述计算可以得到物流货物分配的对应的运输车辆结果, 云 平台统计分配到一辆运输车上的物流货物编号和对应要送到的快递站。
步骤 S 140: 云平台根据每辆车配送的物流货物对应的快递站地址计算每辆车的 运输线路, 集散中心根据该运输线路将物流货物装载到对应的运输车辆上, 运输车 辆根据该运输线路进行送货。
在本步骤中, 所述云平台根据每辆车配送的物流货物对应的快递站地址计算每 辆车的运输线路根据物流货物对应的快递站地址生成一个地址列表进行计算。 所述 云平台将该地址列表中的地址在实际地图中进行标记, 即将该运输车辆所有要运送 货物的快递站地址在实际地图中进行标记, 为了能够计算优选的运输线路, 本发明 把实际地图中的快递站抽象成一个无向图, 如图 2所示, 集散中心被抽象为路线的 起始点和终点。 图中每两个送货点之间的连线, 是系统根据两个快递点之间的实际 路线的距离抽象的, 过远的连线会被系统自动放弃, 如送货点 A和 D之间的连线 过远, 因此只保留 A、 。和。、 D之间的连线。 在本步骤中, 计算一个送货路径, 我们只需要从得到的无向图中找到一条哈密顿回路, 就是这辆车的送货路线。 如路 线: 集散中心至取货点 C至取货点 D至取货点 B至取货点 A再回到集散中心。 在实际问题中, 一个无向图中包含多条哈密顿回路, 但是我们只是找到随机的一条 即可。 经过计算优选的送货路径可以降低物流货物运送成本, 并可提高运输效率。
集散中心根据该运输线路将物流货物装载到对应的运输车辆上, 所述将物流货 物装载可按照运输路径逆序装载, 以便到达各快递站点时方便各货流货物的顺序卸 货, 提高货物配送效率。 运输车辆根据该运输线路进行送货。 本发明通过云平台根 据物流货物信息和快递站地址信息智能分配车辆运输和运输路径, 集散中心和运输 车辆根据该指示进行货物装车和货物运输, 提高了物流送货效率, 降低了物流送货 的成本。
本发明另一个实施例提供一种基于云平台物流智能送货系统, 所述系统包括以 下步骤:
物流货物扫描单元, 用于集散中心对当前到达本集散中心批次的物流货物进行扫 描, 并将扫描信息传送到云平台, 所述扫描信息包括物流货物的重量、 体积和最终 目的地;
物流货物分类单元, 用于云平台汇总集散中心当前所有物流货物信息, 借助快递站 的地理信息计算各物流货物分属的快递站, 按照分属的快递站对所述物流货物进行 分类并编号;
物流货物分配单元, 用于集散中心根据云平台提示并将分属相同快递站的物流货物 堆放在一处, 所述云平台对一个时段内的物流货物分配运输车辆;
物流货物运输单元, 用于云平台根据每辆车配送的物流货物对应的快递站地址计算 每辆车的运输线路, 集散中心根据该运输线路将物流货物装载到对应的运输车辆 上, 运输车辆根据该运输线路进行送货。 本发明通过云平台根据物流货物信息和快 递站地址信息智能分配车辆运输和运输路径, 集散中心和运输车辆根据该指示进行 货物装车和货物运输, 提高了物流送货效率, 降低了物流送货的成本。
以上内容是结合具体的优选实施方式对本发明所作的进一步详细说明, 不能认 定本发明的具体实施只局限于这些说明。 对于本发明所属技术领域的普通技术人员 来说, 在不脱离本发明构思的前提下, 还可以做出若干简单推演或替换。

Claims

^ ^
1. 一种基于云平台物流智能送货方法, 其特征在于, 所述方法包括以下步骤: 集散中心对当前到达本集散中心批次的物流货物进行扫描, 并将扫描信息传送到云 平台, 所述扫描信息包括物流货物的重量、 体积和最终目的地;
云平台汇总集散中心当前所有物流货物信息, 借助快递站的地理信息计算各物流货 物分属的快递站, 按照分属的快递站对所述物流货物进行分类并编号;
集散中心根据云平台提示并将分属相同快递站的物流货物堆放在一处, 所述云平台 对一个时段内的物流货物分配运输车辆;
云平台根据每辆车配送的物流货物对应的快递站地址计算每辆车的运输线路, 集散 中心根据该运输线路将物流货物装载到对应的运输车辆上, 运输车辆根据该运输线 路进行送货。
2. 根据权利要求 1所述的方法, 其特征在于, 所述按照分属的快递站对所述物流货 物进行分类并编号根据快递站的编号进行。
3. 根据权利要求 1所述的方法, 其特征在于, 所述物流货物堆放对按物流货物编号 顺序堆放。
4. 根据权利要求 1所述的方法, 其特征在于, 所述云平台对一个时段内的物流货物 分配运输车辆为一个物流货物运输时段。
5. 根据权利要求 1所述的方法, 其特征在于, 所述云平台根据每辆车配送的物流货 物对应的快递站地址计算每辆车的运输线路根据物流货物对应的快递站地址生成 一个地址列表进行计算。
6. 根据权利要求 1所述的方法, 其特征在于, 所述集散中心根据该运输线路将物流 货物装载可按照运输路径逆序进行装载。
7. 一种基于云平台物流智能送货系统, 其特征在于, 所述系统包括以下步骤: 物流货物扫描单元, 用于集散中心对当前到达本集散中心批次的物流货物进行扫 描, 并将扫描信息传送到云平台, 所述扫描信息包括物流货物的重量、 体积和最终 目的地;
物流货物分类单元, 用于云平台汇总集散中心当前所有物流货物信息, 借助快递站 的地理信息计算各物流货物分属的快递站, 按照分属的快递站对所述物流货物进行 分类并编号;
物流货物分配单元, 用于集散中心根据云平台提示并将分属相同快递站的物流货物 堆放在一处, 所述云平台对一个时段内的物流货物分配运输车辆;
物流货物运输单元, 用于云平台根据每辆车配送的物流货物对应的快递站地址计算 每辆车的运输线路, 集散中心根据该运输线路将物流货物装载到对应的运输车辆 上, 运输车辆根据该运输线路进行送货。
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
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CN112850220A (zh) * 2021-01-20 2021-05-28 平高集团有限公司 一种面向电气产品运输的非标件混合自动配车装车方法

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1791475A (zh) * 2003-04-16 2006-06-21 瑞得包裹邮递股份公司 用于分配包裹或类似的输送货物的方法和装置
US20090326971A1 (en) * 2008-06-30 2009-12-31 Ibm Corporation Method for managing package delivery
CN102147881A (zh) * 2010-02-09 2011-08-10 厦门雅迅网络股份有限公司 一种基于手机实现物流配送的方法
CN102496096A (zh) * 2011-11-25 2012-06-13 深圳市赛格导航科技股份有限公司 一种高效的物流调度系统和方法
CN103229199A (zh) * 2010-11-24 2013-07-31 德国邮政股份公司 动态线路规划
CN103544589A (zh) * 2013-10-31 2014-01-29 深圳市华傲数据技术有限公司 一种基于云平台物流智能送货方法及系统
CN103729750A (zh) * 2013-10-31 2014-04-16 深圳市华傲数据技术有限公司 一种基于云平台的物流仓储管理方法及系统

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1791475A (zh) * 2003-04-16 2006-06-21 瑞得包裹邮递股份公司 用于分配包裹或类似的输送货物的方法和装置
US20090326971A1 (en) * 2008-06-30 2009-12-31 Ibm Corporation Method for managing package delivery
CN102147881A (zh) * 2010-02-09 2011-08-10 厦门雅迅网络股份有限公司 一种基于手机实现物流配送的方法
CN103229199A (zh) * 2010-11-24 2013-07-31 德国邮政股份公司 动态线路规划
CN102496096A (zh) * 2011-11-25 2012-06-13 深圳市赛格导航科技股份有限公司 一种高效的物流调度系统和方法
CN103544589A (zh) * 2013-10-31 2014-01-29 深圳市华傲数据技术有限公司 一种基于云平台物流智能送货方法及系统
CN103729750A (zh) * 2013-10-31 2014-04-16 深圳市华傲数据技术有限公司 一种基于云平台的物流仓储管理方法及系统

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106683028A (zh) * 2015-11-05 2017-05-17 阿里巴巴集团控股有限公司 仓配网络的配置方法及装置
WO2021004474A1 (zh) * 2019-07-10 2021-01-14 中国民航信息网络股份有限公司 一种溯原旅客保护方法、装置和值机系统
TWI837897B (zh) * 2021-10-21 2024-04-01 韓商韓領有限公司 用於處理送貨資訊之電子設備及其方法

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