WO2020000202A1 - 基于大数据的电商物流调度系统 - Google Patents

基于大数据的电商物流调度系统 Download PDF

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Publication number
WO2020000202A1
WO2020000202A1 PCT/CN2018/092926 CN2018092926W WO2020000202A1 WO 2020000202 A1 WO2020000202 A1 WO 2020000202A1 CN 2018092926 W CN2018092926 W CN 2018092926W WO 2020000202 A1 WO2020000202 A1 WO 2020000202A1
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module
product
area
order
information
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PCT/CN2018/092926
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English (en)
French (fr)
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陈钦鹏
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深圳齐心集团股份有限公司
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Priority to PCT/CN2018/092926 priority Critical patent/WO2020000202A1/zh
Publication of WO2020000202A1 publication Critical patent/WO2020000202A1/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
    • G06Q30/00Commerce
    • G06Q30/06Buying, selling or leasing transactions

Definitions

  • the present invention relates to a logistics scheduling system, and more particularly, to a logistics scheduling system applied to e-commerce transactions.
  • the technical purpose of the present invention is to overcome the technical defect of wasted logistics costs incurred by the original way of returning the goods after the customer cancels the order when the e-commerce logistics dispatching system encounters an undelivered item in the prior art.
  • the big data-based e-commerce logistics scheduling system is implemented through the smart product and regional judgment module to temporarily cancel the order of the commodity and dispatch it to the new customers who order the product in the region through the departure module.
  • an e-commerce logistics scheduling system based on big data, including an order processing module, a warehousing distribution module, and a transportation module;
  • the order processing module is used to manage and process order information, and the order processing module includes a cancellation module and a smart commodity area judgment module;
  • the cancellation module is configured to send trigger information of order cancellation to a smart commodity area judgment module
  • the intelligent commodity area determination module is used to send the distribution information to the storage allocation module and the transportation module according to the generated order information, and to monitor the transportation status of the product in real time; and to determine the transportation status of the cancelled product according to the trigger information of the order cancellation. If the canceled product does not leave the warehouse, the control warehouse allocation module stops the distribution and the subsequent transportation procedures are terminated; if the canceled product has left the warehouse and is transported by the transport module, the intelligent commodity area judgment module issues an instruction to the transport module to control the transport The module puts the cancelled product into the temporary storage area in the destination warehouse. When a new order for the same product in the same area is obtained within a preset time, the smart product area judgment module issues an instruction to the destination storage module. The destination storage module controls the packaging processing module in the destination warehouse to perform new packaging processing for the cancelled goods, and sends it to the delivery area in the destination warehouse, and the delivery module transports it to the customers of the new order;
  • the storage allocation module is configured to receive a control instruction of a smart product area determination module, and allocate the products in the order information;
  • the transport module is used for transporting goods, and receives control instructions of the smart commodity area judgment module.
  • the cancelled product is placed in the temporary storage area for more than a preset time, the cancelled product is sent from the temporary storage area to the delivery area, and the cancelled product is returned to the original storage by the transportation module.
  • the transport module is transported to the destination warehouse after passing through one or more transit stations, and each transit station is also provided with a temporary storage area, a delivery area, a transit station module, and a packaging processing module; and each transit station The modules all communicate with the smart commodity area judgment module.
  • the smart commodity area judgment module controls the transport module to cancel the goods transportation Go to the temporary storage area in the transit station and wait for new orders to be generated.
  • the intelligent commodity area judgment module issues an instruction to the transit station module of the transit station, and the transit station module controls the interior of the transit station.
  • the destination storage module sends the status information of the canceled product to the smart product area determination module, which performs the same operation on the same product as the canceled product. mark.
  • the smart commodity area judgment module receives the order information of the marked goods, according to the destination information in the order information, the smart commodity area judgment module matches in the destination warehouse where the same goods are cancelled, If the address match is successful, the vehicle dispatch information is generated. If the address match is unsuccessful, the smart product area judgment module re-distributes the order information of the marked product for transportation.
  • the smart product area determination module deletes the tag information related to the canceled product.
  • the smart commodity area judgment module receives the order information of the same product as the cancelled product, it determines whether the temporary storage area in the destination warehouse or a nearby destination warehouse is based on the destination information in the order information. If there are the same products, if there is, then the packaging processing module in the destination warehouse or the nearby destination warehouse is controlled to perform new packaging processing on the canceled goods and generate the dispatch information; if not, the smart goods area judgment module is used. Newly assigned shipping information.
  • the packaging processing module in the destination warehouse inspects the cancelled product before performing new packaging processing on the cancelled product. If the canceled product is not damaged, the new packaging processing is performed, and if the cancelled product is damaged, it is reported To the smart commodity area judgment module, the smart commodity area judgment module issues a transportation instruction for the cancelled product to return to the original warehouse.
  • the e-commerce logistics dispatching system of the present invention uses the intelligent commodity area judgment module. After a customer cancels an order, the product does not immediately return to the original storage warehouse, but instead waits for new customer orders in the area at the destination warehousing place within a specified time. The cost of repeated transportation of logistics.
  • the marking distribution method of the e-commerce logistics dispatching system of the present invention can distinguish the same products from the canceled products from normal products, and manage the distribution separately, thereby improving the distribution efficiency, and also improving the e-commerce of the present invention. Compatibility of logistics scheduling system with traditional logistics scheduling system.
  • the e-commerce logistics scheduling system of the present invention adopts a priority allocation method.
  • the destination warehouse where the order information is located and the nearby destination warehouse are preferentially selected to shorten the order.
  • the waiting time of canceled goods can avoid unnecessary logistics repeated transportation.
  • the matching is targeted, the allocation speed is fast, and the allocation efficiency can be improved.
  • the e-commerce logistics dispatching system of the present invention is also provided with a temporary storage area and a delivery area in the transfer station, and the intelligent commodity area judgment module can also monitor the transportation situation in the transfer station in real time to avoid the repeated transportation of the cancelled goods. Improve the utilization rate of the transportation module and reduce the repeated transportation cost of logistics.
  • FIG. 1 is a structural block diagram of an embodiment of the invention
  • FIG. 2 is a structural block diagram of another embodiment of the invention.
  • Order processing module 2. Warehouse allocation module; 3. Transportation module; 4. Destination storage module; 11. Cancel module; 12. Intelligent commodity area judgment module; 41. Temporary storage area; 42. Delivery area 43. Packaging processing module; 51. Transit station module; 51. Temporary storage area; 52. Delivery area; 53. Packaging processing module;
  • a big data-based e-commerce logistics dispatching system includes an order processing module 1, a storage distribution module 2, and a transportation module 3.
  • the order processing module 1 is used to manage and process order information.
  • the order processing module 1 further includes a cancellation module 11 and a smart commodity area judgment module 12.
  • the cancellation module 11 is configured to send the trigger information of the order cancellation to the smart commodity area determination module 12.
  • the intelligent commodity area determination module 12 is used to send the distribution information to the storage allocation module 2 and the transportation module 3 according to the generated order information, and to monitor the transportation status of the product in real time; it also determines the transportation of the cancelled product according to the trigger information of the order cancellation. State, if the cancelled product does not leave the warehouse, control the storage allocation module 2 to stop the distribution, and the subsequent transportation process is terminated; if the cancelled product has been discharged from the warehouse, and is transported by the transportation module 3, the intelligent commodity area judgment module 12 sends the transportation module 3 Issue an instruction to control the transportation module 3 to put the cancelled product into the temporary storage area 41 in the destination warehouse.
  • the smart product area judgment module 12 Issue an instruction to the destination storage module 4, and the destination storage module 4 controls the packaging processing module 43 in the destination storage to perform new packaging processing on the cancelled goods, and send it to the delivery area 42 in the destination storage.
  • the module is shipped to the customer for this new order.
  • the warehouse allocation module 2 is configured to receive the control instruction of the smart commodity area judgment module 12 and allocate the commodities in the order information.
  • the transport module 3 is used for transporting commodities, and receives control instructions from the smart commodity area judgment module 12.
  • the normal transportation process is as follows: When a customer places an order, the order processing module 1 issues distribution transportation information according to the order information, and the warehouse distribution module 2 receives the distribution information, performs quality inspection, packaging, etc. and issues transportation information, and the transportation module 3 After receiving the transportation information, the product is transported from the original storage of the product to the storage of the destination. After reaching the storage of the destination, the product is sent to the delivery area, and the car module is used to transport the product to the customer. The entire product transportation process The distribution and transportation status of the products are monitored by the order processing module 1 in real time.
  • the transportation process after canceling the order is as follows: when the customer places an order, the order is suddenly canceled, the cancellation module 11 sends the trigger information of the order cancellation to the smart product area determination module 12, and the smart product area determination module 12 determines the cancelled product based on the order information Shipping status.
  • control warehouse allocation module 2 stops the distribution and the subsequent transportation procedure is terminated.
  • the intelligent commodity area judgment module 12 issues an instruction to the transport module to let the transport module 3 put the canceled product in the destination warehouse Temporary storage area, waiting for new orders;
  • the smart product area judgment module 12 issues an instruction to the destination storage module 4, and the destination storage module 4 controls the The packaging processing module 43 performs a new packaging process for the cancelled product, and sends it to the delivery area 42 in the destination warehouse, and the transportation module transports it to the customer of the new order.
  • the cancelled product is sent from the temporary storage area 41 to the delivery area 42 and the cancelled product is returned to the original storage by the transportation module 3.
  • the return of the transport module 3 to the original warehouse also belongs to other distribution systems, and the cancelled products are transported to the original warehouse along with other distributed products, which can save transportation costs.
  • a method for allocating the mark of the canceled product by the smart product area determination module 12 is as follows.
  • the destination storage module 4 sends the status information of the canceled product to the smart product area determination module 12, and the smart product area determination module 12 marks the same product as the canceled product. .
  • the smart commodity area judgment module 12 When the smart commodity area judgment module 12 receives the order information of the marked goods, according to the destination information in the order information, the smart commodity area judgment module 12 matches in the destination warehouse where the same cancelled product is located. If the addresses match If it is successful, the vehicle dispatch information is generated. If the address matching is unsuccessful, the smart product area judgment module 12 re-distributes the order information of the marked product for transportation.
  • the smart product area determination module 12 deletes the tag information related to the canceled product.
  • the marked product can be marked multiple times. For each canceled item in the temporary storage area that is the same as the marked product, the marked number of marked products is reduced by 1.
  • the above-mentioned mark distribution method can be used to distinguish the same products from the canceled products from normal products, and separately manage the delivery, thereby improving the distribution efficiency.
  • a priority allocation method for the canceled product by the smart product area determination module 12 is as follows.
  • the intelligent commodity area determination module 12 determines whether there are identical products in the temporary storage area 41 in the destination warehouse or a nearby destination warehouse according to the destination information in the order information. If yes, control the packaging processing module 43 in the destination warehouse or the nearby destination warehouse to perform new packaging processing on the cancelled goods and generate the car dispatch information; if not, the smart goods area judgment module 12 creates a new Assign shipping information.
  • the above-mentioned priority allocation method is used.
  • the destination warehouse where the order information is located and nearby destination warehouses are preferentially filtered to shorten the waiting time of the cancelled product.
  • Targeted, fast allocation speed can improve allocation efficiency.
  • the packaging processing module 43 in the destination warehouse inspects the cancelled product before performing new packaging processing on the cancelled product. If the cancelled product is not damaged, it performs new packaging processing. If the cancelled product is damaged, it is reported to the smart
  • the commodity area judgment module 12 issues a transportation instruction for the cancelled commodity to return to the original storage by the intelligent commodity area judgment module 12 to ensure the quality of the goods being transported.
  • the e-commerce logistics dispatching system of the present invention uses the intelligent commodity area judgment module. After a customer cancels an order, the product does not immediately return to the original warehouse, but instead waits for new customer orders in the area at the destination warehouse in the specified time, reducing the logistics. Repeat shipping costs.
  • the transportation module 3 in Embodiment 2 needs to pass through one or more transit stations before being delivered to the destination warehouse.
  • FIG. 2 shows a case where the number of transfer stations is two. It should be noted that the number of the transfer stations is only for better explanation of this embodiment, and is not intended to narrow the protection scope of this embodiment.
  • Each transit station is also provided with a temporary storage area 51, a delivery area 52, a transit station module 5, and a packaging processing module 53; and each transit station module 5 communicates with the intelligent commodity area judgment module 12.
  • the normal transportation process is as follows: When a customer places an order, the order processing module 1 issues distribution transportation information according to the order information, and the warehouse distribution module 2 receives the distribution information, performs quality inspection, packaging, etc. and issues transportation information, and the transportation module 3 After receiving the transportation information, the product will depart from the original warehouse to one or more transit stations, and then be transported to the destination's warehouse. After reaching the destination's warehouse, the goods will be sent to the delivery area. Shipped to the customer, during the entire product transportation process, the distribution and transportation status of the products are monitored by the order processing module 1 in real time.
  • the transportation process after canceling an order is as follows: After the smart product area determination module 12 receives the trigger information of the order being cancelled, if it is determined that the cancelled product is being transported to or has been transported to any transit station, the smart product area determination module 12 Control the transportation module 3 to transport the cancelled goods to the temporary storage area 51 in the transit station, and wait for a new order to be generated.
  • the smart product area judgment module 12 issues an instruction to the transit station module 5 of the transit station, and the transit station module 5 controls the transit
  • the packaging processing module 53 in the station performs a new packaging process on the cancelled product, and sends it to the delivery area 52 in the transfer station, and the transportation module in the transfer station transports it to the customer of the new order.
  • the transfer station module 5 controls the packaging processing module 53 in the transfer station to perform new packaging processing on the cancelled product. And it is sent to the delivery area 52 in the transit station, transported by the transportation module to the delivery area of the destination warehouse, and then delivered to the customer of the new order by the delivery module in the destination warehouse.
  • the cancelled product is sent from the temporary storage area 51 to the delivery area 52, and the cancelled product is returned to the original storage by the transportation module 3.
  • the return of the transport module 3 to the original warehouse also belongs to other distribution systems, and the cancelled goods are transported to the original warehouse along with other distributed goods, which can save transportation costs.
  • the smart product area judgment module arranges the transportation module to cancel the original product storage of the product delivery.
  • the intelligent product area judgment module arranges the transportation module to return the cancelled product to the original warehouse.
  • the e-commerce logistics dispatching system of the present invention is also provided with a temporary storage area and a delivery area in the transfer station, and the intelligent commodity area determination module can also monitor the transportation situation in the transfer station in real time, avoiding repeated transportation of the canceled goods, and improving transportation
  • the utilization of the module reduces the repeated transportation costs of logistics.
  • the original storage, destination storage, and transit station in the e-commerce logistics dispatching system of the present invention can be used as destination storage / original storage / transit station in other orders, which is convenient for adapting to the operation calculation rules of the e-commerce logistics dispatching system of the present invention.

Abstract

本发明提供了一种基于大数据的电商物流调度系统,包括订单处理模块、仓储分配模块、运输模块;所述订单处理模块用于管理和处理订单信息,所述订单处理模块包括取消模块、智能商品区域判断模块;所述取消模块用于将订单取消的触发信息发送给智能商品区域判断模块;所述智能商品区域判断模块用于根据所生成的订单信息向仓储分配模块、运输模块发出分配运输信息,并实时监控商品的运输状态。本发明的电商物流调度系统通过智能商品区域判断模块,客户取消订单后,商品并不立即返回原始仓储仓库,而是在规定时间内在原地等待该区域新客户订单,减少了物流的重复运输成本。

Description

基于大数据的电商物流调度系统 技术领域
本发明涉及一种物流调度系统,更具体的说,涉及一种应用于电子商务交易中的物流调度系统。
背景技术
在现有技术中,大数据信息作为一种制定计划的标准和预测的基础数据,已经应用到越来越多的行业中,当前电子商务交易的核心关键,除了选择商品后支付款项,剩下的就是物流系统的运作,因为客户选择了商品并支付了款项,就需要尽快的得到所购物品。而当前物流调度中,针对于客户订单在还未送货时的紧急退货,处理方式一般是将物品重新运回仓库,再进行换新包装后入库。这种情况在该区域的客户重新订购该商品时,是重新来一次新的物流运输。浪费了物流运输费用。当前电商物流的调度系统中存在的技术缺陷,成为本领域技术人员急待解决的技术问题。
发明内容
本发明的技术目的是克服现有技术中,电商物流调度系统在遇到未送达物品时出现客户取消订单后,原路运回商品的而产生的浪费物流费用的技术缺陷,提供一种通过智能商品与区域判断模块,来实现临时将取消订单商品调度,并通过发车模块派送到该区域订购该商品的新客户手中的基于大数据的电商物流调度系统。
为实现以上技术目的,本发明的技术方案是:一种基于大数据的电商物流调度系统,包括订单处理模块、仓储分配模块、运输模块;
所述订单处理模块用于管理和处理订单信息,所述订单处理模块包括取消模块、智能商品区域判断模块;
所述取消模块用于将订单取消的触发信息发送给智能商品区域判断模块;
所述智能商品区域判断模块用于根据所生成的订单信息向仓储分配模块、运输模块发出分配运输信息,并实时监控商品的运输状态;还根据订单取消的触发信息,判断被取消商品的运输状态,如果被取消商品并未出仓,则控制仓储分配模块停止分配,后续运输程序终止;如果被取消商品已出仓,由运输模块运输,则智能商品区域判断模块向运输模块发出指令,控制运输模块将被取消商品放入到目的地仓储内的暂存区,在预设时间内,当获得相同区域中相同商品的新订单时,则由智能商品区域判断模块向目的地仓储模块发出指令,由目的地仓储模块控制目的地仓储内的包装处理模块给被取消商品进行新包装处理,并送入到目的地仓储内的派送区,由派车模块运输到该新订单的客户手中;
所述仓储分配模块用于接收智能商品区域判断模块的控制指令,并对订单信息中的商品进行分配;
所述运输模块用于对商品进行运输,并接收智能商品区域判断模块的控制指令。
进一步的,如果被取消商品放入到暂存区的时间超过预设时间,则将被取消商品由暂存区送入到派送区,由运输模块将被取消商品返回至原始仓储。
进一步的,所述运输模块经过1个或多个中转站后输送至目的地仓储,每个中转站内也都设有暂存区、派送区、中转站模块、包装处理模块;且每个中转站模块都与智能商品区域判断模块进行通信。
进一步的,当智能商品区域判断模块接收到订单被取消的触发信息后,如 果判断被取消商品正被运输至或已运输到中转站后,则智能商品区域判断模块控制运输模块将被取消商品运输至该中转站中的暂存区内,等待新的订单产生。
进一步的,在预设时间内,当获得该中转站附近区域中相同商品的新订单时,则由智能商品区域判断模块向该中转站的中转站模块发出指令,由中转站模块控制该中转站内的包装处理模块给被取消商品进行新包装处理,并送入到该中转站内的派送区,由该中转站内派车模块运输到该新订单的客户手中。
进一步的,当被取消商品送至暂存区后,由目的地仓储模块将被取消商品的状态信息发送给智能商品区域判断模块,所述智能商品区域判断模块对与被取消商品相同的商品进行标记。
进一步的,所述智能商品区域判断模块当接收被标记商品的订单信息时,根据订单信息中的目的地信息,由智能商品区域判断模块在商品相同的被取消商品所在的目的地仓储中匹配,如果地址匹配成功,则生成派车信息,如果地址匹配不成功,则由智能商品区域判断模块重新对被标记商品的订单信息进行重新分配运输。
进一步的,当被取消商品生成新的派车信息后,则智能商品区域判断模块对与该被取消商品的标记信息消除。
进一步的,所述智能商品区域判断模块当接收与被取消商品相同商品的订单信息时,根据该订单信息中目的地信息,判断该目的地仓储或其附近的目的地仓储内的暂存区是否有相同商品,如果有,则控制该目的地仓储或其附近的目的地仓储内的包装处理模块给被取消商品进行新包装处理,并生成派车信息;如果没有,则由智能商品区域判断模块新建分配运输信息。
进一步的,目的地仓储内的包装处理模块对被取消商品进行新包装处理之 前,对被取消商品进行检验,如果被取消商品无损,则在进行新包装处理,如果被取消商品受损,则上报给智能商品区域判断模块,由智能商品区域判断模块下发被取消商品返回原始仓储的运输指令。
本发明的一种基于大数据的电商物流调度系统,具有以下有益效果:
1、本发明的电商物流调度系统通过智能商品区域判断模块,客户取消订单后,商品并不立即返回原始仓储仓库,而是在规定时间内在目的地仓储原地等待该区域新客户订单,减少了物流的重复运输成本。
2、本发明的电商物流调度系统的采用标记的分配方法可以将与被取消商品相同的商品与正常的商品区分开来,分别管理分配,进而提高分配效率,还可以提高本发明的电商物流调度系统与传统物流调度系统的兼容性。
3、本发明的电商物流调度系统的采用优先分配方法,当将与被取消商品相同的商品产生订单时,则优先从订单信息所在的目的地仓储以及其附近的目的地仓储进行筛选,缩短被取消商品的等待时间,避免不必要的物流重复运输,其匹配具有针对性,分配速度快,能够提高分配效率。
4、本发明的电商物流调度系统在中转站中也设有暂存区和派送区,且利用智能商品区域判断模块也可以实时监控中转站中的运输情况,避免被取消商品被重复运输,提高运输模块的利用率,减少了物流的重复运输成本。
本实用新型附加的方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本实用新型的实践了解到。
附图说明
图1是发明的一个实施例的结构框图;
图2是发明的另一个实施例的结构框图;
图中,1、订单处理模块;2、仓储分配模块;3、运输模块;4、目的地仓储模块;11、取消模块;12、智能商品区域判断模块;41、暂存区;42、派送区;43、包装处理模块;51、中转站模块;51、暂存区;52、派送区;53、包装处理模块;
具体实施方式
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本发明,而不能理解为对本发明的限制。
实施例1
本发明的一个实施例中,如图1所示,一种基于大数据的电商物流调度系统,包括订单处理模块1、仓储分配模块2、运输模块3。
如图1所示,订单处理模块1用于管理和处理订单信息,订单处理模块1还包括取消模块11、智能商品区域判断模块12。
取消模块11用于将订单取消的触发信息发送给智能商品区域判断模块12。
智能商品区域判断模块12用于根据所生成的订单信息向仓储分配模块2、运输模块3发出分配运输信息,并实时监控商品的运输状态;还根据订单取消的触发信息,判断被取消商品的运输状态,如果被取消商品并未出仓,则控制仓储分配模块2停止分配,后续运输程序终止;如果被取消商品已出仓,由运输模块3运输,则智能商品区域判断模块12向运输模块3发出指令,控制运输模块3将被取消商品放入到目的地仓储内的暂存区41,在预设时间内,当获得相同区域中相同商品的新订单时,则由智能商品区域判断模块12向目的地仓储 模块4发出指令,由目的地仓储模块4控制目的地仓储内的包装处理模块43给被取消商品进行新包装处理,并送入到目的地仓储内的派送区42,由派车模块运输到该新订单的客户手中。
仓储分配模块2用于接收智能商品区域判断模块12的控制指令,并对订单信息中的商品进行分配。
运输模块3用于对商品进行运输,并接收智能商品区域判断模块12的控制指令。
正常运输流程如下:当客户下单时,订单处理模块1根据订单信息下发分配运输信息,仓储分配模块2接收到分配信息后将商品进行质检、包装等并下发运输信息,运输模块3接收到运输信息后,从商品的原始仓储出发向目的地所在仓储进行运输,达到目的地所在仓储后将商品送入到派送区,由派车模块将商品运输到客户手中,整个商品运输过程中,商品的分配运输状态都由订单处理模块1进行实时监控。
取消订单后的运输流程如下:当客户下单后,突然取消订单,取消模块11将订单取消的触发信息发送给智能商品区域判断模块12,智能商品区域判断模块12根据订单信息,判断被取消商品的运输状态。
如果被取消商品并未出仓(即并未出原始仓储),则控制仓储分配模块2停止分配,后续运输程序终止。
如果被取消商品已出仓(即已出原始仓储),由运输模块3运输,则智能商品区域判断模块12向运输模块发出指令,让运输模块3将被取消商品放入到目的地仓储内的暂存区,等待新的订单产生;
如果等待时间在预设时间内,当获得相同区域中相同商品的新订单时,则 由智能商品区域判断模块12向目的地仓储模块4发出指令,由目的地仓储模块4控制目的地仓储内的包装处理模块43给被取消商品进行新包装处理,并送入到目的地仓储内的派送区42,由派车模块运输到该新订单的客户手中。
如果等待时间超出预设时间,则将被取消商品由暂存区41送入到派送区42,由运输模块3将被取消商品返回至原始仓储。其中,运输模块3返回至原始仓储也是属于其他配送系统中,而被取消商品随着其他配送商品一起运输至原始仓储,这样可以节省运输成本。
智能商品区域判断模块12对取消商品的一种标记分配方法如下。
当被取消商品送至暂存区41后,由目的地仓储模块4将被取消商品的状态信息发送给智能商品区域判断模块12,智能商品区域判断模块12对与被取消商品相同的商品进行标记。
智能商品区域判断模块12当接收被标记商品的订单信息时,根据订单信息中的目的地信息,由智能商品区域判断模块12在商品相同的被取消商品所在的目的地仓储中匹配,如果地址匹配成功,则生成派车信息,如果地址匹配不成功,则由智能商品区域判断模块12重新对被标记商品的订单信息进行重新分配运输。
当被取消商品生成新的派车信息后,则智能商品区域判断模块12对与该被取消商品的标记信息消除。
此外,被标记商品可以被多次标记,暂存区每减少一个与被标记商品相同商品的被取消商品,则被标记商品的被标记次数减1。
上述采用标记分配方法可以将与被取消商品相同的商品与正常的商品区分开来,分别管理派送,进而提高分配效率。
智能商品区域判断模块12对取消商品的一种优先分配方法如下。
智能商品区域判断模块12当接收与被取消商品相同商品的订单信息时,根据该订单信息中目的地信息,判断该目的地仓储或其附近的目的地仓储内的暂存区41是否有相同商品,如果有,则控制该目的地仓储或其附近的目的地仓储内的包装处理模块43给被取消商品进行新包装处理,并生成派车信息;如果没有,则由智能商品区域判断模块12新建分配运输信息。
上述采用优先分配方法,当将与被取消商品相同的商品产生订单时,则优先从订单信息所在的目的地仓储以及其附近的目的地仓储进行筛选,缩短被取消商品的等待时间,其匹配有针对性,分配速度快,能够提高分配效率。
目的地仓储内的包装处理模块43对被取消商品进行新包装处理之前,对被取消商品进行检验,如果被取消商品无损,则在进行新包装处理,如果被取消商品受损,则上报给智能商品区域判断模块12,由智能商品区域判断模块12下发被取消商品返回原始仓储的运输指令,确保商品被运输的质量。
本发明的电商物流调度系统通过智能商品区域判断模块,客户取消订单后,商品并不立即返回原始仓储,而是在规定时间内在目的地仓储原地等待该区域新客户订单,减少了物流的重复运输成本。
实施例2
本发明的另一个实施例中,相比实施例1,实施例2中的运输模块3需要经过1个或多个中转站后才输送至目的地仓储。图2为中转站个数为2的情况,需要说明的是该中转站的数量只是为了更好的解释说明本实施例,并不是为了缩小本实施例的保护范围。
每个中转站内也都设有暂存区51、派送区52、中转站模块5、包装处理模 块53;且每个中转站模块5都与智能商品区域判断模块12进行通信。
正常运输流程如下:当客户下单时,订单处理模块1根据订单信息下发分配运输信息,仓储分配模块2接收到分配信息后将商品进行质检、包装等并下发运输信息,运输模块3接收到运输信息后,从商品的原始仓储出发途径1个或多个中转站,然后向目的地所在仓储进行运输,达到目的地所在仓储后将商品送入到派送区,由派车模块将商品运输到客户手中,整个商品运输过程中,商品的分配运输状态都由订单处理模块1进行实时监控。
取消订单后的运输流程如下:当智能商品区域判断模块12接收到订单被取消的触发信息后,如果判断被取消商品正被运输至或已运输到任一个中转站后,则智能商品区域判断模块12控制运输模块3将被取消商品运输至该中转站中的暂存区51内,等待新的订单产生。
如果等待时间在预设时间内,获得该中转站附近区域中相同商品的新订单,则由智能商品区域判断模块12向该中转站的中转站模块5发出指令,由中转站模块5控制该中转站内的包装处理模块53给被取消商品进行新包装处理,并送入到该中转站内的派送区52,由该中转站内派车模块运输到该新订单的客户手中。
如果等待时间在预设时间内,获得与被取消商品原始订单相同目的地、相同商品的新订单时,由中转站模块5控制该中转站内的包装处理模块53给被取消商品进行新包装处理,并送入到该中转站内的派送区52,由运输模块运输至目的地仓储的派送区,再由目的地仓储内的派车模块运输到该新订单的客户手中。
如果等待时间超出预设时间,则将被取消商品由暂存区51送入到派送区52,由运输模块3将被取消商品返回至原始仓储。其中,运输模块3返回至原始仓 储也是属于其他配送系统中,而被取消商品随着其他配送商品一起运输至原始仓储,这样可以节省运输成本。
如果被取消商品被取消次数超过一定数量时,则由智能商品区域判断模块安排运输模块将取消商品输送会原始仓储。
例如当被取消商品的被取消次数设置为2时,被取消商品送入中转站的暂存区后,产生与被取消商品目的地相同、商品相同的新订单,且智能商品区域判断模块已经将该被取消商品分配给该新订单后,又被客户取消,则由智能商品区域判断模块安排运输模块将取消商品送回至原始仓储。
需要说明的是上述被取消次数设置为2只是为了更好的解释说明本实施例,并不影响本实施例的保护范围。
本发明的电商物流调度系统在中转站中也设有暂存区和派送区,且利用智能商品区域判断模块也可以实时监控中转站中的运输情况,避免被取消商品被重复运输,提高运输模块的利用率,减少了物流的重复运输成本。
本发明的电商物流调度系统中的原始仓储、目的地仓储、中转站可以作为其他订单中的目的地仓储/原始仓储/中转站等,便于适应本发明的电商物流调度系统调度运算规则。
尽管上面已经示出和描述了本实用新型的实施例,可以理解的是,上述实施例是示例性的,不能理解为对本实用新型的限制,本领域的普通技术人员在不脱离本实用新型的原理和宗旨的情况下在本实用新型的范围内可以对上述实施例进行变化、修改、替换和变型。本实用新型的范围由所附权利要求极其等同限定。

Claims (10)

  1. 一种基于大数据的电商物流调度系统,其特征在于:包括订单处理模块、仓储分配模块、运输模块;
    所述订单处理模块用于管理和处理订单信息,所述订单处理模块包括取消模块、智能商品区域判断模块;
    所述取消模块用于将订单取消的触发信息发送给智能商品区域判断模块;
    所述智能商品区域判断模块用于根据所生成的订单信息向仓储分配模块、运输模块发出分配运输信息,并实时监控商品的运输状态;还根据订单取消的触发信息,判断被取消商品的运输状态,如果被取消商品并未出仓,则控制仓储分配模块停止分配,后续运输程序终止;如果被取消商品已出仓,由运输模块运输,则智能商品区域判断模块向运输模块发出指令,控制运输模块将被取消商品放入到目的地仓储内的暂存区,在预设时间内,当获得相同区域中相同商品的新订单时,则由智能商品区域判断模块向目的地仓储模块发出指令,由目的地仓储模块控制目的地仓储内的包装处理模块给被取消商品进行新包装处理,并送入到目的地仓储内的派送区,由派车模块运输到该新订单的客户手中;
    所述仓储分配模块用于接收智能商品区域判断模块的控制指令,并对订单信息中的商品进行分配;
    所述运输模块用于对商品进行运输,并接收智能商品区域判断模块的控制指令。
  2. 如权利要求1所述的基于大数据的电商物流调度系统,其特征在于:如果被取消商品放入到暂存区的时间超过预设时间,则将被取消商品由暂存区送入到派送区,由运输模块将被取消商品返回至原始仓储。
  3. 如权利要求1所述的基于大数据的电商物流调度系统,其特征在于:所 述运输模块经过1个或多个中转站后输送至目的地仓储,每个中转站内也都设有暂存区、派送区、中转站模块、包装处理模块;且每个中转站模块都与智能商品区域判断模块进行通信。
  4. 如权利要求3所述的基于大数据的电商物流调度系统,其特征在于:当智能商品区域判断模块接收到订单被取消的触发信息后,如果判断被取消商品正被运输至或已运输到中转站后,则智能商品区域判断模块控制运输模块将被取消商品运输至该中转站中的暂存区内,等待新的订单产生。
  5. 如权利要求4所述的基于大数据的电商物流调度系统,其特征在于:在预设时间内,当获得该中转站附近区域中相同商品的新订单时,则由智能商品区域判断模块向该中转站的中转站模块发出指令,由中转站模块控制该中转站内的包装处理模块给被取消商品进行新包装处理,并送入到该中转站内的派送区,由该中转站内派车模块运输到该新订单的客户手中。
  6. 如权利要求1所述的基于大数据的电商物流调度系统,其特征在于:当被取消商品送至暂存区后,由目的地仓储模块将被取消商品的状态信息发送给智能商品区域判断模块,所述智能商品区域判断模块对与被取消商品相同的商品进行标记。
  7. 如权利要求6所述的基于大数据的电商物流调度系统,其特征在于:所述智能商品区域判断模块当接收被标记商品的订单信息时,根据订单信息中的目的地信息,由智能商品区域判断模块在商品相同的被取消商品所在的目的地仓储中匹配,如果地址匹配成功,则生成派车信息,如果地址匹配不成功,则由智能商品区域判断模块重新对被标记商品的订单信息进行重新分配运输。
  8. 如权利要求6或7所述的基于大数据的电商物流调度系统,其特征在于:当被取消商品生成新的派车信息后,则智能商品区域判断模块对与该被取消商 品的标记信息消除。
  9. 如权利要求1所述的基于大数据的电商物流调度系统,其特征在于:所述智能商品区域判断模块当接收与被取消商品相同商品的订单信息时,根据该订单信息中目的地信息,判断该目的地仓储或其附近的目的地仓储内的暂存区是否有相同商品,如果有,则控制该目的地仓储或其附近的目的地仓储内的包装处理模块给被取消商品进行新包装处理,并生成派车信息;如果没有,则由智能商品区域判断模块新建分配运输信息。
  10. 如权利要求1所述的基于大数据的电商物流调度系统,其特征在于:目的地仓储内的包装处理模块对被取消商品进行新包装处理之前,对被取消商品进行检验,如果被取消商品无损,则在进行新包装处理,如果被取消商品受损,则上报给智能商品区域判断模块,由智能商品区域判断模块下发被取消商品返回原始仓储的运输指令。
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