WO2018176278A1 - 一种基于云计算的物流集中监控系统 - Google Patents

一种基于云计算的物流集中监控系统 Download PDF

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Publication number
WO2018176278A1
WO2018176278A1 PCT/CN2017/078622 CN2017078622W WO2018176278A1 WO 2018176278 A1 WO2018176278 A1 WO 2018176278A1 CN 2017078622 W CN2017078622 W CN 2017078622W WO 2018176278 A1 WO2018176278 A1 WO 2018176278A1
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Prior art keywords
logistics
cloud
controller
network communication
monitoring system
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PCT/CN2017/078622
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English (en)
French (fr)
Inventor
袁召
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深圳市翼动科技有限公司
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Priority to PCT/CN2017/078622 priority Critical patent/WO2018176278A1/zh
Publication of WO2018176278A1 publication Critical patent/WO2018176278A1/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

Definitions

  • the present invention relates to the field of cloud computing technologies, and specifically relates to a centralized monitoring system for logistics based on cloud computing.
  • Cloud computing is an add-on, use, and delivery model of Internet-based related services that typically involves providing dynamically scalable and often virtualized resources over the Internet.
  • Cloud computing is a commonly used technology in cloud servers. It is widely used and can be used in the field of logistics management.
  • the existing logistics management generally distinguishes the goods by labeling them, which is convenient for the management personnel to carry out tracking and monitoring; however, the traditional logistics management system is difficult to understand the location of the goods being transported, and the dynamic destination. Relevant information cannot be retained and recalled. It is impossible to clearly understand the actual status of logistics. In monitoring, it will take more manpower and resources to understand the logistics information, which is not convenient for centralized monitoring, and it is not convenient for unified management of logistics. Inefficient work and increased operating costs.
  • An object of the present invention is to provide a cloud-based centralized logistics monitoring system, which solves the above-mentioned background art and proposes that the traditional logistics management system has difficulty in understanding the location of the transported goods, the dynamic destination, and the like. Can not be retained and called, can not clearly understand the actual state of logistics, monitoring will require more manpower and material resources to understand the logistics information, not easy to centrally monitor, from the inconvenient management of logistics, resulting in work efficiency Low, high running costs.
  • a cloud-based centralized logistics monitoring system including a monitoring server, a remote mobile terminal, a logistics cloud server, a power module, a network communication module, and a plurality of Distributed logistics monitoring unit everywhere, the monitoring server loses The input end is connected to the output end of the power module, and the monitoring server is bidirectionally connected with the remote mobile terminal, the logistics cloud server and the network communication module respectively, and the network communication module is also bidirectionally signaled with the logistics cloud server and several distributed logistics monitoring units respectively. connection.
  • Each distributed logistics monitoring unit includes a controller, and the controller is bidirectionally connected to the data comparator, the input of the data comparator is connected to the output of the A/D converter, and the A/D converter The input is connected to the output of the gravity sensor via a signal filter.
  • the output end of the data comparator is connected to the input end of the controller through a feedback module, and the two output ends of the controller are respectively connected to the display and the input end of the alarm module, and the input end of the controller is also connected with the GPS
  • the output of the system is connected, and the controller is bidirectionally connected with the storage module, and the controller is connected to the monitoring server through two-way signals through the wireless router and the network communication module.
  • the monitoring server includes a central controller, a database, a two-dimensional code scanner, an acousto-optic alarm, and a signal transceiver, and the central controller is bidirectionally connected to the plurality of distributed logistics monitoring units through the network communication module.
  • the input end of the central controller is connected to the output end of the two-dimensional code scanner, and the output end of the central controller is connected to the input end of the sound and light alarm, the central controller is bidirectionally connected with the database, and the central controller passes the signal
  • the transceiver is connected to the remote mobile terminal in a bidirectional signal.
  • the power module adopts a utility power grid.
  • the remote mobile terminal adopts a smart phone that can access a wireless network.
  • the network communication module uses a wireless network communication module
  • the signal transceiver uses a wireless signal transceiver
  • the controller adopts a 51 single chip microcomputer, and the controller is provided with a plurality of wiring ports.
  • the storage module uses an EEPROM memory of the type 24AA08T-I/OT.
  • the alarm module uses a buzzer alarm.
  • the display adopts a high definition digital display.
  • the positioning module uses a GPS positioning module.
  • the central controller adopts an integrated CPU of the type Pentium E2210, and the central controller is provided with a plurality of wiring ports.
  • the beneficial effects of the present invention are: the cloud-based centralized logistics monitoring system, through the cooperation of several distributed logistics monitoring units and network communication modules, can aggregate the logistics information of each place to
  • the monitoring server stores the relevant information in the logistics cloud server, which facilitates the quick reading of the cargo information, thereby achieving the effect of facilitating centralized monitoring, thereby facilitating the unified management of the logistics, and the high efficiency of the work can also reduce the operating cost.
  • the customer can communicate with the monitoring server through the remote mobile terminal, and through a number of distribution modules in the logistics monitoring unit, it is possible to find out which process the article is in the logistics, so that the customer can grasp the daytime and the docking with the delivery person.
  • the cloud-based centralized logistics monitoring system through the cooperation of the gravity sensor, the data comparator, the feedback module, the controller and the alarm module in each distributed monitoring unit, when the logistics system has an operational failure, that is, the vehicle
  • the alarm module automatically sends out an alarm signal to remind the management personnel to carry out the corresponding unloading work, and reduce the weight of the goods on the logistics vehicle, so as to ensure that the weight of the freight item always works within the protection weight range of the vehicle.
  • FIG. 1 is a schematic diagram of a system principle of the present invention
  • FIG. 2 is a structural block diagram of a distributed logistics monitoring unit of the present invention
  • FIG. 3 is a structural block diagram of a monitoring server according to the present invention.
  • a cloud-based centralized logistics monitoring system including a monitoring server, a remote mobile terminal, a logistics cloud server, a power module, a network communication module, and several
  • the distributed logistics monitoring unit is set up everywhere, the input end of the monitoring server is connected with the output end of the power module, and the monitoring server is respectively connected with the remote mobile terminal, the logistics cloud server and the network communication module, and the network communication module is further connected. Separate with the logistics cloud server and if A distributed logistics monitoring unit bidirectional signal connection.
  • each distributed logistics monitoring unit includes a controller, and the controller is bidirectionally connected to the data comparator, the input of the data comparator is connected to the output of the A/D converter, and the A/D converter The input is connected to the output of the gravity sensor via a signal filter.
  • the output end of the data comparator is connected to the input end of the controller through a feedback module, and the two output ends of the controller are respectively connected to the display and the input end of the alarm module, and the input end of the controller is also connected with the GPS system.
  • the output terminal is connected, and the controller is bidirectionally connected to the storage module, and the controller sequentially connects to the monitoring server through a wireless router and a network communication module.
  • the monitoring server includes a central controller, a database, a two-dimensional code scanner, an audible and visual alarm, and a signal transceiver, and the central controller is bidirectionally connected to the plurality of distributed logistics monitoring units through the network communication module, the central The input end of the controller is connected to the output end of the two-dimensional code scanner, and the output end of the central controller is connected to the input end of the sound and light alarm, the central controller is bidirectionally connected with the database, and the central controller passes the signal transceiver A two-way signal connection to a remote mobile terminal.
  • the power module uses a utility power grid, and the utility grid can perform power supply for the appliances in the monitoring server.
  • the remote mobile terminal adopts a smart phone that can access the wireless network, and the user can communicate with the monitoring server through the remote mobile terminal, which is convenient for querying the logistics information.
  • the network communication module uses a wireless network communication module
  • the signal transceiver uses a wireless signal transceiver
  • the controller adopts a 51 single chip microcomputer, and the controller is provided with a plurality of wiring ports.
  • the memory module uses an EEPROM memory of the type 24AA08T-I/OT.
  • the alarm module uses a buzzer alarm.
  • the display employs a high definition digital display.
  • the positioning module uses a GPS positioning module.
  • the central controller adopts an integrated CPU of the type Pentium E2210, and the central controller is provided with a plurality of wiring ports.
  • a plurality of distributed logistics monitoring units are respectively disposed on each of the logistics vehicles, and the cargo geographic information and the cargo weight information on each of the logistics vehicles are monitored.
  • the cloud-based centralized logistics monitoring system through the cooperation of several distributed logistics monitoring units and network communication modules, can collect the logistics information of each place into the monitoring server, and store relevant information.
  • the logistics cloud server it is convenient to quickly read the cargo information, so as to achieve the effect of centralized monitoring, thereby facilitating the unified management of logistics.
  • the high-efficiency colleagues can also reduce the running cost, and the customer can remotely monitor and monitor the mobile terminal.
  • the server communicates, and through several positioning modules in the logistics monitoring unit, it can be found out which process of the goods in the logistics, which is convenient for the customer to grasp the daytime and the docking with the delivery person.
  • the cloud-based centralized logistics monitoring system through the cooperation of the gravity sensor, the data comparator, the feedback module, the controller and the alarm module in each distributed monitoring unit, when the logistics system has an operational failure, that is, the vehicle
  • the alarm module automatically sends out an alarm signal to remind the management personnel to carry out the corresponding unloading work, and reduce the weight of the goods on the logistics vehicle, so as to ensure that the weight of the freight item always works within the protection weight range of the vehicle.
  • related modules involved in the system are hardware system modules or functional modules combined with computer software programs or protocols and hardware in the prior art, and the computer software programs or protocols involved in the functional modules are themselves A technique well known to those skilled in the art, which is not an improvement of the system; the improvement of the system is an interaction relationship or a connection relationship between the modules, that is, an improvement of the overall structure of the system to solve the system The corresponding technical problem to be solved.

Abstract

本发明公开了一种基于云计算的物流集中监控系统,包括监控服务器、远程移动终端、物流云服务器、电源模块、网络通信模块以及若干个分别设置在各处的分布式物流监控单元,所述监控服务器的输入端与电源模块的输出端连接,且监控服务器分别与远程移动终端、物流云服务器以及网络通信模块双向信号连接,且网络通信模块还分别与物流云服务器以及若干个分布式物流监控单元双向信号连接。该基于云计算的物流集中监控系统,通过若干个分布式物流监控单元以及网络通信模块的配合,能够将各地的物流信息汇总至监控服务器内,从而达到便于集中监控的效果,从而便于实现物流统一管理的工作,工作效率高的同时还能降低运行成本。

Description

发明名称:一种基于云计算的物流集中监控系统 技术领域
[0001] 本发明涉及云计算技术领域, 具体为一种基于云计算的物流集中监控系统。
背景技术
[0002] 云计算是基于互联网的相关服务的增加、 使用和交付模式, 通常涉及通过互联 网来提供动态易扩展且经常是虚拟化的资源。 云计算是云服务器内常用的技术 , 其应用广泛, 可用于物流管理领域。
技术问题
[0003] 现有的物流管理一般是通过在货物上贴上标签进行区分, 便于管理人员进行跟 踪监控; 但是, 传统的物流管理系统难以实吋了解被运输货物的位置、 去动态 去向等状况, 相关信息不能及吋保留和调用, 无法清楚的了解物流的实吋状态 , 监控中会需要花费较多的人力物力去了解物流的信息, 不便于集中监控, 从 而不便于物流的统一管理工作, 导致工作效率低下, 运行成本提高。
[0004] 其次, 传统的物流管理系统在进行物流的过程中, 一般不能对物流车辆上的货 运物品重量进行实吋检测, 不能保证货运物品重量始终在车辆的保护重量范围 内进行工作。 为此, 我们提出一种基于云计算的物流集中监控系统。
问题的解决方案
技术解决方案
[0005] 本发明的目的在于提供一种基于云计算的物流集中监控系统, 以解决上述背景 技术中提出传统的物流管理系统难以实吋了解被运输货物的位置、 去动态去向 等状况, 相关信息不能及吋保留和调用, 无法清楚的了解物流的实吋状态, 监 控中会需要花费较多的人力物力去了解物流的信息, 不便于集中监控, 从而不 便于物流的统一管理工作, 导致工作效率低下, 运行成本高的问题。
[0006] 为实现上述目的, 本发明提供如下技术方案: 一种基于云计算的物流集中监控 系统, 包括监控服务器、 远程移动终端、 物流云服务器、 电源模块、 网络通信 模块以及若干个分别设置在各处的分布式物流监控单元, 所述监控服务器的输 入端与电源模块的输出端连接, 且监控服务器分别与远程移动终端、 物流云服 务器以及网络通信模块双向信号连接, 且网络通信模块还分别与物流云服务器 以及若干个分布式物流监控单元双向信号连接。
[0007] 每个分布式物流监控单元均包括控制器, 且控制器与数据比较器双向连接, 该 数据比较器的输入端与 A/D转换器的输出端连接, 且 A/D转换器的输入端通过信 号滤波器与重力传感器的输出端连接。
[0008] 所述数据比较器的输出端通过反馈模块与控制器的输入端连接, 且控制器的两 个输出端分别与显示器以及报警模块的输入端连接, 该控制器的输入端还与 GPS 系统的输出端连接, 且控制器与存储模块双向连接, 该控制器依次通过无线路 由器以及网络通信模块与监控服务器双向信号连接。
[0009] 所述监控服务器包括中央控制器、 数据库、 二维码扫描器、 声光报警器以及信 号收发器, 且中央控制器通过网络通信模块分别与若干个分布式物流监控单元 双向信号连接, 该中央控制器的输入端与二维码扫描器的输出端连接, 且中央 控制器的输出端与声光报警器的输入端连接, 该中央控制器与数据库双向连接 , 且中央控制器通过信号收发器与远程移动终端双向信号连接。
[0010] 优选的, 所述电源模块采用市电电网。
[0011] 优选的, 所述远程移动终端采用可接入无线网络的智能手机。
[0012] 优选的, 所述网络通信模块采用无线网络通信模块, 信号收发器采用无线信号 收发器。
[0013] 优选的, 所述控制器采用 51单片机, 该控制器设置有多个接线端口。
[0014] 优选的, 所述存储模块采用型号为 24AA08T-I/OT的 EEPROM存储器。
[0015] 优选的, 所述报警模块采用蜂鸣报警器。
[0016] 优选的, 所述显示器采用高清数字显示器。
[0017] 优选的, 所述定位模块采用 GPS定位模块。
[0018] 优选的, 所述中央控制器采用型号为 Pentium E2210的集成 CPU, 该中央控制器 设置有多个接线端口。
发明的有益效果
有益效果 [0019] 与现有技术相比, 本发明的有益效果是: 该基于云计算的物流集中监控系统, 通过若干个分布式物流监控单元以及网络通信模块的配合, 能够将各地的物流 信息汇总至监控服务器内, 并将相关信息存储至物流云服务器中, 便于快速读 取货物信息, 从而达到便于集中监控的效果, 从而便于实现物流统一管理的工 作, 工作效率高的同吋还能降低运行成本, 客户可通过远程移动终端与监控服 务器进行通信, 并通过若干个分布是物流监控单元内的定位模块, 可以査出物 品在物流的哪个过程, 方便客户掌握吋间及吋与送货人对接。
[0020] 其次, 该基于云计算的物流集中监控系统, 通过每个分布式监控单元内的重力 传感器、 数据比较器、 反馈模块、 控制器以及报警模块的配合, 当物流系统发 生运行故障即车辆超载吋, 报警模块自动发出报警信号, 提醒管理人员进行相 应的卸货工作, 减轻物流车辆上的货物重量, 从而能保证货运物品重量始终在 车辆的保护重量范围内进行工作。
对附图的简要说明
附图说明
[0021] 图 1为本发明系统原理示意图;
[0022] 图 2为本发明分布式物流监控单元的结构框图;
[0023] 图 3为本发明监控服务器的结构框图。
本发明的实施方式
[0024] 下面将结合本发明实施例中的附图, 对本发明实施例中的技术方案进行清楚、 完整地描述, 显然, 所描述的实施例仅仅是本发明一部分实施例, 而不是全部 的实施例。 基于本发明中的实施例, 本领域普通技术人员在没有做出创造性劳 动前提下所获得的所有其他实施例, 都属于本发明保护的范围。
[0025] 请参阅图 1-3, 本发明提供一种技术方案: 一种基于云计算的物流集中监控系 统, 包括监控服务器、 远程移动终端、 物流云服务器、 电源模块、 网络通信模 块以及若干个分别设置在各处的分布式物流监控单元, 监控服务器的输入端与 电源模块的输出端连接, 且监控服务器分别与远程移动终端、 物流云服务器以 及网络通信模块双向信号连接, 且网络通信模块还分别与物流云服务器以及若 干个分布式物流监控单元双向信号连接。
[0026] 每个分布式物流监控单元均包括控制器, 且控制器与数据比较器双向连接, 该 数据比较器的输入端与 A/D转换器的输出端连接, 且 A/D转换器的输入端通过信 号滤波器与重力传感器的输出端连接。
[0027] 数据比较器的输出端通过反馈模块与控制器的输入端连接, 且控制器的两个输 出端分别与显示器以及报警模块的输入端连接, 该控制器的输入端还与 GPS系统 的输出端连接, 且控制器与存储模块双向连接, 该控制器依次通过无线路由器 以及网络通信模块与监控服务器双向信号连接。
[0028] 监控服务器包括中央控制器、 数据库、 二维码扫描器、 声光报警器以及信号收 发器, 且中央控制器通过网络通信模块分别与若干个分布式物流监控单元双向 信号连接, 该中央控制器的输入端与二维码扫描器的输出端连接, 且中央控制 器的输出端与声光报警器的输入端连接, 该中央控制器与数据库双向连接, 且 中央控制器通过信号收发器与远程移动终端双向信号连接。
[0029] 本发明中: 电源模块采用市电电网, 市电电网可为监控服务器内的用电器执行 电力供应。
[0030] 本发明中: 远程移动终端采用可接入无线网络的智能手机, 用户可通过远程移 动终端与监控服务器实现通信, 便于査询物流信息。
[0031] 本发明中: 网络通信模块采用无线网络通信模块, 信号收发器采用无线信号收 发器。
[0032] 本发明中: 控制器采用 51单片机, 该控制器设置有多个接线端口。
[0033] 本发明中: 存储模块采用型号为 24AA08T-I/OT的 EEPROM存储器。
[0034] 本发明中: 报警模块采用蜂鸣报警器。
[0035] 本发明中: 显示器采用高清数字显示器。
[0036] 本发明中: 定位模块采用 GPS定位模块。
[0037] 本发明中: 中央控制器采用型号为 Pentium E2210的集成 CPU, 该中央控制器设 置有多个接线端口。
[0038] 本发明中: 若干个分布式物流监控单元分别设置在各个物流车辆上, 对各个物 流车辆上的货物地理信息以及货物重量信息进行监控。 [0039] 综上所述: 该基于云计算的物流集中监控系统, 通过若干个分布式物流监控单 元以及网络通信模块的配合, 能够将各地的物流信息汇总至监控服务器内, 并 将相关信息存储至物流云服务器中, 便于快速读取货物信息, 从而达到便于集 中监控的效果, 从而便于实现物流统一管理的工作, 工作效率高的同吋还能降 低运行成本, 客户可通过远程移动终端与监控服务器进行通信, 并通过若干个 分布是物流监控单元内的定位模块, 可以査出物品在物流的哪个过程, 方便客 户掌握吋间及吋与送货人对接。
[0040] 其次, 该基于云计算的物流集中监控系统, 通过每个分布式监控单元内的重力 传感器、 数据比较器、 反馈模块、 控制器以及报警模块的配合, 当物流系统发 生运行故障即车辆超载吋, 报警模块自动发出报警信号, 提醒管理人员进行相 应的卸货工作, 减轻物流车辆上的货物重量, 从而能保证货运物品重量始终在 车辆的保护重量范围内进行工作。
[0041] 需要说明的是, 在本文中, 诸如第一和第二等之类的关系术语仅仅用来将一个 实体或者操作与另一个实体或操作区分幵来, 而不一定要求或者暗示这些实体 或操作之间存在任何这种实际的关系或者顺序。 而且, 术语"包括"、 "包含 "或者 其任何其他变体意在涵盖非排他性的包含, 从而使得包括一系列要素的过程、 方法、 物品或者设备不仅包括那些要素, 而且还包括没有明确列出的其他要素 , 或者是还包括为这种过程、 方法、 物品或者设备所固有的要素。 在没有更多 限制的情况下, 由语句 "包括一个 ......限定的要素, 并不排除在包括所述要素的过 程、 方法、 物品或者设备中还存在另外的相同要素"。
[0042] 本系统中涉及到的相关模块均为硬件系统模块或者为现有技术中计算机软件程 序或协议与硬件相结合的功能模块, 该功能模块所涉及到的计算机软件程序或 协议的本身均为本领域技术人员公知的技术, 其不是本系统的改进之处; 本系 统的改进为各模块之间的相互作用关系或连接关系, 即为对系统的整体的构造 进行改进, 以解决本系统所要解决的相应技术问题。
[0043] 尽管已经示出和描述了本发明的实施例, 对于本领域的普通技术人员而言, 可 以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化 、 修改、 替换和变型, 本发明的范围由所附权利要求及其等同物限定。

Claims

权利要求书
[权利要求 1] 一种基于云计算的物流集中监控系统, 包括监控服务器、 远程移动终 端、 物流云服务器、 电源模块、 网络通信模块以及若干个分别设置在 各处的分布式物流监控单元, 其特征在于: 所述监控服务器的输入端 与电源模块的输出端连接, 且监控服务器分别与远程移动终端、 物流 云服务器以及网络通信模块双向信号连接, 且网络通信模块还分别与 物流云服务器以及若干个分布式物流监控单元双向信号连接; 每个分布式物流监控单元均包括控制器, 且控制器与数据比较器双向 连接, 该数据比较器的输入端与 A/D转换器的输出端连接, 且 A/D转 换器的输入端通过信号滤波器与重力传感器的输出端连接; 所述数据比较器的输出端通过反馈模块与控制器的输入端连接, 且控 制器的两个输出端分别与显示器以及报警模块的输入端连接, 该控制 器的输入端还与 GPS系统的输出端连接, 且控制器与存储模块双向连 接, 该控制器依次通过无线路由器以及网络通信模块与监控服务器双 向信号连接;
所述监控服务器包括中央控制器、 数据库、 二维码扫描器、 声光报警 器以及信号收发器, 且中央控制器通过网络通信模块分别与若干个分 布式物流监控单元双向信号连接, 该中央控制器的输入端与二维码扫 描器的输出端连接, 且中央控制器的输出端与声光报警器的输入端连 接, 该中央控制器与数据库双向连接, 且中央控制器通过信号收发器 与远程移动终端双向信号连接。
[权利要求 2] 根据权利要求 1所述的一种基于云计算的物流集中监控系统, 其特征 在于: 所述电源模块采用市电电网。
[权利要求 3] 根据权利要求 1所述的一种基于云计算的物流集中监控系统, 其特征 在于: 所述远程移动终端采用可接入无线网络的智能手机。
[权利要求 4] 根据权利要求 1所述的一种基于云计算的物流集中监控系统, 其特征 在于: 所述网络通信模块采用无线网络通信模块, 信号收发器采用无 线信号收发器。
[权利要求 5] 根据权利要求 1所述的一种基于云计算的物流集中监控系统, 其特征 在于: 所述控制器采用 51单片机, 该控制器设置有多个接线端口。
[权利要求 6] 根据权利要求 1所述的一种基于云计算的物流集中监控系统, 其特征 在于: 所述存储模块采用型号为 24AA08T-I/OT的 EEPROM存储器。
[权利要求 7] 根据权利要求 1所述的一种基于云计算的物流集中监控系统, 其特征 在于: 所述报警模块采用蜂鸣报警器。
[权利要求 8] 根据权利要求 1所述的一种基于云计算的物流集中监控系统, 其特征 在于: 所述显示器采用高清数字显示器。
[权利要求 9] 根据权利要求 1所述的一种基于云计算的物流集中监控系统, 其特征 在于: 所述定位模块采用 GPS定位模块。
[权利要求 10] 根据权利要求 1所述的一种基于云计算的物流集中监控系统, 其特征 在于: 所述中央控制器采用型号为 Pentium E2210的集成 CPU, 该中 央控制器设置有多个接线端口。
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