WO2023024647A1 - 云端仪器预约系统及方法 - Google Patents

云端仪器预约系统及方法 Download PDF

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WO2023024647A1
WO2023024647A1 PCT/CN2022/097691 CN2022097691W WO2023024647A1 WO 2023024647 A1 WO2023024647 A1 WO 2023024647A1 CN 2022097691 W CN2022097691 W CN 2022097691W WO 2023024647 A1 WO2023024647 A1 WO 2023024647A1
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instrument
remote
information
reservation
cloud
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PCT/CN2022/097691
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English (en)
French (fr)
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褚方民
刘磊
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爱德万测试股份有限公司
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Priority to DE112022004081.5T priority Critical patent/DE112022004081T5/de
Priority to JP2023569948A priority patent/JP2024520303A/ja
Priority to KR1020237036826A priority patent/KR20230160913A/ko
Publication of WO2023024647A1 publication Critical patent/WO2023024647A1/zh
Priority to US18/525,900 priority patent/US20240104443A1/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • 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
    • G06Q10/02Reservations, e.g. for tickets, services or events
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/50Testing arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/08Network architectures or network communication protocols for network security for authentication of entities
    • H04L63/083Network architectures or network communication protocols for network security for authentication of entities using passwords
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/14Session management
    • H04L67/141Setup of application sessions

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  • the present invention relates to a cloud instrument, in particular to a cloud instrument reservation system and method based on the instrument reservation system and a cloud authorization server.
  • an embodiment of the present invention provides a cloud instrument reservation system including: a remote instrument group, an instrument reservation system, a defense server, a user workstation group, and a cloud authorization server.
  • a remote instrument group includes a plurality of remote instruments.
  • the instrument reservation system is used to provide reservation information and instrument information, wherein the reservation information includes a plurality of reserved time periods and a plurality of reserved time periods, and each reserved time period corresponds to one of the plurality of remote instruments.
  • the defense server is coupled to the remote device group, and is used for pairing with each remote device to generate pairing information.
  • the user workstation group is coupled to the defense server and the instrument reservation system, wherein the user workstation group includes a plurality of user workstations, and any user workstation in the plurality of user workstations passes through the instrument reservation system to select from a plurality of reservable time slots according to the reservation information Select one of them, and specify one of them from multiple remote instruments according to the instrument information.
  • the cloud authorization server is coupled to the defense server, and is used to generate a speed license and transmit the speed license to any user through the defense server when any of the reserved time slots begins according to the reservation information, pairing information, and instrument information. A remote instrument designated by a scheduled time slot.
  • the embodiment of the present invention provides a cloud instrument reservation method, which is suitable for a cloud instrument reservation system including a remote instrument group with multiple remote instruments, an instrument reservation system and a defense server, wherein the instrument reservation system is used to provide reservation information and instrument information , the reservation information includes a plurality of reserved time periods and a plurality of reserved time periods, and each reserved time period designates one of the plurality of remote instruments.
  • the instrument reservation system is used to provide reservation information and instrument information
  • the reservation information includes a plurality of reserved time periods and a plurality of reserved time periods, and each reserved time period designates one of the plurality of remote instruments.
  • the user workstation searches for, reserves, and selects remote instruments and time slots that meet product testing requirements through the instrument reservation system, and through the defense server, pairing information and reservation information, in any existing Establish a dedicated connection between the user workstation and the designated remote instrument at the beginning of the reserved period, and generate and transmit a specific speed license to the designated remote instrument at the beginning of any reserved period through the cloud authorization server, instrument information and reservation information remote instrumentation.
  • the private connection is then terminated by the defense server at the end of any reserved period.
  • FIG. 1 is a schematic diagram of a cloud instrument reservation system provided by an embodiment of the present invention.
  • FIG. 2 is a schematic diagram of a cloud instrument reservation method provided by an embodiment of the present invention.
  • FIG. 1 is a schematic diagram of a cloud instrument reservation system provided by an embodiment of the present invention.
  • a cloud instrument reservation system 1 includes an instrument reservation system 10 , a bastion server 20 , a cloud authorization server 30 , a remote instrument group 40 and a user workstation group 50 .
  • the remote instrument group 40 may be composed of a plurality of different remote instrument suppliers to provide a plurality of remote instruments 40 - 1 to 40 -M with different test capabilities.
  • each remote instrument can be configured with a plurality of different test modules (such as a test module for digital products, a test module for radio frequency products) according to requirements, and each test module can be tested for a specific test item.
  • the test module for radio frequency products may have test items compliant with the Wi-Fi communication protocol, Bluetooth communication protocol or NB-IoT communication protocol.
  • each test module can also configure a specific test speed according to requirements, such as general test speed (such as tens of Mbps), medium test speed (such as hundreds of Mbps) or the highest level of test speed (such as several Gbps) . Therefore, each remote instrument has its own instrument information, which is used to describe the test items and test speed (ie, test capability) that this remote instrument can provide.
  • different test speeds are configured with different levels of speed licenses. For example, the general level of speed license provides and gives the remote instrument a normal test speed, the medium level of speed license provides the medium test speed of the remote instrument, and the highest level of speed license provides the highest test speed of the remote instrument.
  • the speed license can be purchased or leased by the supplier of the remote instrument from the manufacturer of the remote instrument.
  • the function of the test module cannot be enabled, that is, the user workstation cannot test products (eg, chips) through the remote instrument without a speed license.
  • the user workstation group 50 is coupled to the defense server 20 and the instrument reservation system 10, and the user workstation group 50 may be composed of a plurality of user workstations 50-1 to 50-N from different integrated circuit (IC) design companies.
  • the integrated circuit design company can purchase or lease a specific level of speed license from the manufacturer of the remote instrument, so as to be applied to the selected and designated remote instrument and endow it with a specific level of test speed Ability.
  • the instrument reservation system 10 is used to provide reservation information and instrument information to the defense server 20 and the cloud authorization server 30 .
  • the reservation information includes a plurality of reservable time periods and a plurality of reserved time periods (that is, non-reservable time periods), and each reserved time period corresponds to a user workstation (that is, one of the plurality of user workstations 50-1 to 50-N)
  • the designated remote instrument ie, one of the plurality of remote instruments 40-1 to 40-M). For example, only one user workstation is allowed to reserve through the instrument reservation system 10 for each reserved period.
  • the user workstation also needs to select and specify a remote instrument that meets the test requirements of the product, so as to complete the appointment procedure.
  • the defense server 20 is coupled to the remote device group 40 for pairing with each remote device, so as to generate pairing information and send it to the cloud authorization server 30 .
  • the defense server 20 includes multiple sub-defense servers (not shown). These sub-defense servers respectively correspond to multiple remote instruments 40-1 to 40-M, that is, each remote instrument is paired with a specific or designated sub-defense server, and the pairing objects between these sub-defense servers will not be repeated. Since each remote device has a unique identifier and a unique pairing password (ie, pairing information), the defense server 20 and the cloud authorization server 30 can communicate or establish a connection with a specific remote device according to the pairing information.
  • the defense server is preferably a server with a firewall function.
  • the cloud authorization server 30 is coupled to the defense server 20, and is used to generate a specific level of speed license at the beginning of any reserved period according to the reservation information, pairing information and instrument information, and transmit the specific level of speed license through the defense server 20 Certificate to the specified remote instrument to activate the function of its test module and give it a specific level of test speed.
  • the remote instrument can test the product at a specific test speed according to the test item.
  • FIG. 2 is a schematic diagram of a cloud instrument reservation method provided by an embodiment of the present invention.
  • a cloud instrument reservation method includes the following steps: First, as shown in step S110, the defense server 20 performs pairing with each of the remote instruments 40-1 to 40-M to generate pairing information.
  • any user workstation in these user workstations 50-1 to 50-N selects one of the reservable time slots from a plurality of reservable time slots according to the reservation information through the instrument reservation system 10, and at the same time According to the instrument information, select and designate one of the remote instruments (that is, the remote instrument that has not been selected or reserved by other user workstations during the reservation time period) from these remote instruments 40-1 to 40-M, so as to complete the reservation procedure. Simultaneously, the instrument reservation system 10 updates the reservation information and the instrument information synchronously, that is, updates the reserved period selected by any user workstation to the reserved period, and updates the selected remote instrument to the remote instrument specified in the reserved period.
  • the cloud authorization server 30 generates a speed license at the beginning of any reserved period according to the device information, pairing information and reservation information, and transmits the speed license to the designated remote device through the defense server 20 , to enable its test module functionality and give it a specific level of test speed.
  • the defense server 20 establishes a relationship between the defense server 20 and the remote device specified by any one of the reserved time periods according to the pairing information and the reservation information when any one of the reserved time periods begins. and establish a dedicated connection between the specified remote instrument and any user workstation specified in a reserved period, and terminate the secure connection and dedicated connection at the end of any reserved period to ensure product testing.
  • Security and exclusivity ie proprietary).
  • the user workstation can search, reserve, and select remote instruments and time slots that meet product testing requirements through the instrument reservation system, and through the defense server, pairing information and reservation information, to establish a dedicated connection between the user workstation and a designated remote instrument at the beginning of any scheduled time period, and to generate and transmit a specific speed at the beginning of any scheduled time period through the cloud authorization server, instrument information and reservation information License to the specified remote instrument.
  • the private connection is then terminated by the defense server at the end of any reserved period.

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Abstract

一种云端仪器预约方法,适用于云端仪器预约系统,该系统包括具有多个远程仪器的远程仪器群组、仪器预约系统及防御服务器,预约信息包括多个可预约时段及多个已预约时段;预约方法包括:防御服务器根据配对信息及预约信息,在多个已预约时段中任一已预约时段开始时,建立防御服务器与任一已预约时段指定的远程仪器之间的安全连接,并建立指定的远程仪器与任一已预约时段指定的用户工作站之间的专用连接,且在任一已预约时段结束时,终止安全连接及专用连接。

Description

云端仪器预约系统及方法
本申请要求申请日为2021年8月24日的中国专利申请2021109746243的优先权。本申请引用上述中国专利申请的全文。
技术领域
本发明涉及一种云端仪器,尤其涉及一种基于仪器预约系统及云端授权服务器的云端仪器预约系统及方法。
背景技术
一般来说,无厂半导体公司(fabless semiconductor company)要对芯片(chip)进行测试时,需要去寻找并租借符合公司产品测试需求的仪器,然后再到仪器的所在地进行产品的测试。然而,若是符合公司产品测试需求的仪器处于短缺的状态,或者仪器缺少特定等级的速度许可证,又或者实验室离公司很远等种种因素,这些都会大幅增加公司的测试成本、测试的不确定性,甚至影响或延长产品上市的时间而错失商机,结果造成公司极大的损失。
发明内容
有鉴于此,本发明实施例提供一种云端仪器预约系统包括:远程仪器群组、仪器预约系统、防御服务器、用户工作站群组及云端授权服务器。远程仪器群组包括多个远程仪器。仪器预约系统用以提供预约信息及仪器信息,其中预约信息包括多个可预约时段及多个已预约时段,且每一个已预约时段对应多个远程仪器的其中一个。防御服务器耦接于远程仪器群组,用以分别与每一个远程仪器进行配对,以产生一配对信息。用户工作站群组耦接于防御服务器及仪器预约系统,其中用户工作站群组包括多个用户工作站,且多个用户工作站中任一用户工作站通过仪器预约系统,以根据预约信息从多个 可预约时段中选择其中一个,并根据仪器信息从多个远程仪器中指定其中一个。云端授权服务器耦接于防御服务器,用以根据预约信息、配对信息及仪器信息,在多个已预约时段中任一已预约时段开始时,产生速度许可证并通过防御服务器传送速度许可证给任一已预约时段指定的远程仪器。
本发明实施例提供一种云端仪器预约方法,适用于一云端仪器预约系统包括具有多个远程仪器的远程仪器群组、仪器预约系统及防御服务器,其中仪器预约系统用以提供预约信息及仪器信息,预约信息包括多个可预约时段及多个已预约时段,且每一个已预约时段指定多个远程仪器的其中一个,云端仪器预约方法包括:防御服务器根据配对信息及预约信息,在多个已预约时段中任一已预约时段开始时,建立防御服务器与任一已预约时段指定的远程仪器之间的安全连接,并建立指定的远程仪器与任一已预约时段指定的用户工作站之间的专用连接,且在任一已预约时段结束时,终止安全连接及专用连接。
本发明实施例所提供的云端仪器预约系统及方法,用户工作站通过仪器预约系统以寻找、预约、选择符合产品测试需求的远程仪器及时段,并通过防御服务器、配对信息及预约信息,在任一已预约时段开始时来建立用户工作站与指定的远程仪器之间的专用连接,以及通过云端授权服务器、仪器信息及预约信息,在任一已预约时段开始时来产生并传送特定的速度许可证给指定的远程仪器。然后在任一已预约时段结束时通过防御服务器来终止专用连接。借此,大幅降低寻找符合产品测试需求的远程仪器的地点及时间,并确保测试环境的安全性及独占性,同时提升产品测试的便利性及加速产品上市的时间。
上述说明仅是本发明技术方案的概述,为了能够更清楚了解本发明的技术手段,而可依照说明书的内容予以实施,并且为了让本发明的上述和其他目的、特征和优点能够更明显易懂,以下特举较佳实施例,并配合附图,详细说明如下。
附图说明
图1为本发明实施例所提供的云端仪器预约系统的示意图。
图2为本发明实施例所提供的云端仪器预约方法的示意图。
具体实施方式
请参阅图1,图1为本发明实施例所提供的云端仪器预约系统的示意图。一种云端仪器预约系统1包括仪器预约系统10、防御服务器(bastion sever)20、云端授权服务器30、远程仪器群组40及用户工作站群组50。
远程仪器群组40可由多个不同的远程仪器的供货商(supplier)所组成,以提供多种不同测试能力的远程仪器40-1至40-M。更进一步来说,每一个远程仪器可根据需求配置多个不同的测试模块(例如针对数字产品的测试模块、针对射频产品的测试模块),而每一个测试模块可以针对特定的测试项目进行测试。举例来说,针对射频产品的测试模块可具有符合Wi-Fi通讯协议、蓝牙(Bluetooth)通讯协议或NB-IoT通讯协议所规范的测试项目。
此外,每一个测试模块亦可根据需求来配置特定的测试速度,例如一般的测试速度(例如数十Mbps)、中等的测试速度(例如数百Mbps)或最高等级的测试速度(例如数Gbps)。因此,每一个远程仪器具有自己的仪器信息,用来说明这台远程仪器能够提供的测试项目及测试速度(即测试能力)。在本发明的一实施中,不同的测试速度配置不同等级的速度许可证(speed license)。例如一般等级的速度许可证提供、赋予远程仪器一般的测试速度,中等等级的速度许可证提供远程仪器中等的测试速度,而最高等级的速度许可证提供远程仪器最高速的测试速度。值得注意的是,速度许可证可以是远程仪器的供货商向远程仪器的制造商购买或租赁而取得。此外,若远程仪器本身没有配置速度许可证是无法启用测试模块的功能,亦即用户工作站无法通过没有配置速度许可证的远程仪器进行产品(例如芯片)的测试。
用户工作站群组50耦接于防御服务器20及仪器预约系统10,而用户 工作站群组50可由多个不同的集成电路(IC)设计公司所组成的多个用户工作站50-1至50-N。在本发明的一实施中,集成电路设计公司可以向远程仪器的制造商购买或租赁特定等级的速度许可证,以应用于所选择、指定的远程仪器上,并赋予其具有特定等级的测试速度的能力。
仪器预约系统10用以提供预约信息及仪器信息给防御服务器20与云端授权服务器30。预约信息包括多个可预约时段及多个已预约时段(即不可预约时段),且每一个已预约时段对应一个由用户工作站(即多个用户工作站50-1至50-N中的其中一个)所指定的远程仪器(即多个远程仪器40-1至40-M的其中一个)。举例来说,每一个可预约时段只允许一个用户工作站通过仪器预约系统10来预约。此外,用户工作站除了选择可预约时段之外,还需选择、指定符合产品的测试需求的远程仪器,这样才算完成预约程序。
防御服务器20耦接于远程仪器群组40,用以分别与每一个远程仪器进行配对,以产生配对信息并将其传送给云端授权服务器30。在本发明的一实施例中,防御服务器20包括多个子防御服务器(图未绘)。这些子防御服务器分别对应于多个远程仪器40-1至40-M,亦即每一个远程仪器配对一个特定或指定的子防御服务器,且这些子防御服务器彼此之间的配对对象不会重复。由于每一个远程仪器具有专属的标识符及专属的配对密码(即配对信息),故防御服务器20及云端授权服务器30可根据配对信息而与特定的远程仪器进行通讯或建立连接。此外,防御服务器较佳是具有防火墙(firewall)功能的服务器。
云端授权服务器30耦接于防御服务器20,用以根据预约信息、配对信息及仪器信息,在任何一个已预约时段开始时产生特定等级的速度许可证,并通过防御服务器20传送特定等级的速度许可证给所指定的远程仪器,以启动其测试模块的功能并赋予其特定等级的测试速度。换言之,远程仪器可根据测试项目在特定的测试速度下对产品进行测试。
请参阅图2,图2为本发明实施例所提供的云端仪器预约方法的示意图。 一种云端仪器预约方法包括以下的步骤:首先,如步骤S110所示,防御服务器20分别与这些远程仪器40-1至40-M中的每一个远程仪器进行配对,以产生配对信息。
接着,如步骤S120所示,这些用户工作站50-1至50-N中的任何一个用户工作站通过仪器预约系统10,并根据预约信息而从多个可预约时段中选择其中一个可预约时段,同时根据仪器信息从这些远程仪器40-1至40-M中选择、指定其中一个远程仪器(即在此可预约时段中未被其他用户工作站选择到或预约到的远程仪器),以完成预约程序。同时仪器预约系统10同步更新预约信息及仪器信息,亦即将任一用户工作站选择的可预约时段更新为已预约时段,以及将选择的远程仪器更新为在此已预约时段所指定的远程仪器。
然后,如步骤S130所示,云端授权服务器30根据仪器信息、配对信息及预约信息,在任何一个已预约时段开始时产生速度许可证,并通过防御服务器20传送此速度许可证给指定的远程仪器,以启动其测试模块的功能并赋予其特定等级的测试速度。
之后,如步骤S140所示,防御服务器20根据配对信息及预约信息,在多个已预约时段中的任何一个已预约时段开始时,建立防御服务器20与任何一个已预约时段所指定的远程仪器之间的安全连接,并建立指定的远程仪器与任何一个已预约时段所指定的用户工作站之间的专用连接,且在任何一个已预约时段结束时,终止安全连接及专用连接,以确保产品测试的安全性及独占性(即专有性)。
综上所述,本发明实施例所提供的云端仪器预约系统及方法,用户工作站通过仪器预约系统以寻找、预约、选择符合产品测试需求的远程仪器及时段,并通过防御服务器、配对信息及预约信息,在任一已预约时段开始时来建立用户工作站与指定的远程仪器之间的专用连接,以及通过云端授权服务器、仪器信息及预约信息,在任一已预约时段开始时来产生并传送特定的速度许可证给指定的远程仪器。然后在任一已预约时段结束时通过防御服务器 来终止专用连接。借此,大幅降低寻找符合产品测试需求的远程仪器的地点及时间,并确保测试环境的安全性及独占性,同时提升产品测试的便利性及加速产品上市的时间。
以上所述,仅是本发明的较佳实施例而已,并非对本发明作任何形式上的限制,虽然本发明已以较佳实施例揭露如上,然而并非用以限定本发明,任何熟悉本专业的技术人员,在不脱离本发明技术方案范围内,当可利用上述揭示的方法及技术内容作出些许的更动或修饰为等同变化的等效实施例,但凡是未脱离本发明技术方案的内容,依据本发明的技术实质对以上实施例所作的任何简单修改、等同变化与修饰,均仍属于本发明技术方案的范围内。

Claims (10)

  1. 一种云端仪器预约系统,其特征在于,包括:
    一远程仪器群组,包括多个远程仪器;
    一仪器预约系统,用以提供一预约信息及一仪器信息,其中该预约信息包括多个可预约时段及多个已预约时段,且各该已预约时段对应该些远程仪器的其中一个;
    一防御服务器,耦接于该远程仪器群组,用以分别与各该远程仪器进行配对,以产生一配对信息;
    一用户工作站群组,耦接于该防御服务器及该仪器预约系统,其中该用户工作站群组包括多个用户工作站,且该些用户工作站中任一用户工作站通过该仪器预约系统,以根据该预约信息从该些可预约时段中选择其中一个,并根据该仪器信息从该些远程仪器中指定其中一个;以及
    一云端授权服务器,耦接于该防御服务器,用以根据该预约信息、该配对信息及该仪器信息,在该些已预约时段中任一已预约时段开始时,产生一速度许可证并通过该防御服务器传送该速度许可证给该任一已预约时段指定的远程仪器。
  2. 如权利要求1所述的云端仪器预约系统,其特征在于,其中该防御服务器根据该配对信息及该预约信息,在该任一已预约时段开始时,建立该防御服务器与该指定的远程仪器之间的一安全连接,并建立该指定的远程仪器与该任一已预约时段指定的用户工作站之间的一专用连接,且在该任一已预约时段结束时,终止该安全连接及该专用连接。
  3. 如权利要求1或2所述的云端仪器预约系统,其特征在于,该防御服务器包括多个子防御服务器,其分别对应于该些远程仪器。
  4. 如权利要求1至3中至少一项所述的云端仪器预约系统,其特征在于,该仪器信息包括各该远程仪器的测试项目及最大测试速度。
  5. 如权利要求1至4中至少一项所述的云端仪器预约系统,其特征在于,该配对信息包括各该远程仪器的标识符及配对密码。
  6. 一种云端仪器预约方法,适用于一云端仪器预约系统,其特征在于,该云端仪器预约系统包括具有多个远程仪器的远程仪器群组、一仪器预约系统及一防御服务器,其中该仪器预约系统用以提供一预约信息及一仪器信息,该预约信息包括多个可预约时段及多个已预约时段,且各该已预约时段指定该些远程仪器的其中一个,该云端仪器预约方法包括:
    该防御服务器根据一配对信息及该预约信息,在该些已预约时段中任一已预约时段开始时,建立该防御服务器与该任一已预约时段指定的远程仪器之间的一安全连接,并建立该指定的远程仪器与该任一已预约时段指定的用户工作站之间的一专用连接,且在该任一已预约时段结束时,终止该安全连接及该专用连接。
  7. 如权利要求6所述的云端仪器预约方法,其特征在于,该云端仪器预约系统更包括具有多个用户工作站的用户工作站群组及一云端授权服务器,在该防御服务器根据该配对信息及该预约信息,在该些已预约时段中该任一已预约时段开始时,建立该防御服务器与该任一已预约时段该指定的远程仪器之间的该安全连接,并建立该指定的远程仪器与该任一已预约时段该指定的用户工作站之间的该专用连接,且在该任一已预约时段结束时,终止该安全连接及该专用连接的步骤前,还包括:
    该防御服务器分别与各该远程仪器进行配对,以产生该配对信息;
    该些用户工作站中任一用户工作站通过该仪器预约系统,根据该预约信息从该些可预约时段中选择其中一个,并根据该仪器信息从该些远程仪器中指定其中一个;以及
    该云端授权服务器根据该预约信息、该配对信息及该仪器信息,在该任一已预约时段开始时产生一速度许可证,并通过该防御服务器传送该速度许可证给该指定的远程仪器。
  8. 如权利要求7所述的云端仪器预约方法,其特征在于,该速度许可证在该任一已预约时段开始时,用以启动该指定的远程仪器并赋予其特定特级的测试速度。
  9. 如权利要求6至8中至少一项所述的云端仪器预约方法,其特征在于,该仪器信息包括各该远程仪器的测试项目及最大测试速度。
  10. 如权利要求6至9中至少一项所述的云端仪器预约方法,其特征在于,该配对信息包括各该远程仪器的标识符及配对密码。
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