WO2010022595A1 - 一种远端射频模块的安装方法和装置 - Google Patents

一种远端射频模块的安装方法和装置 Download PDF

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Publication number
WO2010022595A1
WO2010022595A1 PCT/CN2009/070719 CN2009070719W WO2010022595A1 WO 2010022595 A1 WO2010022595 A1 WO 2010022595A1 CN 2009070719 W CN2009070719 W CN 2009070719W WO 2010022595 A1 WO2010022595 A1 WO 2010022595A1
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Prior art keywords
fastener
radio frequency
pole
frequency module
remote radio
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PCT/CN2009/070719
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English (en)
French (fr)
Inventor
胡卫峰
杨华
施健
薛健
钱国辉
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华为技术有限公司
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Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Publication of WO2010022595A1 publication Critical patent/WO2010022595A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/02Transmitters
    • H04B1/03Constructional details, e.g. casings, housings
    • H04B1/036Cooling arrangements

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a method and apparatus for installing a remote radio frequency module. Background technique
  • an antenna device is generally used to receive and transmit signals.
  • a high-power transmission signal needs to be provided by a RRU (Radio Remote Unit), and then The transmitting signal is transmitted out by an antenna device connected to the RRU through the feeder. Therefore, it is usually necessary to dissipate heat from the RRU remote radio module.
  • the heat dissipation of the RRU remote radio module is provided on the side wall of the RRU remote radio module, and the heat sink is used to dissipate heat from the RRU remote radio module.
  • the embodiment of the invention provides a device for installing a remote radio frequency module and a method for installing a remote radio frequency module, which solves the problem of heat dissipation of the remote radio frequency module in the prior art.
  • An embodiment of the present invention provides a device for installing a remote radio frequency module, where the device includes:
  • a non-hermetic housing having a bacon effect is secured to the pole fastener such that the distal radio frequency module is located inside the non-hermetic housing.
  • an embodiment of the present invention further provides a method for installing a remote radio frequency module, where the method includes:
  • a non-hermetic housing having a bacon effect is secured to the pole fastener such that the distal radio frequency module is located inside the non-hermetic housing.
  • the remote radio frequency module with the heat sink is disposed in the non-closed housing with the chimney effect, and can not only dissipate heat for the remote radio frequency module through the heat sink, but also utilize the effect of having a bacon effect.
  • the non-sealed housing dissipates heat from the remote RF module to meet the heat dissipation requirements of the remote RF module.
  • FIG. 1 is a schematic structural diagram of a device for installing a remote radio frequency module according to an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of another remote radio module mounting device according to an embodiment of the present invention
  • FIG. 4 is a schematic view showing another combination of a non-sealed casing and a pole-holding member having a chimney effect according to an embodiment of the present invention
  • FIG. 5 is a schematic diagram of a device for installing a remote radio frequency module according to an embodiment of the present invention
  • FIG. 6 is a flowchart of a method for installing a remote radio frequency module according to an embodiment of the present invention
  • FIG. 7 is a flowchart of a specific implementation manner of installing a remote radio frequency module according to an embodiment of the present invention.
  • FIG. 1 it is a structural diagram of a mounting device for a remote radio frequency module according to an embodiment of the present invention, including a pole holding member 101 and a non-sealed housing 102 having a chimney effect.
  • a pole fastener 101 secured to the shaft 103, is used to mount a remote radio module 104 having a heat sink.
  • a non-hermetic housing 102 having a chimney effect is secured to the pole fastener 101 such that the remote radio frequency module 104 is located inside the non-hermetic housing 102.
  • the first fastening member and the second fastening member are respectively provided with holes, and the screw is disposed in the holes of the first fastening component and the second fastening component.
  • the first fastener and the second fastener are fixed to the shaft 103 by a nut being engaged with the screw.
  • the first fastener is provided with a first hole, and the remote RF module 104 is provided with a first hook. The first hook is hung in the first hole, so that the remote RF module 104 is mounted on the pole fastener 101.
  • the second fastener in the pole fastener 101 is provided with a second hole, and the non-sealed casing 102 is provided with a second hook, and the second hook is hung in the second hole to fix the non-sealed casing 102 to the pole fastener 101.
  • the pole clamp 101 is also used to mount the antenna device 105 such that the antenna device 105 is located inside the non-sealed housing 102.
  • the pole fastener 101 may further include a third fastening component, a fourth fastening component and a screw.
  • the third fastening component and the fourth fastening component are respectively provided with holes, and the screw is inserted through the holes of the third fastening component and the fourth fastening component.
  • the third fastener and the fourth fastener are fixed to the shaft 103 by the nut being engaged with the screw.
  • the third fastener is provided with a third hole, the antenna device 105 is provided with a third hook, and the third hook is hung in the third hole, so that the antenna device 105 is mounted on the pole fastener 101.
  • the non-sealed casing 102 having a chimney effect is a non-metallic material, and has a cylindrical shape, a rectangular cylindrical shape, a curved cylindrical shape, or a tree-shaped cylinder.
  • the non-sealed housing 102 having a bacon effect may be a complete housing fixed to the pole fastener 101 by a second hook provided; and may also include a first housing and a second housing, the first housing The second housing and the second housing are respectively fixed to the pole fastener 101 by hooks provided respectively, and constitute a complete non-closed housing having a bacon effect.
  • the rod 103 can be installed on a land, a platform, a wall, an iron tower, etc., and the rod 103 can be an existing device such as a pole, a lamp stand, or the like.
  • FIG. 2 it is a structural diagram of a mounting device of another remote radio frequency module according to an embodiment of the present invention, including a pole holding member 201, a non-sealed housing 202 having a bacon effect, and a ventilation device 203.
  • a pole bar fastener 201 secured to the shaft 204, is used to mount a remote radio module 205 having a heat sink.
  • a non-hermetic housing 202 having a chimney effect is secured to the pole fastener 201 such that the remote radio frequency module 205 is located inside the non-sealed housing 202.
  • the ventilation device 203 is disposed on the pole fastener 201, and the ventilation device 203 is configured to dissipate heat from the remote RF module 205.
  • the first fastening member and the second fastening member are respectively provided with holes, and the screw is disposed in the holes of the first fastening component and the second fastening component.
  • the first fastener and the second fastener are fixed to the shaft 204 by a nut being engaged with the screw.
  • the first fastener is provided with a first hole, and the remote RF module 205 is provided with a first hook. The first hook is hung in the first hole, so that the remote RF module 205 is mounted on the pole fastener 201.
  • the second fastener in the pole fastener 201 is provided with a second hole, and the non-sealed casing 202 is provided with a second hook, and the second hook is hung in the second hole to fix the non-sealed casing 202 to the pole fastener 201.
  • the pole clamp 201 is also used to mount the antenna device 206 such that the antenna device 206 is located inside the non-sealed housing 202.
  • the pole fastener 201 may further include a third fastening component, a fourth fastening component and a screw.
  • the third fastening component and the fourth fastening component are respectively provided with holes, and the screw is threaded through the holes of the third fastening component and the fourth fastening component.
  • the third fastener and the fourth fastener are fixed to the shaft 203 by the nut being engaged with the screw.
  • the third fastener is provided with a third hole
  • the antenna device 206 is provided with a third hook
  • the third hook is hung in the third hole, so that the antenna device 206 is mounted on the pole fastener 201.
  • the non-sealed casing 202 having a bacon effect is a non-metallic material having a cylindrical shape, a rectangular cylindrical shape, a curved cylindrical shape, or a dendritic cylinder.
  • the non-sealed casing 202 having the bacon effect may be a complete casing fixed to the pole fastener 201 by a second hook provided; and may also include a first casing and a second casing, the first casing And the second housing are respectively fixed to the pole fastener 201 by hooks provided respectively, and constitute a complete non-sealed casing having a bacon effect.
  • the ventilating device 203 can be a device such as a fan for performing enhanced heat dissipation on the remote radio frequency module 205, and ensuring the heat dissipation of the remote radio frequency module 205 to meet the working requirements by forced air cooling.
  • the rod 204 can be installed on a ground, a platform, a wall, an iron tower, etc., and the rod 204 can be an existing device such as a utility pole or a lamp stand.
  • FIG. 3 it is a schematic diagram of a combination of a remote radio frequency module, a non-sealed casing having a chimney effect, and a pole bar fastener according to an embodiment of the present invention.
  • the first fastener 311 and the second fastener 312 are respectively provided with holes, and the screw 313 is disposed on the first fastener 311 and the second fastener 311.
  • the hole of the fastener 312 is engaged with the screw 313 by the nut 320, thereby fixing the first fastener 311 and the second fastener 312 to the rod 330.
  • the first fastening member 311 is provided with a first hole 314, and the remote RF module 340 is provided with a first hook 341.
  • the first hook 341 is hung in the first hole 314.
  • the second fastening member 312 of the pole-holding member 310 is provided with a second hole 315.
  • the non-sealed housing 350 is provided with a second hook 351, and the second hook 351 is hung in the second hole 315.
  • FIG. 4 it is another schematic diagram of a non-closed casing and a pole-holding member having a chimney effect according to an embodiment of the present invention, and a non-sealed casing 420 having a chimney effect and a pole-holding fastener are used by using a screw 410. 430 is fixed together.
  • FIG. 5 is a schematic diagram showing the appearance of a mounting device for a remote radio frequency module according to an embodiment of the present invention.
  • the pole fastener, the RRU and the ventilation device are hidden inside the non-sealed casing 510 having a chimney effect, and form a non-sealed casing 510. Overall, it is mounted on the top of the shaft 520.
  • the inside of the non-sealed casing 510 can form a natural ventilation duct by using the chimney effect to meet the heat dissipation requirement of the RRU.
  • the non-sealed casing 510 may be a non-metallic material that can be made of materials such as PV (Photo Voltaics, PPV) or PIM (polypropylene) to reduce the influence on wireless signals.
  • the outer shape of the non-sealed casing 510 can be concealed according to the environment, such as a cylinder, a rectangular cylinder, a curved cylinder, a tree casing, and the like.
  • a flowchart of a method for installing a remote radio frequency module includes the following steps:
  • Step 601 fixing the pole fastener to the pole.
  • the rod can be installed on the earth, platform, wall, iron tower, etc., or it can be an existing equipment such as a pole, a lamp stand.
  • the pole fastener comprises a first fastener, a second fastener and a screw
  • the first fastener and the second fastener are respectively provided with holes
  • the screw is threaded on the first buckle
  • the holes of the piece and the second fastener are engaged with the screw by the nut to fix the first fastener and the second fastener to the rod.
  • Step 602 Install a remote radio module with a heat sink on the pole fastener.
  • the first RF link is provided with a first hole, and the first hook is hung in the first hole.
  • Step 603 Fix the non-sealed casing having the bacon effect on the pole fastener so that the remote RF module is located inside the non-sealed casing.
  • the non-sealed casing may be a complete casing or a combination of a plurality of casings.
  • Fixing the non-sealing shell having the bacon effect on the pole fastener is: the pole stick fastener is provided with a second hole, the non-sealed shell is provided with the second hook, and the second hook is hung in the second hole, thereby The remote RF module is located inside the non-sealed housing.
  • the non-sealed casing may be a non-sealed casing that is open at the top and bottom. It can be seen from the above that when the remote RF module is working, the heat generated by the remote RF module passes through the non-closed casing, and the natural ventilation air passage is formed by the bacon effect, thereby dissipating heat to the communication device in the non-closed casing.
  • the non-sealed casing may be a non-metallic material, and materials such as PV/PPC may be used to reduce the influence on the wireless signal.
  • the shape of the non-closed casing can be concealed according to the environment, such as a cylinder, a rectangular cylinder, a curved cylinder, a tree casing, and the like.
  • a flow chart of an implementation manner of installing a remote radio frequency module according to an embodiment of the present invention includes:
  • Step 701 fixing the pole fastener to the pole.
  • the rod can be installed on the earth, platform, wall, iron tower, etc., or it can be an existing equipment such as a pole, a lamp stand.
  • the pole fastener comprises a first fastener, a second fastener and a screw
  • the first fastener and the second fastener are respectively provided with holes
  • the screw is threaded on the first buckle
  • the holes of the piece and the second fastener are engaged with the screw by the nut to fix the first fastener and the second fastener to the rod.
  • Step 702 Install the remote radio module with the heat sink on the pole fastener.
  • the first RF link is provided with a first hole, and the first hook is hung in the first hole.
  • Step 703 the ventilation device is arranged on the pole fastener.
  • the ventilation device can be a device such as a fan, which is used to strengthen the heat dissipation of the remote RF module, and ensure the heat dissipation of the remote RF module to meet the working requirements by forced air cooling.
  • the ventilation device also starts to work, forming a forced air-cooled air duct to assist the heat dissipation of the remote RF module.
  • Step 704 fixing the non-sealed casing having the bacon effect to the pole fastener, so that the remote RF module is installed inside the non-sealed casing.
  • the non-sealed housing may be a complete housing or a combination of a plurality of housings. Fixing the non-closed housing with the bacon effect to the pole fastener is: the pole fastener is opened with the second The hole, the non-sealed casing is provided with a second hook, and the second hook is hung in the second hole such that the remote RF module is located inside the non-sealed casing.
  • the non-sealed casing may be a non-sealed casing that is open at the top and bottom.
  • the non-sealed casing may be a non-metallic material, and materials such as PV/PPC may be used to reduce the influence on the wireless signal.
  • the shape of the non-closed casing can be concealed according to the environment, such as a cylinder, a rectangular cylinder, a curved cylinder, a tree casing, and the like.
  • the remote radio frequency module with the heat sink is disposed in the non-closed housing with the chimney effect, and can not only dissipate heat for the remote radio frequency module through the heat sink, but also utilize the effect of having a bacon effect.
  • the non-sealed housing dissipates heat from the remote RF module to meet the heat dissipation requirements of the remote RF module.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)
  • Details Of Aerials (AREA)
  • Non-Reversible Transmitting Devices (AREA)

Description

一种远端射频模块的安装方法和装置
本申请要求了 2008年 8月 26日提交的, 申请号为 200810214060.8, 发 明名称为 "一种远端射频模块的安装方法和装置" 的中国申请优先权, 其全 部内容通过引用结合在本申请中。 技术领域
本发明涉及通信技术领域, 特别是涉及一种远端射频模块的安装方法和 装置。 背景技术
目前, 在无线通信系统中, 通常使用天线设备来接收和发射信号, 在通 过天线设备发射信号的过程中, 需要由 RRU (Radio Remote Unit, 远端射 频模块) 提供大功率的发射信号, 然后由与 RRU通过馈线连接的天线设备 将该发射信号发射出去。 因此, 通常需要给 RRU远端射频模块散热。
现有技术中, RRU远端射频模块的散热, 是在 RRU远端射频模块的侧 壁设有散热片, 通过散热片为该 RRU远端射频模块散热。
发明人在实现本发明的过程中, 发现现有技术至少存在如下问题: 随着 RRU的小型化要求越来越高, 设于 RRU侧壁的散热片体积越来 越小, 设于 RRU侧壁的散热片难于满足 RRU的散热需求。 发明内容
本发明实施例提供一种远端射频模块的安装装置以及远端射频模块的安 装方法, 解决现有技术中远端射频模块的散热问题。
本发明实施例一方面提供了一种远端射频模块的安装装置, 所述的装置 包括:
抱杆扣件, 固定在杆状物, 用于安装具有散热片的远端射频模块; 具有烟肉效应的非密闭壳体, 固定在所述抱杆扣件, 使所述远端射频模 块位于所述非密闭壳体的内部。
另一方面, 本发明实施例还提供了一种远端射频模块的安装方法, 所述 的方法包括:
将抱杆扣件固定在杆状物;
将具有散热片的远端射频模块安装在所述抱杆扣件;
将具有烟肉效应的非密闭壳体固定在所述抱杆扣件, 使所述远端射频模 块位于所述非密闭壳体的内部。
由上技术方案, 可以得知, 具有散热片的远端射频模块设于具有烟囱效 应的非密闭壳体内, 不仅可以通过散热片为该远端射频模块散热, 而且还可 以利用具有烟肉效应的非密闭壳体为该远端射频模块散热, 从而满足了远端 射频模块的散热需求。 附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案, 下面将对实 施例或现有技术描述中所需要使用的附图作简单地介绍, 显而易见地, 下面 描述中的附图仅仅是本发明的一些实施例, 对于本领域普通技术人员来讲, 在不付出创造性劳动性的前提下, 还可以根据这些附图获得其他的附图。
图 1为本发明实施例中的一种远端射频模块的安装装置结构示意图; 图 2为本发明实施例中的另一种远端射频模块的安装装置结构示意图; 图 3为本发明实施例中远端射频模块、 具有烟囱效应的非密闭壳体与抱 杆扣件的结合示意图;
图 4为本发明实施例中具有烟囱效应的非密闭壳体与抱杆扣件的另一种 结合示意图;
图 5为本发明实施例中远端射频模块的安装装置的外观示意图; 图 6为本发明实施例中远端射频模块的安装方法流程图; 图 7为本发明实施例中远端射频模块的安装的一种具体实现方式流程 图。 具体实施方式
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作出创 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。
如图 1 所示, 为本发明实施例中的一种远端射频模块的安装装置结构 图, 包括抱杆扣件 101和具有烟囱效应的非密闭壳体 102。
抱杆扣件 101, 固定在杆状物 103, 用于安装具有散热片的远端射频模 块 104。 具有烟囱效应的非密闭壳体 102, 固定在抱杆扣件 101, 使远端射 频模块 104位于非密闭壳体 102的内部。
其中, 抱杆扣件 101包括第一扣件、 第二扣件和螺杆, 第一扣件和第二 扣件分别开设有孔, 螺杆穿设于第一扣件和第二扣件的孔, 通过螺母与螺杆 配合, 从而将第一扣件和第二扣件固定在杆状物 103。 第一扣件开设有第一 孔, 远端射频模块 104设有第一挂钩, 第一挂钩挂于第一孔中, 使远端射频 模块 104安装在抱杆扣件 101。 抱杆扣件 101中的第二扣件开设有第二孔, 非密闭壳体 102设有第二挂钩, 第二挂钩挂于第二孔中, 使非密闭壳体 102 固定在抱杆扣件 101。
抱杆扣件 101, 还用于安装天线设备 105, 使天线设备 105位于非密闭 壳体 102的内部。 抱杆扣件 101, 还可以包括第三扣件、 第四扣件和螺杆, 第三扣件和第四扣件分别开设有孔, 螺杆穿设于第三扣件和第四扣件的孔, 通过螺母与螺杆配合, 从而将第三扣件和第四扣件固定在杆状物 103。 第三 扣件开设有第三孔, 天线设备 105设有第三挂钩, 第三挂钩挂于第三孔中, 使天线设备 105安装在抱杆扣件 101。 其中, 具有烟囱效应的非密闭壳体 102为非金属材料, 外形为圆筒状、 或矩形筒状、 或曲线筒状、 或树形筒。 具有烟肉效应的非密闭壳体 102可以 是一个完整的壳体, 通过设有的第二挂钩固定在抱杆扣件 101 ; 也可以包括 第一壳体和第二壳体, 第一壳体和第二壳体分别通过各自设有的挂钩固定在 抱杆扣件 101, 并构成一个完整的具有烟肉效应的非密闭壳体。
杆状物 103可以安装在大地、 平台、 墙边、 铁塔等地方, 杆状物 103可 以是电线杆、 路灯架等已有的设备。
如图 2所示, 为本发明实施例中的另一种远端射频模块的安装装置结构 图, 包括抱杆扣件 201、 具有烟肉效应的非密闭壳体 202和通风设备 203。
抱杆扣件 201, 固定在杆状物 204, 用于安装具有散热片的远端射频模 块 205。 具有烟囱效应的非密闭壳体 202, 固定在抱杆扣件 201, 使远端射 频模块 205位于非密闭壳体 202的内部。 通风设备 203设于抱杆扣件 201, 通风设备 203用于对远端射频模块 205散热。
其中, 抱杆扣件 201包括第一扣件、 第二扣件和螺杆, 第一扣件和第二 扣件分别开设有孔, 螺杆穿设于第一扣件和第二扣件的孔, 通过螺母与螺杆 配合, 从而将第一扣件和第二扣件固定在杆状物 204。 第一扣件开设有第一 孔, 远端射频模块 205设有第一挂钩, 第一挂钩挂于第一孔中, 使远端射频 模块 205安装在抱杆扣件 201。 抱杆扣件 201中的第二扣件开设有第二孔, 非密闭壳体 202设有第二挂钩, 第二挂钩挂于第二孔中, 使非密闭壳体 202 固定在抱杆扣件 201。
抱杆扣件 201, 还用于安装天线设备 206, 使天线设备 206位于非密闭 壳体 202的内部。 抱杆扣件 201, 还可以包括第三扣件、 第四扣件和螺杆, 第三扣件和第四扣件分别开设有孔, 螺杆穿设于第三扣件和第四扣件的孔, 通过螺母与螺杆配合, 从而将第三扣件和第四扣件固定在杆状物 203。 第三 扣件开设有第三孔, 天线设备 206设有第三挂钩, 第三挂钩挂于第三孔中, 使天线设备 206安装在抱杆扣件 201。 具有烟肉效应的非密闭壳体 202为非金属材料, 外形为圆筒状、 或矩形 筒状、 或曲线筒状、 或树形筒。 具有烟肉效应的非密闭壳体 202可以是一个 完整的壳体, 通过设有的第二挂钩固定在抱杆扣件 201 ; 也可以包括第一壳 体和第二壳体, 第一壳体和第二壳体分别通过各自设有的挂钩固定在抱杆扣 件 201, 并构成一个完整的具有烟肉效应的非密闭壳体。
通风设备 203可以是风扇等设备, 用于对远端射频模块 205进行强化散 热, 通过强迫风冷保证远端射频模块 205的散热达到工作要求。
杆状物 204可以安装在大地、 平台、 墙边、 铁塔等地方, 杆状物 204可 以是电线杆、 路灯架等已有的设备。
如图 3所示, 为本发明实施例中远端射频模块、 具有烟囱效应的非密闭 壳体与抱杆扣件的结合示意图。
抱杆扣件 310包括第一扣件 311、 第二扣件 312和螺杆 313, 第一扣件 311和第二扣件 312分别开设有孔, 螺杆 313穿设于第一扣件 311和第二扣 件 312的孔, 通过螺母 320与螺杆 313配合, 从而将第一扣件 311和第二扣 件 312固定在杆状物 330。
第一扣件 311 开设有第一孔 314, 远端射频模块 340设有第一挂钩 341, 第一挂钩 341挂于第一孔 314中。 抱杆扣件 310中的第二扣件 312开 设有第二孔 315, 非密闭壳体 350设有第二挂钩 351, 第二挂钩 351挂于第 二孔 315中。
如图 4所示, 为本发明实施例中具有烟囱效应的非密闭壳体与抱杆扣件 的另一种结合示意图, 使用螺钉 410将具有烟囱效应的非密闭壳体 420与抱 杆扣件 430固定在一起。
如图 5所示, 为本发明实施例中远端射频模块的安装装置的外观示意 图。
远端射频模块的安装装置安装完毕后, 抱杆扣件、 RRU和通风设备隐 藏在具有烟囱效应的非密闭壳体 510的内部, 并与非密闭壳体 510组成一个 整体, 安装在杆状物 520 的顶部。 非密闭壳体 510 内部的 RRU工作发热 时, 非密闭壳体 510内部可利用烟囱效应形成自然通风风道, 满足 RRU的 散热要求。
更进一歩, RRU工作时, 通风设备也开始工作, 形成强迫风冷风道辅 助 RRU的散热。 非密闭壳体 510可以为非金属材料, 该非金属材料可以采 用 PV (Photo Voltaics , 光伏) /PPC (Plypropylene Chlorinated, 氯化聚丙 烯) 等材料, 减小对无线信号的影响。 非密闭壳体 510的外形可以根据所在 环境进行隐蔽设计, 如设计成圆筒、 矩形筒、 曲线筒、 树型外壳等。
如图 6所示, 为本发明实施例中远端射频模块的安装方法流程图, 包括 以下歩骤:
歩骤 601, 将抱杆扣件固定在杆状物。
杆状物可以安装在大地、 平台、 墙边、 铁塔等地方, 也可以是电线杆、 路灯架等已有的设备。
将抱杆扣件固定在杆状物为: 抱杆扣件包括第一扣件、 第二扣件和螺 杆, 第一扣件和第二扣件分别开设有孔, 螺杆穿设于第一扣件和第二扣件的 孔, 通过螺母与螺杆配合, 从而将第一扣件和第二扣件固定在杆状物。
歩骤 602, 将具有散热片的远端射频模块安装在抱杆扣件。
将远端射频模块安装在抱杆扣件为: 抱杆扣件的第一扣件开设有第一 孔, 远端射频模块设有第一挂钩, 第一挂钩挂于第一孔中。
歩骤 603, 将具有烟肉效应的非密闭壳体固定在抱杆扣件, 使远端射频 模块位于非密闭壳体的内部。
其中, 非密闭壳体可以是一个完整的壳体, 也可以是由多个壳体组合而 成。 将具有烟肉效应的非密闭壳体固定在抱杆扣件为: 抱杆扣件开设有第二 孔, 非密闭壳体设有第二挂钩, 第二挂钩挂于第二孔中从而, 使远端射频模 块位于非密闭壳体的内部。
该非密闭壳体可以为上下开口的非密闭壳体。 由上可以看出, 远端射频模块工作时, 远端射频模块产生的热量通过非 密闭壳体, 利用烟肉效应形成自然通风风道, 从而, 给该非密闭壳体内的通 信设备散热。
其中, 非密闭壳体可以为非金属材料, 可以采用 PV/PPC等材料, 减小 对无线信号的影响。 非密闭壳体的外形可以根据所在环境进行隐蔽设计, 如 设计成圆筒、 矩形筒、 曲线筒、 树型外壳等。
如图 7所示, 为本发明实施例中远端射频模块的安装的一种实现方式流 程图, 包括:
歩骤 701, 将抱杆扣件固定在杆状物。
杆状物可以安装在大地、 平台、 墙边、 铁塔等地方, 也可以是电线杆、 路灯架等已有的设备。
将抱杆扣件固定在杆状物为: 抱杆扣件包括第一扣件、 第二扣件和螺 杆, 第一扣件和第二扣件分别开设有孔, 螺杆穿设于第一扣件和第二扣件的 孔, 通过螺母与螺杆配合, 从而将第一扣件和第二扣件固定在杆状物。
歩骤 702, 将具有散热片的远端射频模块安装在抱杆扣件。
将远端射频模块安装在抱杆扣件为: 抱杆扣件的第一扣件开设有第一 孔, 远端射频模块设有第一挂钩, 第一挂钩挂于第一孔中。
歩骤 703, 将通风设备设于抱杆扣件。
通风设备可以是风扇等设备, 用于对远端射频模块进行强化散热, 通过 强迫风冷保证远端射频模块的散热达到工作要求。 远端射频模块工作时, 通 风设备也开始工作, 形成强迫风冷风道辅助远端射频模块的散热。
歩骤 704, 将具有烟肉效应的非密闭壳体固定在抱杆扣件, 使远端射频 模块安装在非密闭壳体的内部。
其中, 非密闭壳体可以是一个完整的壳体, 也可以是由多个壳体组合而 成。 将具有烟肉效应的非密闭壳体固定在抱杆扣件为: 抱杆扣件开设有第二 孔, 非密闭壳体设有第二挂钩, 第二挂钩挂于第二孔中从而, 使远端射频模 块位于非密闭壳体的内部。
该非密闭壳体可以为上下开口的非密闭壳体。
由上可以看出, 远端射频模块工作时, 远端射频模块产生的热量通过非 密闭壳体, 利用烟囱效应形成自然通风风道, 从而, 给该非密闭壳体内的远 端射频模块散热。
其中, 非密闭壳体可以为非金属材料, 可以采用 PV/PPC等材料, 减小 对无线信号的影响。 非密闭壳体的外形可以根据所在环境进行隐蔽设计, 如 设计成圆筒、 矩形筒、 曲线筒、 树型外壳等。
由上技术方案, 可以得知, 具有散热片的远端射频模块设于具有烟囱效 应的非密闭壳体内, 不仅可以通过散热片为该远端射频模块散热, 而且还可 以利用具有烟肉效应的非密闭壳体为该远端射频模块散热, 从而满足了远端 射频模块的散热需求。
以上所述仅是本发明的优选实施方式, 应当指出, 对于本技术领域的普 通技术人员来说, 在不脱离本发明原理的前提下, 还可以做出若干改进和润 饰, 这些改进和润饰也应视本发明的保护范围。

Claims

权利要求书
1、 一种远端射频模块的安装方法, 其特征在于, 所述的方法包括: 将抱杆扣件固定在杆状物;
将具有散热片的远端射频模块安装在所述抱杆扣件;
将具有烟肉效应的非密闭壳体固定在所述抱杆扣件, 使所述远端射频模 块位于所述非密闭壳体的内部。
2、 如权利要求 1所述远端射频模块的安装方法, 其特征在于, 将所述 抱杆扣件固定在杆状物上之后, 所述的方法还包括: 将通风设备设于所述抱 杆扣件。
3、 如权利要求 1所述远端射频模块的安装方法, 其特征在于, 将抱杆 扣件固定在杆状物为: 所述抱杆扣件包括第一扣件、 第二扣件和螺杆, 所述 第一扣件和第二扣件分别开设有孔, 所述螺杆穿设于所述第一扣件和第二扣 件的孔, 通过螺母与所述螺杆配合, 从而将所述第一扣件和所述第二扣件固 定在杆状物。
4、 如权利要求 3所述远端射频模块的安装方法, 其特征在于, 将远端 射频模块安装在所述抱杆扣件为: 所述第一扣件开设有第一孔, 所述远端射 频模块设有第一挂钩, 所述第一挂钩挂于所述第一孔中。
5、 如权利要求 1所述远端射频模块的安装方法, 其特征在于, 将具有 烟肉效应的非密闭壳体固定在所述抱杆扣件为: 所述抱杆扣件开设有第二 孔, 所述非密闭壳体设有第二挂钩, 所述第二挂钩挂于所述第二孔中。
6、 一种远端射频模块的安装装置, 其特征在于, 所述的装置包括: 抱杆扣件, 固定在杆状物, 用于安装具有散热片的远端射频模块; 具有烟肉效应的非密闭壳体, 固定在所述抱杆扣件, 使所述远端射频模 块位于所述非密闭壳体的内部。
7、 如权利要求 6所述远端射频模块的安装装置, 其特征在于, 所述抱 杆扣件包括第一扣件、 第二扣件和螺杆, 所述第一扣件和第二扣件分别开设 有孔, 所述螺杆穿设于所述第一扣件和第二扣件的孔, 通过螺母与所述螺杆 配合, 从而将所述第一扣件和所述第二扣件固定在杆状物。
8、 如权利要求 7所述远端射频模块的安装装置, 其特征在于, 所述第 一扣件开设有第一孔, 所述远端射频模块设有第一挂钩, 所述第一挂钩挂于 所述第一孔。
9、 如权利要求 6所述远端射频模块的安装装置, 其特征在于, 所述抱 杆扣件开设有第二孔, 所述非密闭壳体设有第二挂钩, 所述第二挂钩挂于所 述第二孔中。
10、 如权利要求 6所述远端射频模块的安装装置, 其特征在于, 所述安 装装置还包括通风设备, 设于所述抱杆扣件, 所述通风设备用于对所述远端 射频模块散热。
11、 如权利要求 6所述远端射频模块的安装装置, 其特征在于, 所述具 有烟肉效应的非密闭壳体为非金属材料。
12、 如权利要求 6或 11所述远端射频模块的安装装置, 其特征在于, 所述具有烟肉效应的非密闭壳体的外形为圆筒状、 或矩形筒状、 或曲线筒 状、 或树形筒。
PCT/CN2009/070719 2008-08-26 2009-03-10 一种远端射频模块的安装方法和装置 WO2010022595A1 (zh)

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