WO2010066132A1 - 电力线通讯设备及其控制方法 - Google Patents

电力线通讯设备及其控制方法 Download PDF

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Publication number
WO2010066132A1
WO2010066132A1 PCT/CN2009/072855 CN2009072855W WO2010066132A1 WO 2010066132 A1 WO2010066132 A1 WO 2010066132A1 CN 2009072855 W CN2009072855 W CN 2009072855W WO 2010066132 A1 WO2010066132 A1 WO 2010066132A1
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WO
WIPO (PCT)
Prior art keywords
power line
communication device
line communication
state
network
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Application number
PCT/CN2009/072855
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English (en)
French (fr)
Inventor
花锦
王旭军
Original Assignee
华为终端有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by 华为终端有限公司 filed Critical 华为终端有限公司
Publication of WO2010066132A1 publication Critical patent/WO2010066132A1/zh
Priority to US12/858,141 priority Critical patent/US8549340B2/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B3/00Line transmission systems
    • H04B3/54Systems for transmission via power distribution lines
    • H04B3/542Systems for transmission via power distribution lines the information being in digital form
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B2203/00Indexing scheme relating to line transmission systems
    • H04B2203/54Aspects of powerline communications not already covered by H04B3/54 and its subgroups
    • H04B2203/5429Applications for powerline communications
    • H04B2203/5458Monitor sensor; Alarm systems

Definitions

  • the invention relates to the field of communications, in particular to a power line communication device and a control method thereof. Background technique
  • the power of the PLC device converts the AC mains (100 ⁇ 240V AC) into the working voltage required by the PLC device.
  • the useful power of the power conversion is relatively low, up to 75%.
  • Home users generally do not need to use PLC equipment continuously for 24 hours.
  • the power of the PLC equipment if the power of the PLC equipment is not turned off, the power of the PLC equipment will continue to convert the AC mains, thus causing Waste of electrical energy.
  • the power consumption of the power supply portion of the PLC device is large, the heat generation amount is also relatively large, so that the PLC device becomes unstable due to the excessive temperature.
  • a power chip which provides power conversion of AC mains (100 ⁇ 240V AC) to ensure power supply when the PLC device works
  • network transmission chip which completes the input of the Ethernet line signal/ Output and modulation/demodulation to ensure that network signals are transmitted on the line.
  • the technical problem to be solved by the present invention is to provide a PLC device and a control method thereof, which enable the power line communication device to automatically save power.
  • a method for controlling a power line communication PLC device including:
  • the working state of the power line communication device is switched according to the operating state and the network state of the power line communication device.
  • a power line communication PLC device including:
  • a working state obtaining unit configured to acquire an operating state of the power line communication device
  • a network status obtaining unit configured to acquire a network status of the power line communication device
  • the switching unit is configured to switch the working state of the power line communication device according to the network state and the working state of the power line communication device acquired by the working state acquiring unit and the network state acquiring unit.
  • the working state of the power line communication device is automatically switched according to the network state and the working state of the power line communication device, thereby saving the power consumption of the power line communication device without manual intervention, and avoiding the temperature being too high As a result, the working state of the power line communication equipment is unstable.
  • FIG. 1 is a flow chart showing a control method of a PLC device according to a first embodiment of the present invention
  • FIG. 2 is a flow chart showing a control method of a PLC device according to a second embodiment of the present invention.
  • FIG. 3 is a flow chart showing a control method of a PLC device according to a third embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a PLC device according to a fourth embodiment of the present invention.
  • Figure 5 is a schematic structural view of a PLC device according to a fifth embodiment of the present invention.
  • Fig. 6 is a schematic structural view of a PLC device according to a sixth embodiment of the present invention. detailed description
  • the embodiment of the present invention provides a PLC device and a control method thereof for the problem that manual operation is required to save power when using a PLC device in the prior art.
  • a control method of a PLC device includes:
  • a control method of a PLC device includes:
  • the timer can periodically generate a control signal to periodically detect the network state and the working state of the PLC device, thereby being able to flexibly set the frequency of determining whether the PLC device switches the working state, and reasonably configuring the system occupied by the determining process. Resources.
  • the working state of the PLC device after the last switching can be recorded through the memory, and the current working state of the PLC device is obtained by reading the record of the memory.
  • the step may be specifically: when the network state of the PLC device is idle, and the working state is normal, the PLC device is switched from the normal working state to the sleep state; when the network state of the PLC device is busy, and the working state is When sleeping, the PLC device is switched from the sleep state to the normal working state.
  • the normal working state of the PLC device is: the PLC device is powered by the main power of the PLC device, and the main power of the PLC device charges the battery of the PLC device.
  • the sleep state of the PLC device is: The PLC device is powered by the battery of the PLC device. In this case, when the PLC device enters the normal working state from the sleep state, the main power of the PLC device charges the battery; when the PLC device enters the sleep state from the normal working state, the battery starts to supply power first, and then the relay cuts off the main power; When the PLC device enters the normal working state from the sleep state, the relay switches to the main power of the PLC device, and the battery re-enters the charging state.
  • the control relay can be switched between the main power source and the battery by providing a control signal to the relay of the PLC device.
  • the normal working state of the PLC device is: The chip of the PLC device is in the maximum power consumption mode.
  • the sleep state of the PLC device is: The chip of the PLC device is in a standby mode. In this case, when the PLC device automatically switches to the sleep state, the chip of the PLC device is in the standby mode, the power consumption is relatively small, and the power is saved.
  • the chip of the PLC device can be a power chip in the PLC device or a network transmission chip.
  • the chip of the PLC device can be switched between the standby mode and the maximum power mode by providing a control signal to the chip of the PLC device.
  • the normal working state of the PLC device is: The PLC device is powered by the main power of the PLC device, and the main power of the PLC device charges the battery of the PLC device; the chip of the PLC device is in the maximum power consumption mode.
  • the sleep state of the PLC device is: The PLC device is powered by the battery of the PLC device; the chip of the PLC device is in a standby mode.
  • the chip of the PLC device can be a power chip in the PLC device or a network transmission chip. In this case, when the PLC device automatically switches to the sleep state, the PLC device has the lowest power consumption and saves the most power.
  • the network state of the PLC device is determined, and then the working state of the PLC device is automatically switched according to the network state and the working state of the PLC device, when the PLC
  • the network status of the device is idle, the PLC device is in a sleep state.
  • the PLC device is in a normal working state, thereby saving power and requiring no manual intervention.
  • a control method of a PLC device includes:
  • the obtained network state of the power line communication device is busy; when the network data traffic passing through the power line communication device is less than or equal to a predetermined value, the acquired power line The network status of the communication device is idle. You can set the predetermined value to be several packets, or 0 packets.
  • the step may be specifically: when the network state of the PLC device is idle, and the working state is normal, the PLC device is switched from the normal working state to the sleep state; when the network state of the PLC device is busy, and the working state is When sleeping, the PLC device is switched from the sleep state to the normal working state.
  • the normal working state of the PLC device is: the PLC device is powered by the main power of the PLC device, and the main power of the PLC device charges the battery of the PLC device; and/or the chip of the PLC device is in maximum power consumption mode.
  • the sleep state of the PLC device is: The PLC device is powered by the battery of the PLC device; and/or the chip of the PLC device is in the standby mode.
  • the network state of the PLC device is judged, and then the PLC device is automatically automatically determined according to the network state and the working state of the PLC device.
  • the working state is switched.
  • the network status of the PLC device is idle, the PLC device is in a sleep state.
  • the network state of the PLC device is busy, the PLC device is in a normal working state, thereby saving power and eliminating manual intervention. .
  • a power line communication PLC device 4 includes: a working state obtaining unit 41, configured to acquire an operating state of the PLC device;
  • the network status obtaining unit 42 is configured to acquire a network status of the PLC device.
  • the switching unit 43 is configured to switch the working state of the PLC device according to the network state and the working state of the PLC device.
  • the working state thereof is Switching makes the PLC equipment environmentally friendly and energy-saving, saving the power consumption of the PLC equipment and not affecting the normal use of the user. At the same time, the heat generation of the PLC equipment is reduced, and the stability and reliability of the work are increased.
  • a PLC device As shown in FIG. 5, a PLC device according to a fifth embodiment of the present invention includes:
  • the timing unit 44 is configured to start the working state acquiring unit 41 and the network state acquiring unit 42 after the predetermined time has expired;
  • a working state obtaining unit 41 configured to acquire an operating state of the PLC device
  • the network status obtaining unit 42 is configured to acquire a network status of the PLC device.
  • the switching unit 43 is configured to switch the working state of the PLC device according to the network state and the working state of the PLC device.
  • the network state obtaining unit 42 includes: a physical state detecting unit 421, configured to detect a physical connection state of the power line communication device and the network; and a first determining unit 422, configured to: when the physical connection state of the power line communication device and the network is When normal, the acquired network state of the power line communication device is busy; when the physical connection state of the power line communication device and the network is disconnected, the acquired network state of the power line communication device is idle.
  • the switching unit 43 is specifically: when the network state of the PLC device is idle, and the working state is normal, the PLC device is switched from the normal working state to the sleep state; when the network state of the PLC device is busy, and the working state When in hibernation, the PLC device is switched from the sleep state to the normal working state.
  • the normal working state of the PLC device is: the PLC device is powered by the main power of the PLC device, and the main power of the PLC device charges the battery of the PLC device, and/or the chip of the PLC device is in maximum power consumption Mode; the chip of the PLC device can be a power chip in the PLC device, or a network transmission chip.
  • the sleep state of the PLC device is: The PLC device is powered by the battery of the PLC device, and/or the chip of the PLC device is in the standby mode.
  • the switching unit 43 causes the chip of the PLC device to switch between the standby mode and the maximum power consumption mode by providing a control signal to the chip of the PLC device. In addition, the switching unit 43 passes the relay to the PLC device. The appliance provides a control signal that switches between the main power source and the battery.
  • the PLC device when the PLC device enters the normal working state from the sleep state, the battery is charged by the main power source of the PLC device; when the PLC device enters the sleep state from the normal working state, the switching unit first controls the battery to start supplying power. Then, the switching unit control relay cuts off the main power of the PLC device; when the PLC device enters the normal working state from the sleep state, the switching unit control relay switches to the main power output of the PLC device to output power, and the battery re-enters the charging state.
  • the network state obtaining unit 42 determines the network state of the PLC device according to the physical connection state of the power line communication device and the network, and the switching unit 43 automatically works on the PLC device according to the network state and the working state of the PLC device. The status is switched. When the network status of the PLC device is idle, the PLC device is in a sleep state. When the network status of the PLC device is busy, the PLC device is in a normal working state, thereby saving power and eliminating manual intervention.
  • a PLC device As shown in FIG. 6, a PLC device according to a sixth embodiment of the present invention includes:
  • the timing unit 44 is configured to start the working state acquiring unit 41 and the network state acquiring unit 42 after the predetermined time has expired;
  • a working state obtaining unit 41 configured to acquire an operating state of the PLC device
  • the network status obtaining unit 42 is configured to acquire the network status of the PLC device.
  • the switching unit 43 is configured to switch the working state of the PLC device according to the network state and the working state of the PLC device.
  • the network status obtaining unit 42 includes: a network traffic detecting unit 423, configured to detect network data traffic passing the power line communication device; and a second determining unit 424, configured to: when the network data traffic passing the power line communication device is greater than a predetermined value The acquired network state of the power line communication device is busy; when the network data traffic passing through the power line communication device is less than or equal to a predetermined value, the acquired network state of the power line communication device is idle.
  • the switching unit 43 is specifically: when the network state of the PLC device is idle, and the working state is normal, the PLC device is switched from the normal working state to the sleep state; when the network state of the PLC device is busy, and the working state When sleeping, switch the PLC device from sleep to normal State.
  • the normal working state of the PLC device is: the PLC device is powered by the main power of the PLC device, and the main power of the PLC device charges the battery of the PLC device, and/or the chip of the PLC device is in maximum power consumption Mode;
  • the sleep state of the PLC device is: The PLC device is powered by the battery of the PLC device, and/or the chip of the PLC device is in the standby mode.
  • the network state acquiring unit 42 determines the network state of the PLC device according to the network data traffic passing through the power line communication device, and the switching unit 43 automatically performs the working state of the PLC device according to the network state and the working state of the PLC device. Switching, when the network status of the PLC device is idle, the PLC device is in a sleep state. When the network state of the PLC device is busy, the PLC device is in a normal working state, thereby saving power and requiring no manual intervention.

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Cable Transmission Systems, Equalization Of Radio And Reduction Of Echo (AREA)
  • Small-Scale Networks (AREA)
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Description

电力线通讯设备及其控制方法 本申请要求了 2008年 12月 10日递交的申请号为 200810239342. 3, 发明 名称为 "电力线通讯设备及其控制方法" 的中国专利申请的优先权, 其全部内 容通过引用结合在本申请中。 技术领域
本发明涉及通信领域, 特别是指一种电力线通讯设备及其控制方法。 背景技术
电力线数据传输技术作为家庭组网的新技术,已经逐渐开始应用。通过 PLC (Power Line Communication, 电力线通讯) 设备, 电脑等终端相互间可以通 过电力线传输数据。
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:
PLC设备在工作时, PLC设备的电源将交流市电 (100〜240V AC ) 转化为 PLC设备所需要的工作电压, 电源转换的有用功率比较低, 最多为 75%。 家庭 用户一般不需要 24小时连续使用 PLC设备, 但是, 即使用户在不使用 PLC设 备的时候, 如果 PLC设备的电源没有关闭, PLC设备的电源将会持续进行交流 市电的转换, 因此, 造成了电能的浪费。 并且, 由于 PLC设备的电源部分的功 率消耗大,发热量也比较大,使得 PLC设备由于温度过高,工作状态变得不稳定。
另外, PLC设备中有各种芯片, 例如, 电源芯片, 其提供交流市电(100〜 240V AC ) 的电源转换, 保证 PLC设备工作时的供电; 网络传输芯片, 其完成 以太网线路信号输入 /输出和调制 /解调, 保证网络信号在线路上传输。 当用户 不使用 PLC设备的时候, 如果 PLC设备的电源没有关闭, 并且 PLC设备中的芯 片仍然处于最大功耗模式, 这同样也造成了电能浪费。
为了节电节能,用户不用时,只能给 PLC设备手工断电,或拔掉 PLC设备, 下次使用 PLC设备时, 需要手工给 PLC设备插电。 发明内容
本发明要解决的技术问题是提供一种 PLC设备及其控制方法, 能够使电力 线通讯设备自动节省电能。
为解决上述技术问题, 本发明的实施例提供技术方案如下:
一方面, 提供一种电力线通讯 PLC设备的控制方法, 包括:
获取电力线通讯设备的工作状态和网络状态;
根据该电力线通讯设备的工作状态和网络状态, 对该电力线通讯设备的工 作状态进行切换。
一方面, 提供一种电力线通讯 PLC设备, 包括:
工作状态获取单元, 用于获取电力线通讯设备的工作状态;
网络状态获取单元, 用于获取该电力线通讯设备的网络状态;
切换单元,用于根据该工作状态获取单元和网络状态获取单元获取的该电 力线通讯设备的网络状态和工作状态, 对该电力线通讯设备的工作状态进行切 换。
本发明的实施例具有以下有益效果:
上述方案中, 根据电力线通讯设备的网络状态和工作状态, 自动对其工作 状态进行切换, 因此使得在不需要人工干预的情况下, 节省了电力线通讯设备 的消耗电能, 并且能够避免因为温度过高而造成电力线通讯设备的工作状态不 稳定。 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为本发明第一实施例的 PLC设备的控制方法的流程图;
图 2为本发明第二实施例的 PLC设备的控制方法的流程图;
图 3为本发明第三实施例的 PLC设备的控制方法的流程图;
图 4为本发明第四实施例的 PLC设备的结构示意图;
图 5为本发明第五实施例的 PLC设备的结构示意图;
图 6为本发明第六实施例的 PLC设备的结构示意图。 具体实施方式
为了使本领域的技术人员更好的理解本发明内容, 以下结合附图以及具体 实施例对本发明内容作具体说明, 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。
为使本发明的实施例要解决的技术问题、 技术方案和优点更加清楚, 下面 将结合附图及具体实施例进行详细描述。
本发明的实施例针对现有技术中使用 PLC设备时, 为节省电能需要手工操 作的问题, 提供一种 PLC设备及其控制方法。
如图 1所示,为本发明第一实施例提供的一种 PLC设备的控制方法,包括:
511、 获取电力线通讯设备的工作状态和网络状态;
512、 根据该电力线通讯设备的工作状态和网络状态, 对该电力线通讯设 备的工作状态进行切换。
上述方案中, 根据电力线通讯设备的网络状态和工作状态, 自动对其工作 状态进行切换, 因此使得在不需要人工干预的情况下, 节省了电力线通讯设备 的消耗电能, 并且能够避免因为温度过高而造成电力线通讯设备的工作状态不 稳定。 如图 2所示, 为本发明第二实施例提供的 PLC设备的控制方法, 包括:
521、 启动定时器, 当该定时器超时后, 则进行下一步骤;
本步骤中, 定时器能够周期性产生控制信号, 来周期性检测该 PLC设备的 网络状态和工作状态, 从而能够灵活设置判断 PLC设备是否切换工作状态的频 率, 合理地配置判断处理所占用的***资源。
522、 获取 PLC设备的工作状态;
本步骤中, 可以通过存储器记录上一次切换后的 PLC设备的工作状态, 通 过读取存储器的记录, 获取 PLC设备的当前工作状态。
523、 检测该 PLC设备与网络的物理连接状态。
524、 根据 PLC设备与网络的物理连接状态, 判断该 PLC设备的网络状态; 当该电力线通讯设备与网络的物理连接状态为正常时, 则获取的该电力线 通讯设备的网络状态为忙; 当该电力线通讯设备与网络的物理连接状态为断开 时, 则获取的该电力线通讯设备的网络状态为空闲。
525、 根据该 PLC设备的网络状态和工作状态, 对该 PLC设备的工作状态 进行切换;
该步骤可以具体为: 当该 PLC设备的网络状态为空闲, 并且工作状态为正 常时, 将该 PLC设备从正常工作状态切换到休眠状态; 当该 PLC设备的网络状 态为忙, 并且工作状态为休眠时, 将该 PLC设备从休眠状态切换到正常工作状 态。
其中, 该 PLC设备的正常工作状态为: 该 PLC设备由该 PLC设备的主电源 供电, 并且该 PLC设备的主电源给该 PLC设备的蓄电池充电。 该 PLC设备的休 眠状态为: 该 PLC设备由该 PLC设备的蓄电池供电。 这种情况下, 当 PLC设备 从休眠状态进入正常工作状态时, PLC设备的主电源给蓄电池充电; 当 PLC设 备从正常工作状态进入休眠状态时, 首先蓄电池开始供电, 然后继电器切断主 电源; 当 PLC设备从休眠状态进入正常工作状态时, 继电器切换到 PLC设备的 主电源, 同时蓄电池重新进入充电状态。 因此, 当 PLC设备进入休眠状态时, 主电源不需要进行交流市电的转换, 而由蓄电池进行供电, 提高了 PLC设备的 有用功率, 节省了电能。 另外, PLC设备的发热量降低, 提高了 PLC设备的可 靠性。 可以通过给 PLC设备的继电器提供控制信号, 控制继电器在主电源和蓄 电池之间切换。
或者, 该 PLC设备的正常工作状态为: 该 PLC设备的芯片处于最大功耗模 式。 该 PLC设备的休眠状态为: 该 PLC设备的芯片处于等待 (standby )模式。 这种情况下, 当 PLC设备自动切换到休眠状态时, PLC设备的芯片在等待模式, 功耗比较小, 节省了电能。 该 PLC设备的芯片可以为 PLC设备中的电源芯片, 也可以为网络传输芯片。 可以通过给 PLC设备的芯片提供控制信号, 使 PLC设 备的芯片在等待模式和最大功耗模式之间转换。
或者, 该 PLC设备的正常工作状态为: 该 PLC设备由该 PLC设备的主电源 供电, 并且该 PLC设备的主电源给该 PLC设备的蓄电池充电; 该 PLC设备的芯 片处于最大功耗模式。 该 PLC设备的休眠状态为: 该 PLC设备由该 PLC设备的 蓄电池供电; 该 PLC设备的芯片处于等待 (standby ) 模式。 该 PLC设备的芯 片可以为 PLC设备中的电源芯片,也可以为网络传输芯片。这种情况下,当 PLC 设备自动切换到休眠状态时, PLC设备的功耗最低, 节省电能最多。
上述实施例中, 首先根据该电力线通讯设备与网络的物理连接状态, 判断 PLC设备的网络状态, 然后根据该 PLC设备的网络状态和工作状态, 自动对该 PLC设备的工作状态进行切换, 当 PLC设备的网络状态为空闲时, 使得 PLC设 备处于休眠状态, 当 PLC设备的网络状态为忙时, 使得 PLC设备处于正常工作 状态, 因此节省了电能, 并且不需要人工干预。
如图 3所示, 为本发明第三实施例提供的 PLC设备的控制方法, 包括:
531、 启动定时器, 当该定时器超时后, 则进行下一步骤。
532、 获取 PLC设备的工作状态。
S33、 检测经过该电力线通讯设备的网络数据流量。
S34、 根据经过该电力线通讯设备的网络数据流量, 判断该 PLC设备的网 络状态;
当经过该电力线通讯设备的网络数据流量大于预定值时, 则获取的该电力 线通讯设备的网络状态为忙; 当经过该电力线通讯设备的网络数据流量小于或 等于预定值时, 则获取的该电力线通讯设备的网络状态为空闲。 可以设置预定 值为几个数据包, 或者为 0个数据包。
S35、 根据该 PLC设备的网络状态和工作状态, 对该 PLC设备的工作状态 进行切换;
该步骤可以具体为: 当该 PLC设备的网络状态为空闲, 并且工作状态为正 常时, 将该 PLC设备从正常工作状态切换到休眠状态; 当该 PLC设备的网络状 态为忙, 并且工作状态为休眠时, 将该 PLC设备从休眠状态切换到正常工作状 态。
其中, 该 PLC设备的正常工作状态为: 该 PLC设备由该 PLC设备的主电源 供电, 并且该 PLC设备的主电源给该 PLC设备的蓄电池充电; 和 /或该 PLC设 备的芯片处于最大功耗模式。 该 PLC设备的休眠状态为: 该 PLC设备由该 PLC 设备的蓄电池供电; 和 /或该 PLC设备的芯片处于等待模式。
本发明实施例提供的 PLC设备的控制方法中, 首先根据经过该电力线通讯 设备的网络数据流量, 判断 PLC设备的网络状态, 然后根据该 PLC设备的网络 状态和工作状态, 自动对该 PLC设备的工作状态进行切换, 当 PLC设备的网络 状态为空闲时, 使得 PLC设备处于休眠状态, 当 PLC设备的网络状态为忙时, 使得 PLC设备处于正常工作状态, 因此节省了电能, 并且不需要人工干预。
如图 4所示,本发明第四实施例提供的一种电力线通讯 PLC设备 4,包括: 工作状态获取单元 41, 用于获取该 PLC设备的工作状态;
网络状态获取单元 42, 用于获取该 PLC设备的网络状态;
切换单元 43,用于根据该 PLC设备的网络状态和工作状态,对该 PLC设备 的工作状态进行切换。
本发明实施例中, 根据该 PLC设备的网络状态和工作状态, 对其工作状态 进行切换, 使得 PLC设备环保节能, 节省 PLC设备的消耗电能, 并且不影响用 户的正常使用。 同时降低了 PLC设备的发热量, 增加了其工作的稳定性和可靠 性。
如图 5所示, 本发明第五实施例提供的一种 PLC设备, 包括:
定时单元 44, 用于当预定时间超时后, 则启动工作状态获取单元 41和网 络状态获取单元 42 ;
工作状态获取单元 41, 用于获取该 PLC设备的工作状态;
网络状态获取单元 42, 用于获取该 PLC设备的网络状态;
切换单元 43,用于根据该 PLC设备的网络状态和工作状态,对该 PLC设备 的工作状态进行切换。
其中, 该网络状态获取单元 42包括: 物理状态检测单元 421, 用于检测该 电力线通讯设备与网络的物理连接状态; 第一判断单元 422, 用于当该电力线 通讯设备与网络的物理连接状态为正常时, 则获取的该电力线通讯设备的网络 状态为忙; 当该电力线通讯设备与网络的物理连接状态为断开时, 则获取的该 电力线通讯设备的网络状态为空闲。
该切换单元 43具体为: 当该 PLC设备的网络状态为空闲, 并且工作状态 为正常时, 将该 PLC设备从正常工作状态切换到休眠状态; 当该 PLC设备的网 络状态为忙, 并且工作状态为休眠时, 将该 PLC设备从休眠状态切换到正常工 作状态。
其中, 该 PLC设备的正常工作状态为: 该 PLC设备由该 PLC设备的主电源 供电, 并且该 PLC设备的主电源给该 PLC设备的蓄电池充电, 和 /或该 PLC设 备的芯片处于最大功耗模式;该 PLC设备的芯片可以为 PLC设备中的电源芯片, 也可以为网络传输芯片。 该 PLC设备的休眠状态为: 该 PLC设备由该 PLC设备 的蓄电池供电, 和 /或该 PLC设备的芯片处于等待模式。
切换单元 43通过给 PLC设备的芯片提供控制信号, 使 PLC设备的芯片在 等待模式和最大功耗模式之间转换。 另外, 切换单元 43通过给 PLC设备的继 电器提供控制信号, 控制继电器在主电源和蓄电池之间切换。
本发明实施例提供的 PLC设备, 当 PLC设备从休眠状态进入正常工作状态 时, 蓄电池由 PLC设备的主电源充电; 当 PLC设备从正常工作状态进入休眠状 态时, 首先切换单元控制蓄电池开始供电, 然后切换单元控制继电器切断 PLC 设备的主电源; 当 PLC设备从休眠状态进入正常工作状态时, 切换单元控制继 电器切换到 PLC设备的主电源输出供电, 而蓄电池重新进入充电状态。
上述实施例中, 网络状态获取单元 42根据该电力线通讯设备与网络的物 理连接状态, 判断 PLC设备的网络状态, 切换单元 43根据该 PLC设备的网络 状态和工作状态, 自动对该 PLC设备的工作状态进行切换, 当 PLC设备的网络 状态为空闲时, 使得 PLC设备处于休眠状态, 当 PLC设备的网络状态为忙时, 使得 PLC设备处于正常工作状态, 因此节省了电能, 并且不需要人工干预。
如图 6所示, 本发明第六实施例提供的一种 PLC设备, 包括:
定时单元 44, 用于当预定时间超时后, 则启动工作状态获取单元 41和网 络状态获取单元 42 ;
工作状态获取单元 41, 用于获取该 PLC设备的工作状态;
网络状态获取单元 42, 用于获取该 PLC设备的网络状态。
切换单元 43,用于根据该 PLC设备的网络状态和工作状态,对该 PLC设备 的工作状态进行切换。
其中, 该网络状态获取单元 42包括: 网络流量检测单元 423, 用于检测经 过该电力线通讯设备的网络数据流量; 第二判断单元 424, 用于当经过该电力 线通讯设备的网络数据流量大于预定值时, 则获取的该电力线通讯设备的网络 状态为忙; 当经过该电力线通讯设备的网络数据流量小于或等于预定值时, 则 获取的该电力线通讯设备的网络状态为空闲。
该切换单元 43具体为: 当该 PLC设备的网络状态为空闲, 并且工作状态 为正常时, 将该 PLC设备从正常工作状态切换到休眠状态; 当该 PLC设备的网 络状态为忙, 并且工作状态为休眠时, 将该 PLC设备从休眠状态切换到正常工 作状态。
其中, 该 PLC设备的正常工作状态为: 该 PLC设备由该 PLC设备的主电源 供电, 并且该 PLC设备的主电源给该 PLC设备的蓄电池充电, 和 /或该 PLC设 备的芯片处于最大功耗模式; 该 PLC设备的休眠状态为: 该 PLC设备由该 PLC 设备的蓄电池供电, 和 /或该 PLC设备的芯片处于等待模式。
上述实施例中, 网络状态获取单元 42根据经过该电力线通讯设备的网络 数据流量判断 PLC设备的网络状态, 切换单元 43根据该 PLC设备的网络状态 和工作状态, 自动对该 PLC设备的工作状态进行切换, 当 PLC设备的网络状态 为空闲时, 使得 PLC设备处于休眠状态, 当 PLC设备的网络状态为忙时, 使得 PLC设备处于正常工作状态, 因此节省了电能, 并且不需要人工干预。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分步骤 是可以通过程序来指令相关的硬件来完成, 所述的程序可以存储于一移动终端 的可读取存储介质中, 该程序在执行时, 包括如上述方法实施例的步骤, 所述 的存储介质等。
以上所述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,在不脱离本发明所述原理的前提下,还可以作出若干改进和润饰, 这些改进和润饰也应视为本发明的保护范围。

Claims

权利要求书
1. 一种电力线通讯设备的控制方法, 其特征在于, 包括:
获取所述电力线通讯设备的工作状态和网络状态;
根据所述电力线通讯设备的工作状态和网络状态, 对所述电力线通讯设备 的工作状态进行切换。
2. 根据权利要求 1所述的电力线通讯设备的控制方法, 其特征在于, 所 述获取电力线通讯设备的工作状态和网络状态之前, 还包括:
启动定时器, 当所述定时器超时后, 则获取所述电力线通讯设备的工作状 态和网络状态。
3. 根据权利要求 1或 2所述的电力线通讯设备的控制方法, 其特征在于, 所述根据电力线通讯设备的工作状态和网络状态,对电力线通讯设备的工作状 态进行切换, 包括:
当所述电力线通讯设备的网络状态为空闲, 并且所述电力线通讯设备的工 作状态为正常时, 将所述电力线通讯设备切换到休眠状态;
当所述电力线通讯设备的网络状态为忙, 并且所述电力线通讯设备的工作 状态为休眠时, 将所述电力线通讯设备切换到正常工作状态。
4. 根据权利要求 3所述的电力线通讯设备的控制方法, 其特征在于, 获 取电力线通讯设备的网络状态, 包括:
检测所述电力线通讯设备与网络的物理连接状态; 当所述电力线通讯设备 与网络的物理连接状态为正常时, 则获取的所述电力线通讯设备的网络状态为 忙; 当所述电力线通讯设备与网络的物理连接状态为断开时, 则获取的所述电 力线通讯设备的网络状态为空闲; 或者,
检测经过所述电力线通讯设备的网络数据流量; 当经过所述电力线通讯设 备的网络数据流量大于预定值时, 则获取的所述电力线通讯设备的网络状态为 忙; 当经过所述电力线通讯设备的网络数据流量小于或等于预定值时, 则获取 的所述电力线通讯设备的网络状态为空闲。
5. 根据权利要求 3所述的电力线通讯设备的控制方法, 其特征在于, 所述电力线通讯设备的正常工作状态为: 所述电力线通讯设备由所述电力 线通讯设备的主电源供电, 并且所述电力线通讯设备的主电源给所述电力线通 讯设备的蓄电池充电; 和 /或所述电力线通讯设备的芯片处于最大功耗模式; 所述电力线通讯设备的休眠状态为: 所述电力线通讯设备由所述电力线通 讯设备的蓄电池供电; 和 /或所述电力线通讯设备的芯片处于等待模式。
6. 一种电力线通讯设备, 其特征在于, 包括:
工作状态获取单元, 用于获取所述电力线通讯设备的工作状态; 网络状态获取单元, 用于获取所述电力线通讯设备的网络状态; 切换单元,用于根据所述工作状态获取单元获取的所述电力线通讯设备的 工作状态和所述网络状态获取单元获取的所述电力线通讯设备的网络状态, 对 所述电力线通讯设备的工作状态进行切换。
7. 根据权利要求 6所述的电力线通讯设备, 其特征在于, 还包括: 定时单元, 用于当预定时间超时后, 则启动所述工作状态获取单元和所述 网络状态获取单元。
8. 根据权利要求 6或 7所述的电力线通讯设备, 其特征在于, 所述切换 单元, 用于当所述电力线通讯设备的网络状态为空闲, 并且所述电力线通讯设 备的工作状态为正常时, 将所述电力线通讯设备切换到休眠状态; 或, 用于当 所述电力线通讯设备的网络状态为忙, 并且所述电力线通讯设备的工作状态为 休眠时, 将所述电力线通讯设备切换到正常工作状态。
9. 根据权利要求 8所述的电力线通讯设备, 其特征在于,
所述网络状态获取单元包括: 物理状态检测单元, 用于检测所述电力线通 讯设备与网络的物理连接状态; 和第一判断单元, 用于当所述物理状态检测单 元检测的所述电力线通讯设备与网络的物理连接状态为正常时, 则获取的所述 电力线通讯设备的网络状态为忙; 当所述物理状态检测单元检测的所述电力线 通讯设备与网络的物理连接状态为断开时, 则获取的所述电力线通讯设备的网 络状态为空闲; 或者,
所述网络状态获取单元包括: 网络流量检测单元, 用于检测经过所述电力 线通讯设备的网络数据流量; 和第二判断单元, 用于当所述网络流量检测单元 检测的经过所述电力线通讯设备的网络数据流量大于预定值时, 则获取的所述 电力线通讯设备的网络状态为忙; 当所述网络流量检测单元检测的经过所述电 力线通讯设备的网络数据流量小于或等于预定值时, 则获取的所述电力线通讯 设备的网络状态为空闲。
10. 根据权利要求 8所述的电力线通讯设备, 其特征在于,
所述电力线通讯设备的正常工作状态为: 所述电力线通讯设备由所述电力 线通讯设备的主电源供电, 并且所述电力线通讯设备的主电源给所述电力线通 讯设备的蓄电池充电; 和 /或所述电力线通讯设备的芯片处于最大功耗模式; 所述电力线通讯设备的休眠状态为: 所述电力线通讯设备由所述电力线通 讯设备的蓄电池供电; 和 /或所述电力线通讯设备的芯片处于等待模式。
PCT/CN2009/072855 2008-12-10 2009-07-21 电力线通讯设备及其控制方法 WO2010066132A1 (zh)

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DE602009000723D1 (de) 2011-03-24
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