WO2012062103A1 - 获取网络及设备节能能力的方法、设备及系统 - Google Patents

获取网络及设备节能能力的方法、设备及系统 Download PDF

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Publication number
WO2012062103A1
WO2012062103A1 PCT/CN2011/075049 CN2011075049W WO2012062103A1 WO 2012062103 A1 WO2012062103 A1 WO 2012062103A1 CN 2011075049 W CN2011075049 W CN 2011075049W WO 2012062103 A1 WO2012062103 A1 WO 2012062103A1
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Prior art keywords
network
energy consumption
power supply
total
supply device
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PCT/CN2011/075049
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English (en)
French (fr)
Inventor
胡波
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华为技术服务有限公司
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Publication of WO2012062103A1 publication Critical patent/WO2012062103A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • H04L41/0823Configuration setting characterised by the purposes of a change of settings, e.g. optimising configuration for enhancing reliability
    • H04L41/0833Configuration setting characterised by the purposes of a change of settings, e.g. optimising configuration for enhancing reliability for reduction of network energy consumption

Definitions

  • the present invention relates to the field of communications, and in particular, to a method, device, and system for acquiring network and device energy saving capabilities. Background technique
  • the energy management technology includes: The network management system sends energy consumption adjustment strategies to the network equipment through the energy management node.
  • the network device can adjust the actual energy consumption operation state according to the policy, thereby optimizing the energy consumption of the entire network; at the same time, the energy management node in the network collects the real-time energy consumption of the device by embedding the energy consumption monitoring device of the network device itself, and The collected real-time energy consumption is fed back to the top-level network management system for display.
  • the above technical solution for energy saving and emission reduction can only collect the real-time energy consumption after the network starts energy-saving optimization, and cannot When the network does not start the energy consumption of the entire network when the energy-saving optimization is started, it is impossible to know how much energy is saved compared with the network when the network-wide energy optimization is not performed, and the network is not optimized for the entire network;
  • the above-mentioned technical solutions for energy saving and emission reduction can only collect the real-time energy consumption after optimization of the energy consumption of the whole network, and cannot obtain the energy consumption of the corresponding equipment in the network for the equipment of different manufacturers, and the energy consumption of the equipment of different manufacturers cannot be performed. Compared, it is therefore impossible to select equipment with relatively low energy consumption during networking to achieve the goal of energy saving and emission reduction. Summary of the invention
  • Embodiments of the present invention provide a method, device, and system for acquiring network and device energy saving capabilities, It can realize the energy-saving effect evaluation before and after the network implementation energy optimization; and can obtain the energy consumption per unit service load of different manufacturers' equipment, and realize the comparison of energy consumption of different equipments.
  • a method for obtaining network energy saving capabilities including:
  • the network theory energy consumption total value, the network actual energy consumption total value, and the current actual network load total amount of the network in the first time period are sent to the client, so that the client can be based on the network theory
  • the total consumption value, the total actual energy consumption of the network, and the current actual network load total of the network in the first time show the actual energy saved by the network.
  • a method for obtaining energy saving capability of a device comprising:
  • the unit service load energy consumption of the power supply equipment in the different groups is sent to the client, so that the client displays the energy consumption of the power supply equipment in different groups.
  • a server comprising:
  • a first obtaining unit configured to acquire, according to the average value of the energy consumption per unit service load in the first time and the current actual network load in the first time period, when the network does not start the energy saving function, obtain the network in the network The total theoretical energy consumption of the network in the first time;
  • a second obtaining unit configured to obtain, according to information about each power supply device in the network, and energy consumption data of each power supply device after the network starts the energy saving function, obtain actual network performance of the network in the first time Total consumption value;
  • a first sending unit configured to use the total network theoretical energy consumption value and the total network actual energy consumption value And sending, by the network, the current actual network load total amount in the first time to the client, so that the client displays, according to the network theoretical total energy consumption value, the network actual energy consumption total value, and the The current actual network load total of the network in the first time indicates the actual energy consumption saved by the network.
  • a server comprising:
  • a grouping unit configured to group the power supply devices in the network according to the power supply device information;
  • the first calculating unit is configured to: according to the current actual network traffic load of the network and the energy consumption data of each power supply device in the network, Calculate the energy consumption per unit service load of the power supply equipment in different groups;
  • a second sending unit configured to send, to the client, the energy consumption of the unit service load of the power supply device in the different group acquired by the first computing unit, so that the client displays the energy consumption of the power supply device in different groups .
  • a system for obtaining network energy saving capabilities including:
  • a server configured to acquire, according to the average value of the energy consumption per unit service load in the first time and the current actual network load in the first time, according to the network, when the energy saving function is not started, acquiring the network in the first The total network energy consumption value in the time; obtaining the network in the first time according to the information of each power supply device in the network and the energy consumption data of each power supply device after the network starts the energy saving function Total network energy consumption value; sending the total network theoretical energy consumption value, the total network energy consumption value, and the current actual network load total of the network in the first time to the client, so that The client displays the actual energy saved by the network according to the total network energy consumption value, the total network energy consumption value display, and the current actual network load total of the network in the first time. Consumption
  • a client configured to receive a total network theoretical energy consumption value, a total network actual energy consumption value, and a current actual network load total amount of the network in the first time, where the total network theoretical energy consumption value is not activated by the network
  • the total energy consumption of the network in the first time during the energy saving function, and the total actual energy consumption of the network is the total actual energy consumption of the network in the first time after the network starts the energy saving function;
  • Total network energy consumption, total network energy consumption, and network in the first time The current actual network load total, calculate the actual energy saved by the network, and display the actual energy consumption of the network.
  • a system for obtaining energy saving capability of a device comprising:
  • a server configured to group the power supply devices in the network according to the power supply device information; calculate a unit of the power supply device in different groups according to the current actual network traffic load of the network and the energy consumption data of each power supply device in the network
  • the energy consumption of the service load of the power supply device in the different groups is sent to the client, so that the client displays the energy consumption of the power supply device in different groups;
  • the client is configured to receive energy consumption per unit service load of the power supply device in different groups, and display energy consumption per unit service load of the power supply device in the different groups.
  • the technical solution provided by the embodiment of the present invention can calculate and acquire the total network theoretical energy consumption value in the first time when the network does not start the energy saving function, and the network starts the energy saving function after the network is compared with the prior art.
  • the total actual energy consumption of the network in a period of time, and the total theoretical energy consumption of the network, the total actual energy consumption of the network, and the current actual network load of the network in the first time are sent to the client,
  • the client can display the actual energy saved by the network according to the total theoretical energy consumption of the network, the total energy consumption of the network, and the current actual network load of the network in the first time.
  • the energy consumption saved before and after the energy saving optimization of the network shows that the user can measure the energy saving and emission reduction of the network.
  • the other technical solutions provided by the embodiments of the present invention can calculate and acquire the energy consumption per unit service load of the power supply equipment in different groups of the network, and the unit service load of the power supply equipment in different groups of the network.
  • the energy consumption is sent to the client, so that the client can display the energy consumption of the unit service load of the power supply device in different groups, thereby realizing the comparison of energy consumption of different devices, so that the user can select a relatively low energy consumption when networking.
  • Equipment to achieve the purpose of energy saving and emission reduction.
  • FIG. 1 is a flowchart of a method for acquiring network energy saving capability on the server side according to Embodiment 1 of the present invention
  • FIG. 2 is a flowchart of a method for acquiring network energy saving capability by a client side according to Embodiment 1 of the present invention
  • FIG. 3 is a flowchart of Embodiment 1 of the present invention
  • the client displays the network energy saving effect diagram
  • FIG. 4 is a flowchart of a method for acquiring energy saving capability of a device on a server side according to Embodiment 1 of the present invention
  • FIG. 5 is a flowchart of a method for acquiring energy saving capability of a device on a client side according to Embodiment 2 of the present invention
  • FIG. 6 is a flowchart of Embodiment 3 of the present invention
  • FIG. 7 is a block diagram showing a composition of a server in Embodiment 4 of the present invention
  • Embodiment 8 is a block diagram showing the composition of another server in Embodiment 4 of the present invention.
  • Embodiment 4 of the present invention is a block diagram showing the composition of another server in Embodiment 4 of the present invention.
  • FIG. 10 is a block diagram of a system for obtaining network energy saving capability according to Embodiment 4 of the present invention
  • FIG. 11 is a block diagram showing a composition of a server according to Embodiment 5 of the present invention.
  • FIG. 12 is a block diagram showing the composition of another server in Embodiment 5 of the present invention.
  • Figure 13 is a block diagram showing the composition of another server in Embodiment 5 of the present invention.
  • FIG. 14 is a block diagram showing the composition of another server in Embodiment 5 of the present invention.
  • FIG. 15 is a block diagram of a system composition for acquiring energy saving capability of a device according to Embodiment 5 of the present invention. detailed description
  • An embodiment of the present invention provides a method for obtaining a network energy saving capability, where the method is a server side method, as shown in FIG. 1 , including:
  • the acquiring the network in the first time according to the average value of the energy consumption per unit service load in the first time and the current actual network load in the first time period according to the network does not start the energy saving function.
  • the total energy consumption of network theory The obtaining the network in the first time according to the average value of the energy consumption per unit service load in the first time and the current actual network load in the first time period according to the network when the energy saving function is not activated.
  • the total network energy consumption can be calculated by the following methods, including:
  • the unit service load energy consumption in the first time is obtained when the network does not start the energy saving function.
  • the average value of the energy consumption of the service load can use the following methods, including:
  • the network may not start the energy saving function when the network is running.
  • the total network energy consumption consumed when the energy saving function is not activated is stored as the historical network energy consumption value in the network management.
  • the corresponding total amount of network traffic load is stored as a historical network traffic load in the performance module of the network management system; when it is required to use the stored historical network energy consumption total value and the network
  • the historical network energy consumption value of the network in the first time is not obtained from the database of the network management system, and is obtained from the performance module of the network management system.
  • the total amount of energy consumption can also be stored in a storage device other than the database of the network management system.
  • the embodiment of the present invention does not limit this, and when the network does not start the energy saving function, When the total amount of network energy consumption is stored in a storage device other than the database of the network management system, the historical network that can be obtained in the first time when the network does not start the energy saving function can be obtained from the corresponding storage device.
  • the total value of the network traffic load corresponding to the network energy consumption when the energy saving function is not activated may also be stored in a storage device other than the performance module of the network management system, which is not Restricting, when the energy saving function is not activated, the total network traffic load corresponding to the network energy consumption is stored in a storage device other than the performance module of the network management system, and may be from the corresponding storage device. Obtaining a total amount of network service load corresponding to the network in the first time when the network does not start the energy saving function.
  • the current actual network load of the network in the first time period may be obtained from the performance module of the network management system, but the embodiment of the present invention does not limit the When the current actual network load total is stored in other devices or modules for a period of time, it can be obtained from the corresponding device or module.
  • the calculated total theoretical energy consumption of the network is based on the average energy consumption per unit service load in the first time and the current actual network load in the first time according to the network when the network does not start the energy saving function. The total amount is calculated and obtained, and an estimated total network theoretical energy consumption is obtained.
  • THP which can be calculated using Equation 1, which includes:
  • Pq is the energy consumption of the first site in the first time period when the network does not start the energy saving function
  • the energy consumption of the qth site in the first time is when the network does not start the energy saving function.
  • the total amount of network traffic load, L3 ⁇ 4 is the current actual network load total of the network in the first time after the network starts the energy-saving function.
  • the actual energy consumption of the network in the first time is obtained according to the information of each power supply device in the network and the energy consumption data of each power supply device after the network starts the energy saving function, and may be used.
  • the method includes:
  • Obtaining information of the power supply device in the network may include: a type of the power supply device, a number of devices of different types of power supply devices, a quantity of the battery, and the like;
  • the power consumption data of the power supply device may include: a power supply time of the power supply device, a power supply amount of the power supply device per unit time, a remaining battery power, and the like.
  • the total power consumption of the single site within the cycle is calculated according to the following formula, that is, the total actual energy consumption (TPS) of the single site within the cycle.
  • TPS total actual energy consumption
  • TEm is the power supply per unit time of the mth i-type power supply device
  • TTm is the power supply time of the mth i-type power supply device
  • REn is the remaining battery capacity of the nth battery
  • RPEn is the nth battery last
  • n is the number of batteries in the network
  • X is the number of types of power supply devices in the network
  • y is the number of devices of different types of power supply devices.
  • the actual network energy consumption (TPN) of the network in the first time is calculated according to the following formula 3, and formula 3 is:
  • TPN ⁇ TPS ⁇ (Equation 3) Where q is the total number of sites in the network, and TPSq is the total actual energy consumption of the qth site in the network.
  • the total network theoretical energy consumption value, the total network energy consumption value, and the current actual network load total of the network in the first time send the total network theoretical energy consumption value, the total network energy consumption value, and the current actual network load total of the network in the first time to the client, so that the client is configured according to the client.
  • the total network theoretical energy consumption value, the actual network energy consumption total value display, and the current actual network load total of the network in the first time period show the actual energy consumption saved by the network.
  • the steps 101 and 102 do not limit the execution sequence.
  • the step 102 is placed after the step 101.
  • the steps may also be performed.
  • 102 is placed in the first step of the execution of the method, and step 101 is placed in the second step of the method, which is not limited by the present invention.
  • the total network theoretical energy consumption value in the first time when the network does not start the energy saving function can be calculated and acquired, and the network starts the energy saving function in the first time.
  • the total actual energy consumption of the network, and the total theoretical energy consumption of the network, the total actual energy consumption of the network, and the current actual network load of the network in the first time are sent to the client, so that the client
  • the actual energy consumption of the network can be displayed according to the total theoretical energy consumption of the network, the total actual energy consumption of the network, and the current actual network load of the network in the first time, thereby implementing the network.
  • the energy savings saved before and after energy saving optimization show that users can measure the energy saving and emission reduction of the network.
  • the embodiment of the present invention further provides a method for obtaining energy saving capability of a network, where the method is a method of a client, as shown in FIG. 2, the method includes:
  • the total theoretical energy consumption of the network is a total network theoretical energy consumption value in the first time when the network does not start the energy saving function, and the total actual energy consumption of the network is after the network starts the energy saving function.
  • the total actual energy consumption of the network in the first time is a total network theoretical energy consumption value in the first time when the network does not start the energy saving function, and the total actual energy consumption of the network is after the network starts the energy saving function. The total actual energy consumption of the network in the first time.
  • the actual energy savings shown can include:
  • the total energy consumption of the network is required to display the energy saved by the network
  • the total theoretical energy consumption of the network is compared with the total energy consumption of the network, and the actual energy saving energy of the network is obtained.
  • the actual energy-saving energy consumption display of the network or
  • the total network theoretical energy consumption value and the total network energy consumption value are respectively divided by the current actual network load of the network, and the network is obtained.
  • the total theoretical energy consumption of the network and the total actual energy consumption of the network are respectively divided by the current actual network load of the network.
  • the network theory unit business load energy consumption average value and the network actual unit service load energy consumption average value compare the network theoretical unit business load energy consumption average value with the network actual unit business load energy consumption average value, get the network unit business load actual energy consumption, will The network unit service load actually saves energy consumption display.
  • the actual network savings are calculated.
  • the energy consumption and the actual energy consumption saved by the network are not limited to the four methods described above.
  • the user can according to his own needs, according to the total theoretical energy consumption of the network, the total energy consumption of the network, and The current actual network load in the first time period of the network displays the actual energy saved by the network.
  • the client when the user needs to display the actual energy saved by the network for one day according to the time, the client will The total theoretical energy consumption of the network received, the network real The total energy consumption and the current actual network load in the first time, the actual energy consumption saved at each moment is summarized, and the actual energy consumption saved at each moment after the summary is passed through the curve diagram. Display, as shown in Figure 3.
  • the time unit may be, for example, one hour, or may be in units of days or days or weeks, for example, three days or one week, or the like.
  • the embodiment of the present invention is not limited, and may be specifically selected when implementing the embodiment of the present invention, at different times, whether by day or day or week, or by month or Quarter or year, which is the cumulative amount calculated in hours.
  • the client after receiving the total network theoretical energy consumption value, the total network energy consumption value, and the current actual network load total amount in the first time, the client may follow the customer's demand.
  • the total theoretical energy consumption of the network, the total actual energy consumption of the network, and the current actual network load in the first time of the network are processed accordingly, and the actual energy consumption of the network in the form of customer demand is displayed. Users can learn the energy saved before and after the energy-saving optimization of the network from different angles, so that users can have a comprehensive grasp of the energy-saving and emission reduction of the network.
  • An embodiment of the present invention provides a method for acquiring energy-saving capability of a device, where the method is a server-side method, as shown in FIG. 4, the method includes:
  • the information about the power supply device may include: vendor information of the power supply device, version information of the power supply device, type of the power supply device, number of devices of different types of power supply devices, number of batteries, and the like.
  • the power supply equipment should have roughly equal traffic load characteristics in terms of daily service load intensity, such as business centers from different cities, regions from the same city but with equal population density, and the like.
  • the current network power supply device information needs to be obtained, and the information about the power supply device can be obtained by using any one of the methods in the prior art. .
  • the energy consumption data of each power supply device in the network needs to be collected, and the energy consumption data may be collected by any one of the prior art, which is not limited by the embodiment of the present invention; for example, The period of the collection of the energy consumption data is set, and the energy consumption data of the power supply devices of the entire network is collected by the period; the collection is a periodic collection, and the period of the collection can be set by the user, the embodiment of the present invention There is no limit to this.
  • the power consumption data of the power supply device may include: a power supply time of the power supply device, a power supply amount of the power supply device per unit time, and a remaining battery power.
  • the calculating the energy consumption per unit service load of the power supply equipment in different groups according to the current actual network traffic load of the network and the energy consumption data of each power supply device in the network may use the following method, where Includes:
  • Equation 4 Adding, by the group, the service load energy consumption of each power supply device in the same group, respectively, to obtain the total energy consumption of the service load of the power supply device in different groups; wherein, each of the same group The service load energy consumption of the power supply equipment is added, and the total energy consumption of the service load of the power supply equipment in different groups is obtained, which can be obtained by using Equation 4, and the formula 4 includes:
  • the total service load energy consumption of the power supply equipment in the different groups is divided by the total service load of the power supply equipment of the corresponding group, and the energy consumption per unit service load of the power supply equipment in different groups is obtained.
  • the embodiment of the present invention compared with the prior art, it is possible to calculate and obtain power supply in different groups of the network.
  • the unit service load energy consumption of the device, and the energy consumption per unit service load of the power supply device in the different groups of the network is sent to the client, so that the client can consume the energy consumption of the unit service load of the power supply device in different groups, according to the user
  • the demand shows that the comparison of energy consumption of different devices is realized, so that users can select equipment with relatively low energy consumption when networking, and achieve the purpose of energy saving and emission reduction.
  • the embodiment of the present invention further provides a method for acquiring energy saving capability of a device, where the method is a client side method, as shown in FIG. 5, the method includes:
  • the displaying the energy consumption per unit service load of the power supply device in the different group may include:
  • the actual energy consumption of the power supply device in the different groupings may be displayed according to the requirements of the customer, and may not be limited to the two modes described above, and the user may also The embodiment of the present invention does not limit the actual power consumption of the power supply device in the different groups.
  • the client may display the energy consumption per unit service load of the power supply equipment in the different groups according to the requirements of the user, so that the user is different.
  • the angle is known to the energy consumption of different devices, so that users can select devices with relatively low energy consumption when networking, and achieve the goal of energy saving and emission reduction.
  • Example 3 An embodiment of the present invention provides a method for obtaining energy saving capability of a device.
  • the method is a method on the server side. As shown in FIG. 6, the method includes:
  • the energy consumption weighting value of the power supply device during operation is an inherent attribute of the device, and may be collected by the network management system; and the energy consumption weighting value of the power supply device during operation may be according to the power supply device
  • the geographical location is different, set to different energy weighting values, because, for example, when a power supply device is set in the mountains, but the user on the other side of the mountain needs to receive the signal sent by the device, it is necessary to increase the power supply device.
  • the transmission power, the transmission power of the power supply equipment is increased, and the power consumption of the power supply equipment is increased. Therefore, in order to balance the energy consumption of the power supply equipment in different location areas, the energy consumption weighting value of the power supply equipment during operation is set to one. Larger value.
  • the energy consumption data of each power supply device of the entire network needs to be collected, and the energy consumption data may be collected by any one of the prior art, which is not limited by the embodiment of the present invention; for example, Set the cycle of collecting energy consumption data, and collect the energy consumption data of each power supply device of the whole network.
  • the set is a periodic set, and the period of the set can be set by the user. This embodiment of the present invention does not limit this.
  • the power consumption data of the power supply device may include: a power supply time of the power supply device, a power supply amount of the power supply device per unit time, and a remaining battery power.
  • the weighting value according to the energy consumption of each power supply device in the network, the current actual network traffic load of the network, and the energy consumption data of each power supply device in the network Calculate the energy consumption per unit of service load of power supply equipment in different groups, including:
  • is the energy consumption of the mth device of the device of the nth class in the group
  • n is a group
  • m is the number of devices of different types of power supply devices.
  • the energy consumption of the service load of each power supply device in each of the packets is separately added to obtain the total energy consumption of the service load of the power supply devices in different groups; wherein, the devices in different packets can be obtained by using Equation 6
  • the total energy consumption of the business load, the formula 6 is: (Formula 6)
  • ND is the total number of devices of the nth type in the statistical area
  • X is the total number of devices of the nth class in the group
  • PU[n] [m] is the energy consumption of the mth device of the nth class device in a packet.
  • the service load energy consumption of each power supply device is added to obtain the total energy consumption of the service load of the devices in different groups.
  • the unit service load energy consumption of the power supply equipment in different groups of the network can be calculated and obtained, and the energy consumption per unit service load of the power supply equipment in different groups of the network is sent to the customer.
  • the client can display the energy consumption of the unit service load of the power supply device in different groups according to the user's demand, and realize the comparison of the energy consumption of different devices, so that the user can select the device with relatively low energy consumption when networking. , to achieve the purpose of energy saving and emission reduction.
  • the energy consumption weight value of each power supply device during operation is taken into account, so that the calculated energy consumption per unit service load in the different group is more calculated. Accurate, making users more accurate comparison of energy saving capabilities of different devices.
  • the embodiment of the present invention provides a server, as shown in FIG. 7, including: a first obtaining unit 61, a second obtaining unit 62, and a first sending unit 63.
  • the first obtaining unit 61 is configured to acquire, according to the average value of the energy consumption per unit service load in the first time and the current actual network load in the first time period, when the network does not start the energy saving function, The total theoretical energy consumption of the network in the first time;
  • the second obtaining unit 62 is configured to obtain, according to the information of each power supply device in the network, the energy consumption data of each power supply device after the network starts the energy saving function, and obtain the actual network of the network in the first time. Total energy consumption;
  • a first sending unit 63 configured to use the total network theoretical energy consumption value obtained by the first acquiring unit 61, the network actual energy consumption total value obtained by the second acquiring unit, and the network in the The current actual network load total amount in the first time is sent to the client, so that the client displays according to the network theoretical total energy consumption value, the network actual energy consumption total value, and the network is in the first The current actual network load total in the time, showing the actual energy saved by the network.
  • the first acquiring unit 61 includes: a first acquiring module 61 1 and a first calculating module 612.
  • the first obtaining module 611 is configured to: when the network does not start the energy saving function, according to the total historical network energy consumption value and the historical network traffic load total amount in the first time when the network does not start the energy saving function The average value of the energy consumption of the unit service load in a period of time; wherein the first obtaining module 611 is configured to obtain, from the historical database, the historical network energy consumption value and the network in the first time when the network does not start the energy saving function. Corresponding historical network traffic load total; the historical network will be The total energy consumption is divided by the total amount of historical network traffic load, and the average energy consumption per unit service load is obtained.
  • the first calculation module 612 is configured to calculate, according to the average unit load energy consumption value acquired by the first obtaining module 611, and the current actual network load total amount of the network in the first time, to obtain the The total network theoretical energy consumption of the network during the first time.
  • the second obtaining unit 62 includes: a second acquiring module 621, a collecting module 622, and a second calculating module 623.
  • the second obtaining module 621 is configured to acquire information about the power supply device in the network.
  • the collecting module 622 is configured to collect energy consumption data of each power supply device in the network in the first time after the network starts the energy saving function;
  • a second calculation module 623 configured to calculate, according to the information about the power supply device in the network acquired by the second acquisition module 621, and the energy consumption data of each power supply device in the network that the collection module 622 collects Obtaining a total network actual energy consumption value of the network in the first time.
  • the embodiment of the present invention further provides a system for acquiring network energy saving capability.
  • the system includes: a server 71 and a client 72.
  • the server 71 is configured to acquire, according to the average value of the unit service load energy consumption in the first time and the current actual network load amount of the network in the first time, according to the network not starting the energy saving function, acquiring the network in the first
  • the total network energy consumption value in a period of time obtaining the network in the first time according to the information of each power supply device in the network and the energy consumption data of each power supply device after the network starts the energy saving function
  • the total actual energy consumption of the network; the total theoretical energy consumption of the network, the total actual energy consumption of the network, and the current actual network load total of the network in the first time are sent to the client 72, So that the client 72 displays the actual network load according to the network theoretical total energy consumption value, the network actual energy consumption total value, and the current actual network load total of the network in the first time.
  • the client 72 is configured to receive a total network theoretical energy consumption value, a total network actual energy consumption value, and a current actual network load total amount of the network in the first time, where the total network theoretical energy consumption value is not in the network.
  • the total theoretical energy consumption of the network in the first time when the energy-saving function is activated, and the total actual energy consumption of the network is the total actual energy consumption of the network in the first time after the network starts the energy-saving function; Calculating the actual energy saved by the network according to the total theoretical energy consumption of the network, the total energy consumption of the network, and the current actual network load in the first time, and the actual energy saved by the network. Consumption display.
  • the total network theoretical energy consumption value in the first time when the network does not start the energy saving function, and the total network actual energy consumption value in the first time after the network starts the energy saving function are calculated and obtained, And transmitting the total theoretical energy consumption of the network, the total actual energy consumption of the network, and the current actual network load of the network in the first time to the client, so that the client can consume energy according to the network theory.
  • the value, the total actual energy consumption of the network, and the current actual network load total of the network in the first time display the actual energy consumption saved by the network, thereby realizing the energy consumption display saved before and after the energy saving optimization of the network. , enabling users to have a measure of energy savings in the network.
  • the client may follow the customer's demand.
  • the total theoretical energy consumption of the network, the total actual energy consumption of the network, and the current actual network load total of the network in the first time are processed accordingly, and the actual energy consumption of the network that meets the customer demand form is displayed. It enables users to learn the energy saved before and after the energy-saving optimization of the network from different angles, so that users can have a comprehensive grasp of the energy-saving and emission reduction of the network.
  • the embodiment of the present invention provides a server.
  • the server includes: a grouping unit 81, a first calculating unit 82, and a second sending unit 83.
  • the grouping unit 81 is configured to group the power supply devices in the network according to the power supply device information.
  • the information of the power supply device may include: vendor information of the power supply device, version information of the power supply device, type of the power supply device, and different types of power supply. The number of devices, the number of batteries, etc.
  • the power supply equipment should have roughly equal traffic load characteristics in terms of daily service load intensity, such as business centers from different cities, regions from the same city but with equal population density, and the like.
  • the power supply device information of the entire network needs to be obtained, and the information about the power supply device can be obtained by using any one of the prior art methods. This embodiment of the present invention does not limit this.
  • the first calculating unit 82 is configured to calculate, according to the current actual network traffic load of the network and the energy consumption data of each power supply device in the network, the energy consumption per unit service load of the power supply device in different groups;
  • the energy consumption data of each power supply device of the entire network needs to be collected, and the energy consumption data may be collected by any one of the prior art, which is not limited by the embodiment of the present invention; for example, the data set may be set.
  • the power consumption data of the power supply device may include: a power supply time of the power supply device, a power supply amount of the power supply device per unit time, and a remaining battery power.
  • the second sending unit 83 is configured to send the unit service load energy consumption of the power supply device in the different group acquired by the first calculating unit 82 to the client, so that the client can enable the power supply device in different groups Consumption display.
  • the first calculating unit 82 includes: a first obtaining module 821, a first calculating module 822, a second calculating module 823, and a third calculating module 824.
  • the first obtaining module 821 is configured to obtain energy consumption data of the corresponding power supply device in different groups according to the power device information collection;
  • a first calculation module 822 configured to calculate, according to the energy consumption data of the power supply device acquired by the first acquisition module 821, a service load energy consumption of each power supply device in the different group;
  • the second calculation module 823 is configured to add the service load energy consumption of each power supply device in the same group to obtain the total energy consumption of the service load of the power supply device in different groups in a group.
  • the third calculation module 824 And dividing the total energy consumption of the power load of the power supply device in the different group calculated by the second calculation module 823 by the total traffic load of the power supply device of the corresponding group, and obtaining the service load energy of the unit power supply device in different groups Consumption.
  • the server further includes: a fourth obtaining unit 84 and a second calculating unit 85.
  • the fourth obtaining unit 84 is configured to obtain an energy consumption weighting value when each power supply device in the network is running;
  • a second calculating unit 85 configured to: according to the energy consumption weighting value of each power supply device in the network acquired by the fourth obtaining unit 84, the current actual network traffic load of the network, and the collection unit set The energy consumption data of each power supply device in the network calculates the energy consumption per unit service load of the power supply device in different groups.
  • the second calculating unit 85 includes: a second acquiring module 851, a fourth calculating module 852, a fifth calculating module 853, and a sixth calculating module 854.
  • the second obtaining module 851 is configured to obtain energy consumption data of the corresponding power supply device in different groups according to the power supply device information, and a power consumption weighting value when the power supply device is in operation;
  • the fourth calculation module 852 is configured to calculate a service load of each power supply device in the different group according to the energy consumption data of the power supply device acquired by the second acquisition module 851 and the energy consumption weight value of the power supply device during operation Energy consumption
  • the fifth calculation module 853 is configured to separately add the service load energy consumption of each power supply device in each group calculated by the fourth calculation module in groups, to obtain the service load of the power supply device in different groups. Total energy consumption;
  • the sixth calculating module 854 is configured to divide the total energy consumption of the power load of the power supply device in the different packets calculated by the fifth computing module 853 by the total traffic load of the power supply device of the corresponding group, and obtain the unit of the power supply device in different groups. Business load energy consumption.
  • the embodiment of the present invention further provides a system for acquiring energy saving capability of a device.
  • the system includes: a server 91 and a client 92.
  • the server 91 is configured to group the power supply devices in the network according to the power supply device information; calculate the power supply devices in different groups according to the current actual network traffic load of the network and the energy consumption data of each power supply device in the network. Energy consumption per unit service load; the energy consumption per unit service load of the power supply equipment in the different groups is sent to the client 92, so that the client 92 displays the energy consumption of the power supply equipment in different groups;
  • a client 92 configured to receive energy consumption per unit service load of the power supply device in different groups, and The energy consumption per unit service load of the power supply equipment in different groups is displayed.
  • the unit service load energy consumption of the power supply equipment in different groups of the network can be calculated and obtained, and the energy consumption per unit service load of the power supply equipment in different groups of the network is sent to the client, so that the client can
  • the unit service load energy consumption of the power supply equipment in the group is displayed according to the user's demand, and the energy consumption of different equipments is compared, so that the user can select the equipment with relatively low energy consumption when networking, and achieve the purpose of energy saving and emission reduction.
  • the client may display the energy consumption per unit service load of the power supply device in the different group according to the user's demand, so that the user The energy consumption of different devices is known from different angles, so that users can select devices with relatively low energy consumption when networking, and achieve the goal of energy saving and emission reduction.
  • the energy consumption weight value of each power supply device during operation is taken into account, so that the calculated energy consumption per unit service load in the different group is calculated. More precise, allowing users to compare the energy saving capabilities of different devices more accurately.
  • the server described in the embodiment 4 and the server described in the embodiment 5 may be separate devices, or may be integrated into one device, which is not limited by the embodiment of the present invention;
  • the client described in the embodiment 4 and the client described in the embodiment 5 can be divided into independent devices or integrated into one device, which is not limited in the embodiment of the present invention.
  • the present invention can be implemented by means of software plus necessary general hardware, and of course, by hardware, but in many cases, the former is a better implementation. .
  • the technical solution of the present invention which is essential or contributes to the prior art, may be embodied in the form of a software product stored in a readable storage medium, such as a floppy disk of a computer. , hard disk or CD, etc., including a number of instructions to make a computer device (can be a personal computer, a server, Or a network device or the like) performs the methods described in various embodiments of the present invention.

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  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
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Description

获取网络及设备节能能力的方法、 设备及系统 本申请要求于 201 0 年 1 1 月 1 1 日提交中国知识产权局、 申请号为 201010541418. 5 , 发明名称为 "获取网络及设备节能能力的方法、 设备及系 统" 的中国专利申请的优先权, 在此并入其全部内容作为参考。 技术领域
本发明涉及通信领域, 尤其涉及一种获取网络及设备节能能力的方法、 设备及系统。 背景技术
在全球气候变暖的大背景下, 节能减排已经成为世界各国政府普遍重视 的问题。 为达到节能减排的目的, 目前各网络运营商普遍釆用能耗管理技术 实现节能减排, 该能耗管理技术包括: 网络管理系统通过能耗管理节点向网 络设备下发能耗调整策略, 使得网络设备能够根据策略调整实际能耗运转状 态, 从而实现全网能耗的优化; 同时该网络中的能耗管理节点, 通过嵌入网 络设备本身的能耗监控装置收集设备的实时能耗, 并将该收集的实时能耗反 馈给位于顶层的网络管理系统进行显示。
但是, 由于在网络运行时, 网络管理系统通过能耗管理节点向网络设备 下发能耗调整策略, 使得上述节能减排的技术方案只能收集到网络启动节能 优化后的实时能耗, 而不能获得网络没有启动节能优化时的全网能耗, 便无 法获知釆用上述全网能耗优化后的网络, 与没有进行全网能耗优化时的网络 相比, 究竟节约了多少能耗; 并且上述节能减排的技术方案只能收集到全网 能耗的优化后的实时能耗, 不能针对不同厂商的设备, 获取网络中对应设备 的能耗, 也便无法进行不同厂商设备的能耗的比较, 因此不能在组网时选取 能耗相对较低的设备, 达到节能减排的目的。 发明内容
本发明的实施例提供一种获取网络及设备节能能力的方法、 设备及系统, 能够实现网络实施能耗优化前后的节能效果评估展示; 并且能够获取不同厂 商设备的单位业务负载能耗, 实现不同设备能耗的比较。
为达到上述目的, 本发明的实施例釆用如下技术方案:
一种获取网络节能能力的方法, 包括:
根据网络没有启动节能功能时在第一时间内单位业务负载能耗均值和所 述网络在所述第一时间内的当前实际网络负载总量, 获取所述网络在所述第 一时间内的网络理论能耗总值;
根据所述网络中每个供电设备的信息和所述网络启动节能功能后每个供 电设备的能耗数据, 获取所述网络在所述第一时间内的网络实际能耗总值; 将所述网络理论能耗总值、 所述网络实际能耗总值以及所述网络在所述 第一时间内的当前实际网络负载总量发送给客户端, 以使得所述客户端根据 所述网络理论能耗总值、 所述网络实际能耗总值显示以及所述网络在所述第 一时间内的当前实际网络负载总量, 显示所述网络实际节约的能耗。
一种获取设备节能能力的方法, 包括:
根据供电设备信息将网络中的供电设备进行分组;
根据所述网络当前的实际网络业务负载量和所述网络中每个供电设备的 能耗数据, 计算不同分组中供电设备的单位业务负载能耗;
将所述不同分组中供电设备的单位业务负载能耗发送给客户端, 以使得 所述客户端将不同分组中供电设备的能耗显示。
一种服务器, 包括:
第一获取单元, 用于根据网络没有启动节能功能时在第一时间内单位业 务负载能耗均值和所述网络在所述第一时间内的当前实际网络负载总量, 获 取所述网络在所述第一时间内的网络理论能耗总值;
第二获取单元, 用于根据所述网络中每个供电设备的信息和所述网络启 动节能功能后每个供电设备的能耗数据, 获取所述网络在所述第一时间内的 网络实际能耗总值;
第一发送单元, 用于将所述网络理论能耗总值、 所述网络实际能耗总值 以及所述网络在所述第一时间内的当前实际网络负载总量发送给客户端, 以 使得所述客户端根据所述网络理论能耗总值、 所述网络实际能耗总值显示以 及所述网络在所述第一时间内的当前实际网络负载总量, 显示所述网络实际 节约的能耗。
一种服务器, 包括:
分组单元, 用于根据供电设备信息将网络中的供电设备进行分组; 第一计算单元, 用于根据所述网络当前的实际网络业务负载量和所述网 络中每个供电设备的能耗数据, 计算不同分组中供电设备的单位业务负载能 耗;
第二发送单元, 用于将所述第一计算单元获取的所述不同分组中供电设 备的单位业务负载能耗发送给客户端, 以使得所述客户端将不同分组中供电 设备的能耗显示。
一种获取网络节能能力的系统, 包括:
服务器, 用于根据网络没有启动节能功能时在第一时间内单位业务负载 能耗均值和所述网络在所述第一时间内的当前实际网络负载总量, 获取所述 网络在所述第一时间内的网络理论能耗总值; 根据所述网络中每个供电设备 的信息和所述网络启动节能功能后每个供电设备的能耗数据, 获取所述网络 在所述第一时间内的网络实际能耗总值; 将所述网络理论能耗总值、 所述网 络实际能耗总值以及所述网络在所述第一时间内的当前实际网络负载总量发 送给客户端, 以使得所述客户端根据所述网络理论能耗总值、 所述网络实际 能耗总值显示以及所述网络在所述第一时间内的当前实际网络负载总量, 显 示所述网络实际节约的能耗;
客户端, 用于接收网络理论能耗总值、 网络实际能耗总值以及网络在所 述第一时间内的当前实际网络负载总量, 所述网络理论能耗总值为所述网络 没有启动节能功能时在第一时间内的网络理论能耗总值, 所述网络实际能耗 总值为所述网络启动节能功能后在所述第一时间内的网络实际能耗总值; 根 据所述网络理论能耗总值、 网络实际能耗总值以及网络在所述第一时间内的 当前实际网络负载总量, 计算网络实际节约的能耗, 并将所述网络实际节约 的能耗显示。
一种获取设备节能能力的系统, 包括:
服务器, 用于根据供电设备信息将网络中的供电设备进行分组; 根据所 述网络当前的实际网络业务负载量和所述网络中每个供电设备的能耗数据, 计算不同分组中供电设备的单位业务负载能耗; 将所述不同分组中供电设备 的单位业务负载能耗发送给客户端, 以使得所述客户端将不同分组中供电设 备的能耗显示;
客户端, 用于接收不同分组中供电设备的单位业务负载能耗, 并将所述 不同分组中供电设备的单位业务负载能耗显示。
本发明实施例提供的技术方案, 与现有技术相比, 能够计算并获取网络 没有启动节能功能时在第一时间内的网络理论能耗总值, 以及所述网络启动 节能功能后在该第一时间内的网络实际能耗总值, 并将该网络理论能耗总值、 网络实际能耗总值以及该网络在所述第一时间内的当前实际网络负载总量发 送给客户端, 以使客户端能够根据该网络理论能耗总值、 网络实际能耗总值 以及该网络在所述第一时间内的当前实际网络负载总量, 显示所述网络实际 节约的能耗, 从而实现了将网络进行节能优化前后节约的能耗显示, 使用户 能够对网络的节能减排有一个量的度量。
并且, 本发明实施例提供的另一个技术方案, 与现有技术相比, 能够计 算并获取网络不同分组中供电设备的单位业务负载能耗, 并将该网络不同分 组中供电设备的单位业务负载能耗发送给客户端, 以使客户端能够将该不同 分组中供电设备的单位业务负载能耗显示, 实现了不同设备能耗的比较, 使 用户在组网时能够选择能耗相对较低的设备, 达到节能减排的目的。 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 1中服务器侧获取网络节能能力的方法流程图; 图 2为本发明实施例 1中客户端侧获取网络节能能力的方法流程图; 图 3为本发明实施例 1中客户端显示网络节能效果图;
图 4为本发明实施例 1中服务器侧获取设备节能能力的方法流程图; 图 5为本发明实施例 2中客户端侧获取设备节能能力的方法流程图; 图 6为本发明实施例 3中服务器侧获取设备节能能力的方法流程图; 图 7为本发明实施例 4中一种服务器的组成框图;
图 8为本发明实施例 4中另一种服务器的组成框图;
图 9为本发明实施例 4中另一种服务器的组成框图;
图 10为本发明实施例 4中获取网络节能能力的系统组成框图; 图 11为本发明实施例 5中一种服务器的组成框图;
图 12为本发明实施例 5中另一种服务器的组成框图;
图 1 3为本发明实施例 5中另一种服务器的组成框图;
图 14为本发明实施例 5中另一种服务器的组成框图;
图 15为本发明实施例 5中获取设备节能能力的系统组成框图。 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。
实施例 1
本发明实施例提供一种获取网络节能能力的方法, 该方法为服务器侧的 方法, 如图 1所示, 包括:
101、 根据网络没有启动节能功能时在第一时间内单位业务负载能耗均值 和所述网络在所述第一时间内的当前实际网络负载总量, 获取所述网络在所 述第一时间内的网络理论能耗总值。 其中, 根据网络没有启动节能功能时在第一时间内单位业务负载能耗均 值和所述网络在所述第一时间内的当前实际网络负载总量, 获取所述网络在 所述第一时间内的网络理论能耗总值可以釆用以下方法, 该方法包括:
根据所述网络没有启动节能功能时在所述第一时间内的历史网络能耗总 值和历史网络业务负载总量, 获取所述网络没有启动节能功能时在第一时间 内单位业务负载能耗均值;
将所述单位业务负载能耗均值与所述网络在所述第一时间内的当前实际 网络负载总量进行运算, 得到所述网络在所述第一时间内的网络理论能耗总 值。
其中, 所述根据所述网络没有启动节能功能时在所述第一时间内的历史 网络能耗总值和历史网络业务负载总量, 获取所述网络没有启动节能功能时 在第一时间内单位业务负载能耗均值可以釆用以下方法, 该方法包括:
从历史数据库中获取所述网络没有启动节能功能时在第一时间内的历史 网络能耗总值和所述网络对应的历史网络业务负载总量;
将所述历史网络能耗总值除以所述历史网络业务负载总量, 得到所述单 位业务负载能耗均值。
其中, 这里需要说明的是, 网络在运行时可以不启动节能功能, 当网络 启动了节能功能之后, 没有启动节能功能时消耗的网络能耗总值作为历史网 络能耗总值被存储在网络管理系统的数据库中, 并且将其对应的网络业务负 载总量作为历史网络业务负载总量被存储在网络管理系统的性能模块中; 当 需要使用上述已存储的历史网络能耗总值和与该网络能耗总值对应的网络业 务负载总量时, 从所述网络管理系统的数据库中获取网络没有启动节能功能 在第一时间内的历史网络能耗总值, 并从网络管理系统的性能模块中取所述 网络没有启动节能功能时在所述第一时间内所述网络对应的网络业务负载总 量; 但是本发明实施例对此并不进行限制, 所述网络没有启动节能功能时获 取的网络能耗总量也可以被存储在除所述网络管理系统的数据库以外的存储 设备中, 本发明实施例对此不进行限制, 当所述网络没有启动节能功能时获 取的网络能耗总量被存储在除所述网络管理系统的数据库以外的存储设备中 时, 可以从相应的存储设备中获取网络没有启动节能功能时在所述第一时间 内的历史网络能耗总值; 所述没有启动节能功能时所述网络能耗对应的网络 业务负载总量, 也可以存储在除所述网络管理系统的性能模块以外的存储设 备中, 本发明实施例对此不进行限制, 当将所述没有启动节能功能时所述网 络能耗对应的网络业务负载总量, 存储在除所述网络管理系统的性能模块以 外的存储设备中时, 可以从相应的存储设备中获取所述网络没有启动节能功 能时所述第一时间内所述网络对应的网络业务负载总量。
其中, 所述网络在所述第一时间内的当前实际网络负载总量可以从网络 管理系统的性能模块中获取, 但本发明实施例对此并不进行限制, 当所述网 络在所述第一时间内的当前实际网络负载总量存储在其他设备或模块中时, 可以从相应的设备或模块中获取。
这里需要说明的是, 所述计算得到的网络理论能耗总值为根据网络没有 启动节能功能时在第一时间内单位业务负载能耗均值与网络在所述第一时间 内的当前实际网络负载总量进行运算获得, 得到的是一个估计的网络理论能 耗总值。
其中, 所述将所述单位业务负载能耗均值与网络在所述第一时间内的当 前实际网络负载总量进行运算, 得到所述网络在所述第一时间内的网络理论 能耗总值(THP ), 可以釆用公式 1计算获得, 该公式 1包括:
THP =∑(^-*LNq) (公式 1 )
q=o LHq
其中, Pq为网络没有启动节能功能时在所述第一时间内第(1个站点的能 耗, LHq为网络没有启动节能功能时在所述第一时间内第 q个站点的能耗对应 的网络业务负载总量, L¾为网络启动节能功能后网络在所述第一时间内的当 前实际网络负载总量。
102、 根据所述网络中每个供电设备的信息和所述网络启动节能功能后每 个供电设备的能耗数据, 获取所述网络在所述第一时间内的网络实际能耗总 值。
其中, 根据所述网络中每个供电设备的信息和所述网络启动节能功能后 每个供电设备的能耗数据, 获取所述网络在所述第一时间内的网络实际能耗, 可以釆用以下方法, 该方法包括:
获取所述网络中供电设备的信息; 其中, 所述供电设备的信息可以包括: 供电设备的类型、 不同类型供电设备各自的设备数量、 蓄电池数量等;
釆集所述网络启动节能功能后在所述第一时间内所述网络中每个供电设 备的能耗数据; 该釆集为周期性的釆集, 釆集的周期可以由用户自己设定, 本发明实施例对此不进行限制; 其中, 所述供电设备的能耗数据可以包括: 供电设备的供电时间、 单位时间内供电设备的供电量、 蓄电池剩余电量等。
根据所述网络中供电设备的信息和所述网络中每个供电设备的能耗数 据, 计算得到所述网络在所述第一时间内的网络实际能耗总值。 其中, 根据 所述网络中供电设备的信息和所述网络中每个供电设备的能耗数据, 计算得 到所述网络在所述第一时间内的网络实际能耗总值, 可以通过以下两个步骤 获得, 具体包括:
第一步, 在每一次的釆集周期之后, 按照下列公式计算出在本周期之内 的单站点总电量, 即单站点在本周期之内的实际能耗总值(TPS ), 该公式如 下公式 2:
TPS = TEm * TTm)) -∑ (REn - RPEn) (公式 2 )
i=0 m=0 n=0
其中, TEm为第 m个 i类型的供电设备的单位时间供电量, TTm为第 m个 i类型的供电设备的供电时间, REn为第 n个蓄电池的剩余电量, RPEn为第 n 个蓄电池上一釆集周期的剩余电量, n为网络中蓄电池的数量, X为网络中供 电设备的类型数, y为不同类型供电设备各自的设备数量。
第二步, 在计算完每个站点的实际能耗总值之后, 根据如下公式 3计算 出所述网络在所述第一时间内的网络实际能耗(TPN ), 公式 3为:
TPN = ^ TPS^ (公式 3 ) 其中, q为网络的站点总数, TPSq为所述网络中第 q个站点的实际能耗 总值。
103、 将所述网络理论能耗总值、 所述网络实际能耗总值以及所述网络在 所述第一时间内的当前实际网络负载总量发送给客户端, 以使得所述客户端 根据所述网络理论能耗总值、 所述网络实际能耗总值显示以及所述网络在所 述第一时间内的当前实际网络负载总量, 显示所述网络实际节约的能耗。
本发明实施例需要说明的是, 步骤 101与步骤 102不限制执行顺序, 本 发明实施例为了描述的方便, 将步骤 102放在步骤 101之后, 在具体实施本 发明实施例时, 也可以将步骤 102放在本方法执行的第一步, 将步骤 101放 在本方法执行的第二步, 本发明对此不进行限制。
本发明实施例中, 与现有技术相比, 能够计算并获取网络没有启动节能 功能时在第一时间内的网络理论能耗总值, 以及所述网络启动节能功能后在 该第一时间内的网络实际能耗总值, 并将该网络理论能耗总值、 网络实际能 耗总值以及该网络在所述第一时间内的当前实际网络负载总量发送给客户 端, 以使客户端能够根据该网络理论能耗总值、 网络实际能耗总值以及该网 络在所述第一时间内的当前实际网络负载总量, 显示所述网络实际节约的能 耗, 从而实现了将网络进行节能优化前后节约的能耗显示, 使用户能够对网 络的节能减排有一个量的度量。
本发明实施例还提供一种获取网络节能能力的方法, 该方法为客户端则 的方法, 如图 2所示, 该方法包括:
201、 接收网络理论能耗总值、 网络实际能耗总值以及网络在所述第一时 间内的当前实际网络负载总量;
其中, 所述网络理论能耗总值为所述网络没有启动节能功能时在第一时 间内的网络理论能耗总值, 所述网络实际能耗总值为所述网络启动节能功能 后在所述第一时间内的网络实际能耗总值。
202、 根据所述网络理论能耗总值、 网络实际能耗总值以及网络在所述第 一时间内的当前实际网络负载总量, 计算网络实际节约的能耗, 并将所述网 络实际节约的能耗显示。
其中, 所述根据所述网络理论能耗总值、 网络实际能耗总值以及网络在 所述第一时间内的当前实际网络负载总量, 计算网络实际节约的能耗, 并将 所述网络实际节约的能耗显示, 可以包括:
当需要按照能耗总值对比显示网络节约的能耗时, 将所述网络理论能耗 总值和网络实际能耗总值直接显示; 或
当需要按照网络实际节约能耗总值显示网络节约的能耗时, 将所述网络 理论能耗总值和所述网络实际能耗总值进行比较, 得到所述网络实际节能能 耗, 将所述网络实际节能能耗显示; 或
当需要按照单位业务负载能耗值对比显示网络节约的能耗时, 将所述网 络理论能耗总值和网络实际能耗总值, 分别除以所述网络当前的实际网络负 载量, 得到网络理论单位业务负载能耗均值和网络实际单位业务负载能耗均 值, 将所述网络理论单位业务负载能耗均值和网络实际单位业务负载能耗均 值显示; 或
当需要按照网络单位业务负载实际节约能耗显示网络节约的能耗时, 将 所述网络理论能耗总值和网络实际能耗总值, 分别除以所述网络当前的实际 网络负载量, 得到网络理论单位业务负载能耗均值和网络实际单位业务负载 能耗均值, 将网络理论单位业务负载能耗均值和网络实际单位业务负载能耗 均值进行比较, 得到网络单位业务负载实际节约能耗, 将所述网络单位业务 负载实际节约能耗显示。
这里需要说明的时, 本发明实施例中, 根据所述网络理论能耗总值、 网 络实际能耗总值以及网络在所述第一时间内的当前实际网络负载总量, 计算 网络实际节约的能耗, 并将所述网络实际节约的能耗显示, 并不局限于以上 描述的四种方式, 用户可以依照自己的需求, 根据所述网络理论能耗总值、 网络实际能耗总值以及网络在所述第一时间内的当前实际网络负载总量, 将 网络实际节约的能耗显示, 例如, 当用户需要按照时刻将一天的网络实际节 约的能耗显示时, 所述客户端将其接收到的所述网络理论能耗总值、 网络实 际能耗总值以及网络在所述第一时间内的当前实际网络负载总量, 对各个时 刻的实际节约的能耗进行汇总, 并将汇总后的各个时刻的实际节约的能耗通 过曲线示意图显示, 如图 3所示。
其中, 本发明实施例需要特别说明的是, 上述所述的一定时间范围内, 可以以时刻单位例如 1个小时, 也可以以日或天或周为单位例如 3天或者 1 周等, 还可以以月或季度或年为单位, 本发明实施例对此不进行限制, 在具 体实施本发明实施例时, 可以具体选择, 不同的时, 不论以日或天或周为单 位, 还是以月或季度或年为单位, 其都是以时刻为单位计算的累积。
本发明实施例中, 客户端在接收到网络理论能耗总值、 网络实际能耗总 值以及网络在所述第一时间内的当前实际网络负载总量后, 可以按照客户的 需求, 对该网络理论能耗总值、 网络实际能耗总值以及网络在所述第一时间 内的当前实际网络负载总量, 进行相应的处理, 将满足客户需求形式的网络 实际节约的能耗显示, 使用户从不同角度获知网络进行节能优化前后节约的 能耗, 使用户能够对网络的节能减排有一个全方位的掌握。
实施例 2
本发明实施例提供一种获取设备节能能力的方法, 该方法为服务器侧的 方法, 口图 4所示, 该方法包括:
301、 根据供电设备信息将网络中的供电设备进行分组。
其中, 所述供电设备的信息可以包括: 供电设备的厂商信息、 供电设备 的版本信息、 供电设备的类型、 不同类型供电设备各自的设备数量、 蓄电池 数量等。 所述供电设备在日常业务负载强度方面应该具备大致等量的业务负 载特性, 例如来自不同城市的商务中心、 来自同城市但是人口密度相等的地 区等等。 在根据供电设备信息将网络中的供电设备进行分组之前, 需要获取 当前网络供电设备信息, 获取供电设备信息可以釆用现有技术中的任一种方 法获取, 本发明实施例对此不进行限制。
302、 根据所述网络当前的实际网络业务负载量和所述网络中每个供电设 备的能耗数据, 计算不同分组中供电设备的单位业务负载能耗。 其中, 所述网络中各个供电设备的能耗数据需要釆集, 釆集所述能耗数 据可以釆用现有技术中的任一种方法, 本发明实施例对此不进行限制; 例如, 可以设定釆集能耗数据的周期, 周期的釆集该全网各个供电设备的能耗数据; 该釆集为周期性的釆集, 釆集的周期可以由用户自己设定, 本发明实施例对 此不进行限制。 其中, 所述供电设备的能耗数据可以包括: 供电设备的供电 时间、 单位时间内供电设备的供电量、 蓄电池剩余电量等。
其中, 所述根据所述网络当前的实际网络业务负载量和所述网络中每个 供电设备的能耗数据, 计算不同分组中供电设备的单位业务负载能耗, 可以 釆用如下方法, 该方法包括:
根据供电设备信息釆集获取不同分组中对应供电设备的能耗数据; 根据所述供电设备的能耗数据, 计算所述不同分组中各个供电设备的业 务负载能耗; 其中, 根据所述供电设备的能耗数据, 计算所述不同分组中供 电设备的业务负载能耗的具体方法, 可以参考实施例 1 中的 1 03步骤中的相 应描述, 本发明实施例此处将不再赘述。
以组为单位, 分别将所述同一分组中的各个供电设备的业务负载能耗相 加, 得到不同分组中供电设备的业务负载总能耗; 其中, 所述分别将所述同 一分组中的各个供电设备的业务负载能耗相加, 得到不同分组中供电设备的 业务负载总能耗, 可以釆用公式 4获取, 该公式 4包括:
^∑PU[«][m] (公式 4 ) 其中, PU[«][m |为一个分组中第 n类设备的第 m个设备的能耗, n为一个 分组中的供电设备类型数, m为不同类型供电设备各自的设备数量。
将所述不同分组中供电设备的业务负载总能耗除以对应分组的供电设备 业务负载总量, 得到不同分组中供电设备的单位业务负载能耗。
303、 将所述不同分组中供电设备的单位业务负载能耗发送给客户端, 以 使得所述客户端将不同分组中供电设备的能耗显示。
本发明实施例, 与现有技术相比, 能够计算并获取网络不同分组中供电 设备的单位业务负载能耗, 并将该网络不同分组中供电设备的单位业务负载 能耗发送给客户端, 以使客户端能够将该不同分组中供电设备的单位业务负 载能耗, 按照用户的需求显示, 实现了不同设备能耗的比较, 使用户在组网 时能够选择能耗相对较低的设备, 达到节能减排的目的。
本发明实施例还提供一种获取设备节能能力的方法, 该方法为客户端侧 的方法, 如图 5所示, 该方法包括:
401、 接收不同分组中供电设备的单位业务负载能耗。
这里需要说明的是, 在接收到所述不同分组中供电设备的单位业务负载 能耗后, 本实施中可以将其存储, 以便为后续再利用提供方面, 在将其存储 时, 可以釆用现有技术中的任一种方式, 本发明实施例对此不进行限制。
402、 将所述不同分组中供电设备的单位业务负载能耗显示。
其中, 所述将所述不同分组中供电设备的单位业务负载能耗显示, 可以 包括:
当需要按照单位业务负载能耗对比显示不同分组设备的实际耗能时, 将 所述不同分组中供电设备的单位业务负载能耗直接显示;
当需要对比显示不同分组中的峰值能耗显示不同分组设备的实际耗能时 时, 选取不同分组中供电设备的单位业务负载能耗最大的单位业务负载能耗, 并将其显示显示。
这里需要说明的时, 本发明实施例中, 可以根据客户的需求, 在将所述 不同分组中供电设备的实际耗能显示时, 可以不局限于以上描述的两种方式, 用户还可以依照自己的需求, 将所述不同分组中供电设备的实际耗能显示, 具体的显示方式, 本发明实施例对此不进行限制。
本发明实施中, 客户端在接收到不同分组中供电设备的单位业务负载能 耗后, 可以按照用户的需求, 对该述不同分组中供电设备的单位业务负载能 耗进行显示, 使用户从不同角度获知不同设备的能耗, 使用户在组网时能够 选择能耗相对较低的设备, 达到节能减排的目的。
实施例 3 本发明实施例提供了一种获取设备节能能力的方法, 该方法为服务器侧 的方法, 如图 6所示, 该方法包括:
501、 根据供电设备信息将网络中的供电设备进行分组。
其中, 所述供电设备的信息的具体描述, 可以参考实施例 2中的步骤 301 中的相应描述。
其中, 所述根据供电设备信息将网络中的供电设备进行分组的具体描述, 可以参考实施例 2 中的步骤 301 中的相应描述, 本发明实施例在此将不再赘 述。
502、 获取所述网络中每个供电设备运行时的能耗加权值。
其中, 所述供电设备运行时的能耗加权值为设备的一项固有属性, 可以 被网络管理系统所釆集; 所述供电设备运行时的能耗加权值, 可根据所述供 电设备所述处的地理位置不同, 设置为不同的能耗加权值, 因为, 例如, 当 一个供电设备设置于大山中, 但需要大山另一边的用户接收到该设备发送的 信号, 需要加大该供电设备的发射功率, 供电设备的发射功率加大, 致使该 供电设备的能耗增加, 因此为了使处于不同位置区的供电设备的能耗均衡, 因此将该供电设备运行时的能耗加权值设置为一个较大的值。
503、 根据所述网络中每个供电设备运行时的能耗加权值、 所述网络当前 的实际网络业务负载量、 以及所述网络中每个供电设备的能耗数据, 计算不 同分组中供电设备的单位业务负载能耗。
其中, 所述全网各个供电设备的能耗数据需要釆集, 釆集所述能耗数据 可以釆用现有技术中的任一种方法, 本发明实施例对此不进行限制; 例如, 可以设定釆集能耗数据的周期, 周期的釆集该全网各个供电设备的能耗数据。 该釆集为周期性的釆集, 釆集的周期可以由用户自己设定, 本发明实施例对 此不进行限制。 其中, 所述供电设备的能耗数据可以包括: 供电设备的供电 时间、 单位时间内供电设备的供电量、 蓄电池剩余电量等。
其中, 所述根据所述网络中每个供电设备运行时的能耗加权值、 所述网 络当前的实际网络业务负载量、 以及所述网络中每个供电设备的能耗数据, 计算不同分组中供电设备的单位业务负载能耗, 包括:
根据供电设备信息获取不同分组中对应供电设备的能耗数据和供电设备 运行时的能耗加权值;
根据所述供电设备的能耗数据和供电设备运行时的能耗加权值, 计算所 述不同分组中每个供电设备的业务负载能耗; 其中, 根据所述供电设备的能 耗数据和供电设备运行时的能耗加权值计算所述不同分组中供电设备的业务 负载能耗可以釆用以下公式 5获取, 该公式 5为:
a[n][m] * PU[n][m] (公式 5 )
其中, 为分组中第 n类设备的第 m个设备运行时的能耗加权值, PU[«][m |为一个分组中第 n类设备的第 m个设备的能耗, n为一个分组中的供 电设备类型数, m为不同类型供电设备各自的设备数量。
以组为单位, 分别将所述每个分组中的各个供电设备的业务负载能耗分 别相加, 得到不同分组中供电设备的业务负载总能耗; 其中, 可以通过公式 6 获取不同分组中设备的业务负载总能耗, 该公式 6为: (公式 6 )
Figure imgf000017_0001
其中, ND为统计地域中第 n类设备的总数, X为本组中第 n类设备的总 数, 为分组中第 n类设备的第 m个设备运行时的能耗加权值, PU[n][m] 为一个分组中第 n类设备的第 m个设备的能耗。
将所述不同分组中供电设备的业务负载总能耗除以对应分组的供电设备 业务负载总量, 得到不同分组中供电设备的单位业务负载能耗以组为单位, 分别将所述不同分组中的各个供电设备的业务负载能耗相加, 得到不同分组 中设备的业务负载总能耗。
504、 将所述不同分组中供电设备的业务负载总能耗除以对应分组的供电 设备业务负载总量, 得到不同分组中供电设备的单位业务负载能耗。
本发明实施例中, 能够计算并获取网络不同分组中供电设备的单位业务 负载能耗, 并将该网络不同分组中供电设备的单位业务负载能耗发送给客户 端, 使客户端能够将该不同分组中供电设备的单位业务负载能耗, 按照用户 的需求显示, 实现了不同设备能耗的比较, 使用户在组网时能够选择能耗相 对较低的设备, 达到节能减排的目的。
并且, 本发明实施例中, 在计算不同分组中单位业务负载能耗时, 将各 供电设备运行时的能耗加权值考虑在内, 使得计算得到的所述不同分组中单 位业务负载能耗更加精确, 使得用户对不同设备的节能能力的比较更加精确。
实施例 4
本发明实施例提供一种服务器, 如图 7所示, 包括: 第一获取单元 61、 第二获取单元 62和第一发送单元 63。
第一获取单元 61 , 用于根据网络没有启动节能功能时在第一时间内单位 业务负载能耗均值和所述网络在所述第一时间内的当前实际网络负载总量, 获取所述网络在所述第一时间内的网络理论能耗总值;
第二获取单元 62 , 用于根据所述网络中每个供电设备的信息和所述网络 启动节能功能后每个供电设备的能耗数据, 获取所述网络在所述第一时间内 的网络实际能耗总值;
第一发送单元 63 ,用于将所述第一获取单元 61获取的所述网络理论能耗 总值、 所述第二获取单元获取的所述网络实际能耗总值以及所述网络在所述 第一时间内的当前实际网络负载总量发送给客户端, 以使得所述客户端根据 所述网络理论能耗总值、 所述网络实际能耗总值显示以及所述网络在所述第 一时间内的当前实际网络负载总量, 显示所述网络实际节约的能耗。
进一步的, 如图 8所示, 所述第一获取单元 61包括: 第一获取模块 61 1、 和第一计算模块 612。
第一获取模块 611 ,用于根据所述网络没有启动节能功能时在所述第一时 间内的历史网络能耗总值和历史网络业务负载总量, 获取所述网络没有启动 节能功能时在第一时间内单位业务负载能耗均值;其中所述第一获取模块 611 用于, 从历史数据库中获取所述网络没有启动节能功能时在第一时间内的历 史网络能耗总值和所述网络对应的历史网络业务负载总量; 将所述历史网络 能耗总值除以所述历史网络业务负载总量, 得到所述单位业务负载能耗均值。 第一计算模块 612 ,用于将所述第一获取模块 611获取的所述单位业务负 载能耗均值与所述网络在所述第一时间内的当前实际网络负载总量进行运 算, 得到所述网络在所述第一时间内的网络理论能耗总值。
进一步的, 如图 9所示, 所述第二获取单元 62包括: 第二获取模块 621、 釆集模块 622和第二计算模块 623。
第二获取模块 621 , 用于获取所述网络中供电设备的信息;
釆集模块 622 ,用于釆集所述网络启动节能功能后所述第一时间内所述网 络中每个供电设备的能耗数据;
第二计算模块 623 ,用于根据所述第二获取模块 621获取的所述网络中供 电设备的信息和所述釆集模块 622 釆集的所述网络中每个供电设备的能耗数 据, 计算得到所述网络在所述第一时间内的网络实际能耗总值。
本发明实施例还提供一种获取网络节能能力的系统, 如图 10所示, 该系 统包括: 服务器 71和客户端 72。
服务器 71 , 用于根据网络没有启动节能功能时在第一时间内单位业务负 载能耗均值和所述网络在所述第一时间内的当前实际网络负载总量, 获取所 述网络在所述第一时间内的网络理论能耗总值; 根据所述网络中每个供电设 备的信息和所述网络启动节能功能后每个供电设备的能耗数据, 获取所述网 络在所述第一时间内的网络实际能耗总值; 将所述网络理论能耗总值、 所述 网络实际能耗总值以及所述网络在所述第一时间内的当前实际网络负载总量 发送给客户端 72 , 以使得所述客户端 72根据所述网络理论能耗总值、 所述网 络实际能耗总值显示以及所述网络在所述第一时间内的当前实际网络负载总 量, 显示所述网络实际节约的能耗;
客户端 72 , 用于接收网络理论能耗总值、 网络实际能耗总值以及网络在 所述第一时间内的当前实际网络负载总量, 所述网络理论能耗总值为所述网 络没有启动节能功能时在第一时间内的网络理论能耗总值, 所述网络实际能 耗总值为所述网络启动节能功能后在所述第一时间内的网络实际能耗总值; 根据所述网络理论能耗总值、 网络实际能耗总值以及网络在所述第一时间内 的当前实际网络负载总量, 计算网络实际节约的能耗, 并将所述网络实际节 约的能耗显示。
这里需要说明的是, 上述各功能单元的具体描述, 可以参考实施例 1 中 的相应描述, 本发明实施例在此将不再赘述。
本发明实施例, 能够计算并获取网络没有启动节能功能时在第一时间内 的网络理论能耗总值, 以及所述网络启动节能功能后在该第一时间内的网络 实际能耗总值, 并将该网络理论能耗总值、 网络实际能耗总值以及该网络在 所述第一时间内的当前实际网络负载总量发送给客户端, 以使客户端能够根 据该网络理论能耗总值、 网络实际能耗总值以及该网络在所述第一时间内的 当前实际网络负载总量, 显示所述网络实际节约的能耗, 从而实现了将网络 进行节能优化前后节约的能耗显示, 使用户能够对网络的节能减排有一个量 的度量。
并且, 本发明实施例中, 客户端在接收到网络理论能耗总值、 网络实际 能耗总值以及网络在所述第一时间内的当前实际网络负载总量后, 可以按照 客户的需求, 对该网络理论能耗总值、 网络实际能耗总值以及网络在所述第 一时间内的当前实际网络负载总量, 进行相应的处理, 将满足客户需求形式 的网络实际节约的能耗显示, 使用户从不同角度获知网络进行节能优化前后 节约的能耗, 使用户能够对网络的节能减排有一个全方位的掌握。
实施例 5
本发明实施例提供一种服务器, 如图 11所示, 该服务器包括: 分组单元 81、 第一计算单元 82和第二发送单元 83。
分组单元 81 , 用于根据供电设备信息将网络中的供电设备进行分组; 其 中, 所述供电设备的信息可以包括: 供电设备的厂商信息、 供电设备的版本 信息、 供电设备的类型、 不同类型供电设备各自的设备数量、 蓄电池数量等。 所述供电设备在日常业务负载强度方面应该具备大致等量的业务负载特性, 例如来自不同城市的商务中心、 来自同城市但是人口密度相等的地区等等。 在按照预定的分组策略, 根据供电设备信息将全网的供电设备进行分组之前, 需要获取网络当前全网的供电设备信息, 获取供电设备信息可以釆用现有技 术中的任一种方法获取, 本发明实施例对此不进行限制。
第一计算单元 82 , 用于根据所述网络当前的实际网络业务负载量和所述 网络中每个供电设备的能耗数据, 计算不同分组中供电设备的单位业务负载 能耗; 其中, 所述全网各个供电设备的能耗数据需要釆集, 釆集所述能耗数 据可以釆用现有技术中的任一种方法, 本发明实施例对此不进行限制; 例如, 可以设定釆集能耗数据的周期, 周期的釆集该全网各个供电设备的能耗数据; 该釆集为周期性的釆集, 釆集的周期可以由用户自己设定, 本发明实施例对 此不进行限制。 其中, 所述供电设备的能耗数据可以包括: 供电设备的供电 时间、 单位时间内供电设备的供电量、 蓄电池剩余电量等。
第二发送单元 83 ,用于将所述第一计算单元 82获取的所述不同分组中供 电设备的单位业务负载能耗发送给客户端, 以使得所述客户端将不同分组中 供电设备的能耗显示。
进一步的,如图 12所示,所述第一计算单元 82包括:第一获取模块 821、 第一计算模块 822、 第二计算模块 823和第三计算模块 824。
第一获取模块 821 ,用于根据供电设备信息釆集获取不同分组中对应供电 设备的能耗数据;
第一计算模块 822 ,用于根据所述第一获取模块 821获取的所述供电设备 的能耗数据, 计算所述不同分组中各个供电设备的业务负载能耗;
第二计算模块 823 , 用于以组为单位, 分别将所述同一分组中的各个供电 设备的业务负载能耗相加, 得到不同分组中供电设备的业务负载总能耗; 第三计算模块 824 ,用于将所述第二计算模块 823计算得到的所述不同分 组中供电设备的业务负载总能耗除以对应分组的供电设备业务负载总量, 得 到不同分组中单位供电设备的业务负载能耗。
进一步的, 如图 13所示, 所述服务器还包括: 第四获取单元 84和第二 计算单元 85。 第四获取单元 84 , 用于获取所述网络中每个供电设备运行时的能耗加权 值;
第二计算单元 85 ,用于根据所述第四获取单元 84获取的网络中每个供电 设备运行时的能耗加权值、 所述网络当前实际网络业务负载量、 以及所述釆 集单元釆集的所述网络中每个供电设备的能耗数据, 计算不同分组中供电设 备的单位业务负载能耗。
进一步的,如图 14所示,所述第二计算单元 85包括:第二获取模块 851、 第四计算模块 852、 第五计算模块 853和第六计算模块 854。
第二获取模块 851 ,用于根据供电设备信息获取不同分组中对应供电设备 的能耗数据和供电设备运行时的能耗加权值;
第四计算模块 852 ,用于根据所述第二获取模块 851获取的所述供电设备 的能耗数据和供电设备运行时的能耗加权值, 计算所述不同分组中每个供电 设备的业务负载能耗;
第五计算模块 853 , 用于以组为单位, 分别将所述第四计算模块计算得到 的每个分组中的各个供电设备的业务负载能耗分别相加, 得到不同分组中供 电设备的业务负载总能耗;
第六计算模块 854 ,用于将所述第五计算模块 853计算得到的不同分组中 供电设备的业务负载总能耗除以对应分组的供电设备业务负载总量, 得到不 同分组中供电设备的单位业务负载能耗。
本发明实施例还提供一种获取设备节能能力的系统,如图 15所示, 包括: 服务器 91和客户端 92。
服务器 91 , 用于根据供电设备信息将网络中的供电设备进行分组; 根据 所述网络当前的实际网络业务负载量和所述网络中每个供电设备的能耗数 据, 计算不同分组中供电设备的单位业务负载能耗; 将所述不同分组中供电 设备的单位业务负载能耗发送给客户端 92 ,以使得所述客户端 92将不同分组 中供电设备的能耗显示;
客户端 92 , 用于接收不同分组中供电设备的单位业务负载能耗, 并将所 述不同分组中供电设备的单位业务负载能耗显示。
这里需要说明的是, 上述各功能单元的具体描述, 可以参考实施例 2 和 实施例 3中的相应描述, 本发明实施例在此将不再赘述。
本发明实施例, 能够计算并获取网络不同分组中供电设备的单位业务负 载能耗, 并将该网络不同分组中供电设备的单位业务负载能耗发送给客户端, 以使客户端能够将该不同分组中供电设备的单位业务负载能耗, 按照用户的 需求显示, 实现了不同设备能耗的比较, 使用户在组网时能够选择能耗相对 较低的设备, 达到节能减排的目的。
并且, 本发明实施中, 客户端在接收到不同分组中供电设备的单位业务 负载能耗后, 可以按照用户的需求, 对该述不同分组中供电设备的单位业务 负载能耗进行显示, 使用户从不同角度获知不同设备的能耗, 使用户在组网 时能够选择能耗相对较低的设备, 达到节能减排的目的。
进一步的, 本发明实施例中, 在计算不同分组中单位业务负载能耗时, 将各供电设备运行时的能耗加权值考虑在内, 使得计算得到的所述不同分组 中单位业务负载能耗更加精确, 使得用户对不同设备的节能能力的比较更加 精确。
上述实施例需要说明的是, 实施例 4 中记载的服务器和实施例 5 中记载 的服务器可以分别为独立的设备, 也可以集成在一个设备中, 本发明实施例 对此不进行限制; 另夕卜, 实施例 4 中记载的客户端和实施例 5 中记载的客户 端可以分为独立的设备, 也可以集成在一个设备中, 本发明实施例对此不进 行限制。
通过以上的实施方式的描述, 所属领域的技术人员可以清楚地了解到本 发明可借助软件加必需的通用硬件的方式来实现, 当然也可以通过硬件, 但 很多情况下前者是更佳的实施方式。 基于这样的理解, 本发明的技术方案本 质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来, 该 计算机软件产品存储在可读取的存储介质中, 如计算机的软盘, 硬盘或光盘 等, 包括若干指令用以使得一台计算机设备(可以是个人计算机, 服务器, 或者网络设备等)执行本发明各个实施例所述的方法。
以上所述, 仅为本发明的具体实施方式, 但本发明的保护范围并不局限于此, 任何熟悉本技术领域的技术人员在本发明揭露的技术范围内, 可轻易想到变 化或替换, 都应涵盖在本发明的保护范围之内。 因此, 本发明的保护范围应 以所述权利要求的保护范围为准。

Claims

权 利 要求 书
1、 一种获取网络节能能力的方法, 其特征在于, 包括:
根据网络没有启动节能功能时在第一时间内单位业务负载能耗均值和所述 网络在所述第一时间内的当前实际网络负载总量, 获取所述网络在所述第一时 间内的网络理论能耗总值;
根据所述网络中每个供电设备的信息和所述网络启动节能功能后每个供电 设备的能耗数据, 获取所述网络在所述第一时间内的网络实际能耗总值;
将所述网络理论能耗总值、 所述网络实际能耗总值以及所述网络在所述第 一时间内的当前实际网络负载总量发送给客户端, 以使得所述客户端根据所述 网络理论能耗总值、 所述网络实际能耗总值显示以及所述网络在所述第一时间 内的当前实际网络负载总量, 显示所述网络实际节约的能耗。
2、 根据权利要求 1所述的方法, 其特征在于, 所述根据网络没有启动节能 功能时在第一时间内单位业务负载能耗均值和所述网络在所述第一时间内的当 前实际网络负载总量, 获取所述网络在所述第一时间内的网络理论能耗总值, 包括:
根据所述网络没有启动节能功能时在所述第一时间内的历史网络能耗总值 和历史网络业务负载总量, 获取所述网络没有启动节能功能时在第一时间内单 位业务负载能耗均值;
将所述单位业务负载能耗均值与所述网络在所述第一时间内的当前实际网 络负载总量进行运算, 得到所述网络在所述第一时间内的网络理论能耗总值。
3、 根据权利要求 2所述的方法, 其特征在于, 所述根据所述网络没有启动 节能功能时在所述第一时间内的历史网络能耗总值和历史网络业务负载总量, 获取所述网络没有启动节能功能时在第一时间内单位业务负载能耗均值, 包括: 从历史数据库中获取所述网络没有启动节能功能时在第一时间内的历史网 络能耗总值和所述网络对应的历史网络业务负载总量;
将所述历史网络能耗总值除以所述历史网络业务负载总量, 得到所述单位 业务负载能耗均值。
4、 根据权利要求 1所述的方法, 其特征在于, 所述根据所述网络中供电设 备的信息和所述网络启动节能功能后每个供电设备的能耗数据, 获取所述网络 在所述第一时间内的网络实际能耗总值, 包括:
获取所述网络中供电设备的信息;
釆集所述网络启动节能功能后在所述第一时间内所述网络中每个供电设备 的能耗数据;
根据所述网络中供电设备的信息和所述网络中每个供电设备的能耗数据, 计算得到所述网络在所述第一时间内的网络实际能耗总值。
5、 一种获取设备节能能力的方法, 其特征在于, 包括:
根据供电设备信息将网络中的供电设备进行分组;
根据所述网络当前的实际网络业务负载量和所述网络中每个供电设备的能 耗数据, 计算不同分组中供电设备的单位业务负载能耗;
将所述不同分组中供电设备的单位业务负载能耗发送给客户端, 以使得所 述客户端将不同分组中供电设备的能耗显示。
6、 根据权利要求 5所述的方法, 其特征在于, 所述根据所述网络当前的实 际网络业务负载量和所述网络中每个供电设备的能耗数据, 计算不同分组中供 电设备的单位业务负载能耗, 包括:
根据供电设备信息釆集获取不同分组中对应供电设备的能耗数据; 根据所述供电设备的能耗数据, 计算所述不同分组中各个供电设备的业务 负载能耗;
以组为单位, 分别将所述同一分组中的各个供电设备的业务负载能耗相加, 得到不同分组中供电设备的业务负载总能耗;
将所述不同分组中供电设备的业务负载总能耗除以对应分组的供电设备业 务负载总量, 得到不同分组中供电设备的单位业务负载能耗。
7、 根据权利要求 5所述的方法, 其特征在于, 该方法还包括:
获取所述网络中每个供电设备运行时的能耗加权值;
根据所述网络中每个供电设备运行时的能耗加权值、 所述网络当前的实际 网络业务负载量、 以及所述网络中每个供电设备的能耗数据, 计算不同分组中 供电设备的单位业务负载能耗。
8、 根据权利要求 7所述的方法, 其特征在于, 所述根据所述网络中每个供 电设备运行时的能耗加权值、 所述网络当前的实际网络业务负载量、 以及所述 网络中每个供电设备的能耗数据, 计算不同分组中供电设备的单位业务负载能 耗, 包括:
根据供电设备信息获取不同分组中对应供电设备的能耗数据和供电设备运 行时的能耗加权值;
根据所述供电设备的能耗数据和供电设备运行时的能耗加权值, 计算所述 不同分组中每个供电设备的业务负载能耗;
以组为单位, 分别将所述每个分组中的各个供电设备的业务负载能耗分别 相加, 得到不同分组中供电设备的业务负载总能耗;
将所述不同分组中供电设备的业务负载总能耗除以对应分组的供电设备业 务负载总量, 得到不同分组中供电设备的单位业务负载能耗。
9、 一种服务器, 其特征在于, 包括:
第一获取单元, 用于根据网络没有启动节能功能时在第一时间内单位业务 负载能耗均值和所述网络在所述第一时间内的当前实际网络负载总量, 获取所 述网络在所述第一时间内的网络理论能耗总值;
第二获取单元, 用于根据所述网络中每个供电设备的信息和所述网络启动 节能功能后每个供电设备的能耗数据, 获取所述网络在所述第一时间内的网络 实际能耗总值;
第一发送单元, 用于将所述网络理论能耗总值、 所述网络实际能耗总值以 及所述网络在所述第一时间内的当前实际网络负载总量发送给客户端, 以使得 所述客户端根据所述网络理论能耗总值、 所述网络实际能耗总值显示以及所述 网络在所述第一时间内的当前实际网络负载总量, 显示所述网络实际节约的能 耗。
10、 根据权利要求 9所述的服务器, 其特征在于, 所述第一获取单元包括: 第一获取模块, 用于根据所述网络没有启动节能功能时在所述第一时间内 的历史网络能耗总值和历史网络业务负载总量, 获取所述网络没有启动节能功 能时在第一时间内单位业务负载能耗均值;
第一计算模块, 用于将所述第一获取模块获取的所述单位业务负载能耗均 值与所述网络在所述第一时间内的当前实际网络负载总量进行运算, 得到所述 网络在所述第一时间内的网络理论能耗总值。
11、根据权利要求 10所述的服务器, 其特征在于, 所述第一获取模块用于, 从历史数据库中获取所述网络没有启动节能功能时在第一时间内的历史网 络能耗总值和所述网络对应的历史网络业务负载总量;
将所述历史网络能耗总值除以所述历史网络业务负载总量, 得到所述单位 业务负载能耗均值。
12、 根据权利要求 9所述的服务器, 其特征在于, 所述第二获取单元包括: 第二获取模块, 用于获取所述网络中供电设备的信息;
釆集模块, 用于釆集所述网络启动节能功能后所述第一时间内所述网络中 每个供电设备的能耗数据;
第二计算模块, 用于根据所述第二获取模块获取的所述网络中供电设备的 信息和所述釆集模块釆集的所述网络中每个供电设备的能耗数据, 计算得到所 述网络在所述第一时间内的网络实际能耗总值。
1 3、 一种服务器, 其特征在于, 包括:
分组单元, 用于根据供电设备信息将网络中的供电设备进行分组; 第一计算单元, 用于根据所述网络当前的实际网络业务负载量和所述网络 中每个供电设备的能耗数据, 计算不同分组中供电设备的单位业务负载能耗; 第二发送单元, 用于将所述第一计算单元获取的所述不同分组中供电设备 的单位业务负载能耗发送给客户端, 以使得所述客户端将不同分组中供电设备 的能耗显示。
14、根据权利要求 1 3所述的服务器, 其特征在于, 所述第一计算单元包括: 第一获取模块, 用于根据供电设备信息釆集获取不同分组中对应供电设备 的能耗数据;
第一计算模块, 用于根据所述第一获取模块获取的所述供电设备的能耗数 据, 计算所述不同分组中各个供电设备的业务负载能耗;
第二计算模块, 用于以组为单位, 分别将所述同一分组中的各个供电设备 的业务负载能耗相加, 得到不同分组中供电设备的业务负载总能耗;
第三计算模块, 用于将所述第二计算模块计算得到的所述不同分组中供电 设备的业务负载总能耗除以对应分组的供电设备业务负载总量, 得到不同分组 中单位供电设备的业务负载能耗。
15、 根据权利要求 1 3所述的服务器, 其特征在于, 还包括:
第四获取单元, 用于获取所述网络中每个供电设备运行时的能耗加权值; 第二计算单元, 用于根据所述第四获取单元获取的网络中每个供电设备运 行时的能耗加权值、 所述网络当前实际网络业务负载量、 以及所述釆集单元釆 集的所述网络中每个供电设备的能耗数据, 计算不同分组中供电设备的单位业 务负载能耗。
16、根据权利要求 15所述的服务器, 其特征在于, 所述第二计算单元包括: 第二获取模块, 用于根据供电设备信息获取不同分组中对应供电设备的能 耗数据和供电设备运行时的能耗加权值;
第四计算模块, 用于根据所述第二获取模块获取的所述供电设备的能耗数 据和供电设备运行时的能耗加权值, 计算所述不同分组中每个供电设备的业务 负载能耗;
第五计算模块, 用于以组为单位, 分别将所述第四计算模块计算得到的每 个分组中的各个供电设备的业务负载能耗分别相加, 得到不同分组中供电设备 的业务负载总能耗;
第六计算模块, 用于将所述第五计算模块计算得到的不同分组中供电设备 的业务负载总能耗除以对应分组的供电设备业务负载总量, 得到不同分组中供 电设备的单位业务负载能耗。
17、 一种获取网络节能能力的系统, 其特征在于, 包括: 如权利要求 9至 12中任一项所述的服务器和客户端;
所述客户端, 用于接收网络理论能耗总值、 网络实际能耗总值以及网络在 所述第一时间内的当前实际网络负载总量, 所述网络理论能耗总值为所述网络 没有启动节能功能时在第一时间内的网络理论能耗总值, 所述网络实际能耗总 值为所述网络启动节能功能后在所述第一时间内的网络实际能耗总值;
根据所述网络理论能耗总值、 网络实际能耗总值以及网络在所述第一时间 内的当前实际网络负载总量, 计算网络实际节约的能耗, 并将所述网络实际节 约的能耗显示。
18、 根据权利要求 17所述的系统, 其特征在于, 所述客户端根据所述网络 理论能耗总值、 网络实际能耗总值以及网络在所述第一时间内的当前实际网络 负载总量, 计算网络实际节约的能耗, 并将所述网络实际节约的能耗显示, 包 括:
当需要按照能耗总值对比显示网络节约的能耗时, 将所述网络理论能耗总 值和网络实际能耗总值直接显示; 或
当需要按照网络实际节约能耗总值显示网络节约的能耗时, 将所述网络理 论能耗总值和所述网络实际能耗总值进行比较, 得到所述网络实际节能能耗, 将所述网络实际节能能耗显示; 或
当需要按照单位业务负载能耗值对比显示网络节约的能耗时, 将所述网络 理论能耗总值和网络实际能耗总值, 分别除以所述网络当前的实际网络负载量, 得到网络理论单位业务负载能耗均值和网络实际单位业务负载能耗均值, 将所 述网络理论单位业务负载能耗均值和网络实际单位业务负载能耗均值显示; 或 当需要按照网络单位业务负载实际节约能耗显示网络节约的能耗时, 将所 述网络理论能耗总值和网络实际能耗总值, 分别除以所述网络当前的实际网络 负载量, 得到网络理论单位业务负载能耗均值和网络实际单位业务负载能耗均 值, 将网络理论单位业务负载能耗均值和网络实际单位业务负载能耗均值进行 比较, 得到网络单位业务负载实际节约能耗, 将所述网络单位业务负载实际节 约能耗显示。
19、 一种获取设备节能能力的系统, 其特征在于, 包括:
如权利要求 1 3至 16中的任一项所述的服务器和客户端;
所述客户端, 用于接收不同分组中供电设备的单位业务负载能耗, 并将所 述不同分组中供电设备的单位业务负载能耗显示。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108322336A (zh) * 2018-01-15 2018-07-24 北京华胜天成信息技术发展有限公司 面向国产自主可控服务器的智能管理方法及系统

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101977126A (zh) * 2010-11-11 2011-02-16 华为技术服务有限公司 获取网络及设备节能能力的方法、设备及系统
CN102307106B (zh) * 2011-07-30 2013-08-07 华为技术有限公司 一种站点能耗管理、呈现的方法及装置
CN103516537A (zh) * 2012-06-25 2014-01-15 百度在线网络技术(北京)有限公司 整机柜的功耗管理方法及系统和整机柜
CN112381362A (zh) * 2019-12-03 2021-02-19 任杉元 基于大数据的家用电力审计方法
CN111179558A (zh) * 2020-01-14 2020-05-19 杭州利鹏科技有限公司 一种生产线能耗智能分析预警方法
CN112558190B (zh) * 2020-12-17 2021-10-22 水利部南京水利水文自动化研究所 用于城市暴雨洪涝的水位雨量一体监控系统

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101533275A (zh) * 2008-03-10 2009-09-16 丸红核能工业服务株式会社 耗能机器或转换控制电机的耗能显示装置及耗能显示方法
CN101592922A (zh) * 2008-05-30 2009-12-02 株式会社日立制作所 显示节能运行的功耗节省效果的节能运行支援装置及其支援方法
KR100949340B1 (ko) * 2009-05-14 2010-03-26 주식회사 필루체 전력 사용량 절감 금액 표시 스위치 및 그 동작 방법
CN101873009A (zh) * 2010-07-12 2010-10-27 浙江昱能光伏科技集成有限公司 家庭智能用电监控系统
CN101977126A (zh) * 2010-11-11 2011-02-16 华为技术服务有限公司 获取网络及设备节能能力的方法、设备及系统

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20030065497A1 (en) * 2001-09-28 2003-04-03 Rhoads Monte J. Power management system to select a power state for a network computer system based on load
CN100501794C (zh) * 2006-11-21 2009-06-17 东莞理工学院 在线可视化能耗审计管理系统
US20090228324A1 (en) * 2008-03-04 2009-09-10 Ronald Ambrosio Method and System for Efficient Energy Distribution in Electrical Grids Using Sensor and Actuator Networks
CN101727174A (zh) * 2009-11-26 2010-06-09 浪潮电子信息产业股份有限公司 一种根据计算机本地网络负载状态来降低能耗的方法

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101533275A (zh) * 2008-03-10 2009-09-16 丸红核能工业服务株式会社 耗能机器或转换控制电机的耗能显示装置及耗能显示方法
CN101592922A (zh) * 2008-05-30 2009-12-02 株式会社日立制作所 显示节能运行的功耗节省效果的节能运行支援装置及其支援方法
KR100949340B1 (ko) * 2009-05-14 2010-03-26 주식회사 필루체 전력 사용량 절감 금액 표시 스위치 및 그 동작 방법
CN101873009A (zh) * 2010-07-12 2010-10-27 浙江昱能光伏科技集成有限公司 家庭智能用电监控系统
CN101977126A (zh) * 2010-11-11 2011-02-16 华为技术服务有限公司 获取网络及设备节能能力的方法、设备及系统

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108322336A (zh) * 2018-01-15 2018-07-24 北京华胜天成信息技术发展有限公司 面向国产自主可控服务器的智能管理方法及系统

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