SYSTEM FOR MONITORING A POWER DISTRIBUTION NETWORK AND METHODS OF BUILDING AND PERFORMING OPERATIONS ON SUCH SYSTEM
20220329100 · 2022-10-13
Assignee
Inventors
Cpc classification
H04Q9/00
ELECTRICITY
Y04S10/30
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
A system is for monitoring a power distribution network having mast constructions carrying at least one power line. The system has at least two smart modules, each being affixed to a respective mast construction and designed for wireless communication with each other for forming a main wireless communication network along the power line. The system has a sensor system affixed to a respective one of the mast constructions. The sensor system is designed for determining at least one quantity or event of the network and for communicating the quantity or event to a respective smart module, which are designed for communicating information associated with the quantity or event along the network, for being remotely monitored. The smart modules are placed outside the Live working and Vicinity zones in accordance with the EN50110-1 standard for power networks, and at least one sensor system is contained in each smart module itself.
Claims
1. A system for monitoring a power distribution network, wherein the power distribution network comprises a plurality of mast constructions placed on a ground at certain distances from each other and carrying at least one power line mounted to said mast constructions, wherein the system comprises at least two smart modules, each smart module being affixed directly to a respective one of the plurality of mast constructions, wherein the at least two smart modules are designed for wireless communication with each other in accordance with a wireless communication protocol for forming a main wireless communication network along the power line, wherein the system further comprises at least one sensor system affixed directly to a respective one of said mast constructions, the at least one sensor system being designed for determining at least one quantity or event of the power distribution network and for communicating said at least one quantity or event to a respective smart module, and wherein the at least two smart modules are designed for communicating information associated with said at least one quantity or event along the main wireless communication network of smart modules for being remotely monitored, wherein the at least two smart modules are placed outside the Live working and Vicinity zones in accordance with the EN50110-1 standard for power networks, and wherein at least one of the at least one sensor system is contained in each smart module itself.
2. The system according to claim 1, wherein said smart modules form a wireless mesh network.
3. The system according to claim 2, wherein said smart modules are placed at such locations and at such distances relative to each other that at least a subset of said smart modules are capable of skipping one or more smart modules to communicate directly with a first-following node thereafter.
4. The system according to claim 1, wherein the at least one sensor system is designed for sensing at least acceleration and/or vibration of the respective mast construction to which it is mounted.
5. The system according to claim 1, wherein at least one of the at least one sensor system is mounted directly to the mast construction itself outside the smart module.
6. The system according to claim 5, wherein the at least one sensor system is designed i) for measuring tension and/or compression of a part of the respective mast construction to which it is mounted and/or ii) for sensing at least acceleration and/or vibration and/or inclination of the respective mast construction to which it is mounted and/or iii) for sensing presence and location of sparkover between power lines and/or between a respective power line and ground, and/or for iv) sensing or measuring the temperature of the power line and/or for measuring the down-conductor current.
7. The system according to claim 1, wherein each pair of a respective sensor system and a respective smart module is designed for wireless communication with each other using a further wireless communication protocol for forming a local wireless communication network in between said sensor system and said smart module, wherein the local wireless communication network is different from the main wireless communication network.
8. The system according to claim 1, wherein the at least one sensor system comprises a camera for visual or thermal inspection of the power distribution network including the mast construction and power line, and wherein the smart modules are designed for communicating visual inspection data along the main wireless communication network.
9. The system according to claim 1, wherein the at least one sensor system comprises a sparkover sensor which is designed for sensing sparkover between power lines or between a respective power line and ground and determining a distance between said sparkover sensors and the sparkover location on the power line.
10. The system according to claim 1, wherein the at least one sensor system comprises at least one current sensor for sensing a current through the power line.
11. The system according to claim 1, further comprising at least one line sensor mounted to the power line, wherein said line sensor and respective smart module are designed for wireless communication with each other using a further wireless communication protocol for forming a further local wireless communication network in between them, wherein the further local wireless communication network is different from the main wireless communication network.
12. The system according to claim 11, wherein the at least one line sensor is designed for sensing at least one of the following quantities: vibration of the respective power line, inclination of the power line, compression and/or contraction of the power line, power line temperature, voltage from phase to ground, the current running through the power line and presence and location of sparkover between power lines and/or between a respective power line and ground.
13. The system according to claim 1, wherein at least one of the mast constructions is provided with a weather station for determining the weather, wherein said weather station is coupled to the respective smart module, and wherein said smart modules are designed for communicating weather data along the main wireless communication network.
14. A method of building a system according to claim 1, wherein the method comprises the steps of: affixing said smart modules to the respective mast constructions the Live working and Vicinity zones in accordance with the EN50110-1 standard for power networks; affixing a further one of the at least one sensor system directly to the respective mast construction, preferably outside said zones in accordance with said standard, in as far as these are located outside the smart module (200); mounting the respective cameras to the mast construction, preferably outside said Live working and Vicinity zones; optionally mounting the at least one line sensor to the power line.
15. A method of performing operations on a system according to claim 1, wherein the method comprises at least one of the following steps: operating a respective smart module at the respective mast constructions outside the Live working and Vicinity zones in accordance with the EN50110-1 standard for power networks; performing maintenance on a respective smart module located outside the Live working and Vicinity zones in accordance with the EN50110-1 standard for power networks, and removing a respective smart module located outside the Live working and Vicinity zones in accordance with the EN50110-1 standard for power networks.
16. The system according to claim 2, wherein at least one of the at least one sensor system is mounted directly to the mast construction itself outside the smart module.
17. The system according to claim 3, wherein at least one of the at least one sensor system is mounted directly to the mast construction itself outside the smart module.
18. The system according to claim 4, wherein at least one of the at least one sensor system is mounted directly to the mast construction itself outside the smart module.
Description
BRIEF INTRODUCTION OF THE FIGURES
[0056] In the following is described an example of an embodiment illustrated in the accompanying figures, wherein:
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0064] Various illustrative embodiments of the present subject matter are described below. In the interest of clarity, not all features of an actual implementation are described in this specification. It will of course be appreciated that in the development of any such actual embodiment, numerous implementation-specific decisions must be made to achieve the developers' specific goals, such as compliance with system-related and business-related constraints, which will vary from one implementation to another. Moreover, it will be appreciated that such a development effort might be complex and time-consuming but would nevertheless be a routine undertaking for those of ordinary skill in the art having the benefit of this disclosure.
[0065] The present subject matter will now be described with reference to the attached figures. Various systems, structures and devices are schematically depicted in the figures for purposes of explanation only and to not obscure the present disclosure with details that are well known to those skilled in the art. Nevertheless, the attached figures are included to describe and explain illustrative examples of the present disclosure. The words and phrases used herein should be understood and interpreted to have a meaning consistent with the understanding of those words and phrases by those skilled in the relevant art. No special definition of a term or phrase, i.e., a definition that is different from the ordinary and customary meaning as understood by those skilled in the art, is intended to be implied by consistent usage of the term or phrase herein. To the extent that a term or phrase is intended to have a special meaning, i.e., a meaning other than that understood by skilled artisans, such a special definition will be expressly set forth in the specification in a definitional manner that directly and unequivocally provides the special definition for the term or phrase.
[0066] The invention will be discussed for power distribution networks in more detail with reference to the figures. The figures will be mainly discussed in as far as they differ from previous figures.
[0067]
[0068] A core feature of the invention is that smart modules 200 are affixed directly to the mast constructions 100 as
[0069] A first main function of the smart module 200 is to create a main long-range wireless communication network NW1 along the power lines 1a, 1b, 1c, i.e. each smart module 200 may communicate with another smart module 200 along the path of the power lines as the dashed arrows illustrate. In an embodiment the main wireless communication network NW1 forms a wireless mesh network, i.e. mesh WIFI. The distance dst between and placement of said construction masts 100 is such that there is “redundancy” built-in in that respective smart modules 200 may also reach non-neighbouring smart modules, i.e. hop over one or more smart modules. This node hopping or rerouting is illustrated by a dash-dot arrow RR. The smart modules 200 may also communicate with data concentrators or gateways 400 as
[0070] A second main function of the smart module 200 is connecting with a sensor system 210, 220, 230, 240, which is configured for determining at least one quantity or event of the power distribution network 1. This sensor system may be comprised in a same housing of the smart module 200 or it may have its own housing and be affixed to another part of the mast construction 100. In the embodiment of
[0071] A third main function of the smart module 200 is to communicate information associated with said at least one quantity or event along the main wireless communication network NW1. Information associated with said at least one quantity or event may be obtained by processing the determined quantity or event inside the smart module, which may comprise parts like a processor unit, memory and energy management unit. This may also include data storage, concentration, consolidation, compression, and correlation of all local data to control and optimise the traffic in the network. The whole purpose of the monitoring system 2 in accordance with the invention is to get the relevant information to the data centre, which is remote from the power distribution network 1. Based upon this information the necessary actions may be initiated, such as maintenance or repair operations in the power distribution network 1.
[0072] In the embodiment of
[0073] In the embodiment of
[0074] Even though the core idea of the invention is to provide “intelligence” or “smartness” directly on the mast construction 100, the monitoring system 2 of the invention may in some embodiments still be supplemented with line sensors 280 as illustrated, i.e. line sensors are not necessarily excluded. These line sensors 280 may be configured with further sensors, such as current sensors, temperature sensors, acceleration or vibration sensors, inclination sensors, compression or tension sensors, or sparkover sensors. These line sensors 280 may be very complex devices, which are hanged on or suspended on the power lines 1a, 1b, 1c, or they are mounted directly on an insulator that is fixed to the power line 1a, 1b, 1c. Nevertheless, the insight of the invention is that many of these sensors may be affixed directly to the mast construction 100 and outside the Live working and Vicinity zones as it will be easier to implement in a robust and convenient way.
[0075] In the embodiment of
[0076] The embodiment of
[0077] It must be noted that the monitoring system 2 in accordance with the invention may comprise: [0078] the smart modules 2 on the mast constructions (including at least one sensor system); [0079] the sensor systems 210, 220, 230, 240 on the mast constructions (if present); [0080] the line sensors 280 on the power lines 1a, 1b, 1c (if present); [0081] the weather stations 290 (if present).
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[0084] In
[0085] In
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[0087] Each smart module 200-1 comprises a control circuit/PCB 202 having main components such as a processor unit 202-1, a memory 202-2 and an energy management unit 202-3. The processor unit 202-1 is configured for carrying out calculations and manipulations on the determined quantities and events to extract the relevant information to be transmitted over the main wireless communication network NW1. The PCB 202 is connected to or comprises a communication unit 203 and a respective antenna 203a. The same components are illustrated for the other smart module 200-2.
[0088] The monitoring system 2 of
[0089] The monitoring system 2 of
[0090] The monitoring system 2 of
[0091] The monitoring system 2 further comprises a solar panel 209 for providing energy to the system 2, and a rechargeable battery or battery pack 208 for providing energy to the system 2 in times where the solar cell panel 209 does not produce any energy.
[0092] Even though certain components in
[0093] The sparkover sensors 241 and 285 in
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[0095] The particular embodiments disclosed above are illustrative only, as the invention may be modified and practiced in different but equivalent manners apparent to those skilled in the art having the benefit of the teachings herein. For example, instead of using local wireless communication networks between the smart modules and the sensor systems, some or all of those sensor systems may be connected by wire. Concerning the smart module, some sensor systems may be placed inside and some sensors outside the housing. Some sensor systems may be integrated onto the PCB and some sensor systems may be integrated outside the PCB.
[0096] One of the embodiments mentioned in this specification concerns the measuring of power line temperature with thermal imaging camera or infrared long-distance sensors from the “Smart module” (also called “smart node”). This is possible at more than 10 m distance with relatively low-cost sensors and cameras with pixel size small enough to resolve the power line. Example: Field of view 30 degrees with 500 pixels gives 0,06 degrees per pixel, which is 3 mm at 3 m. The lines are 10-35 mm in diameter. Thus, by simply putting a thermal camera on top of the smart module with a field of view that is wide enough, it is possible to monitor the entire construction including isolators, conductors and fasteners. Looking upwards may have its limitations due to ice and snow, but this is possible to solve. In Norway, the sun never reaches zenith and is more than 30 degrees away for most locations, so it is easy to mask.
[0097] The person skilled in the art may easily find alternative solutions for tightening, tensioning and mounting parts. The invention covers all these variants as long as they are covered by the independent claim. No limitations are intended to the details of construction or design herein shown, other than as described in the claims below. It is therefore evident that the particular embodiments disclosed above may be altered or modified and all such variations are considered within the scope of the invention. Accordingly, the protection sought herein is as set forth in the claims below.
[0098] It should be noted that the above-mentioned embodiments illustrate rather than limit the invention, and that those skilled in the art will be able to design many alternative embodiments without departing from the scope of the appended claims. In the claims, any reference signs placed between parentheses shall not be construed as limiting the claim. Use of the verb “comprise” and its conjugations does not exclude the presence of elements or steps other than those stated in a claim. The article “a” or “an” preceding an element does not exclude the presence of a plurality of such elements. The mere fact that certain measures are recited in mutually different dependent claims does not indicate that a combination of these measures cannot be used to advantage. The invention may be implemented by means of hardware comprising several distinct elements, and by means of a suitably programmed computer. In the device claims enumerating several means, several of these means may be embodied by one and the same item of hardware.