WO2014007445A1 - HetNet 시스템에서 셀 간 간섭을 제어하는 방법 및 장치 - Google Patents
HetNet 시스템에서 셀 간 간섭을 제어하는 방법 및 장치 Download PDFInfo
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- WO2014007445A1 WO2014007445A1 PCT/KR2012/011815 KR2012011815W WO2014007445A1 WO 2014007445 A1 WO2014007445 A1 WO 2014007445A1 KR 2012011815 W KR2012011815 W KR 2012011815W WO 2014007445 A1 WO2014007445 A1 WO 2014007445A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04J—MULTIPLEX COMMUNICATION
- H04J11/00—Orthogonal multiplex systems, e.g. using WALSH codes
- H04J11/0023—Interference mitigation or co-ordination
- H04J11/005—Interference mitigation or co-ordination of intercell interference
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04J—MULTIPLEX COMMUNICATION
- H04J11/00—Orthogonal multiplex systems, e.g. using WALSH codes
- H04J11/0023—Interference mitigation or co-ordination
- H04J11/005—Interference mitigation or co-ordination of intercell interference
- H04J11/0056—Inter-base station aspects
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/20—Control channels or signalling for resource management
- H04W72/23—Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/50—Allocation or scheduling criteria for wireless resources
- H04W72/54—Allocation or scheduling criteria for wireless resources based on quality criteria
- H04W72/541—Allocation or scheduling criteria for wireless resources based on quality criteria using the level of interference
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04J—MULTIPLEX COMMUNICATION
- H04J2211/00—Orthogonal indexing scheme relating to orthogonal multiplex systems
- H04J2211/001—Orthogonal indexing scheme relating to orthogonal multiplex systems using small cells within macro cells, e.g. femto, pico or microcells
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04J—MULTIPLEX COMMUNICATION
- H04J2211/00—Orthogonal indexing scheme relating to orthogonal multiplex systems
- H04J2211/003—Orthogonal indexing scheme relating to orthogonal multiplex systems within particular systems or standards
- H04J2211/005—Long term evolution [LTE]
Definitions
- the present invention relates to wireless communication, and more particularly, to a method and apparatus for controlling inter-cell interference in a HetNet (Heterogeneous Network) system.
- HetNet Heterogeneous Network
- 3rd generation partnership project (3GPP) Long Term Evolution (LTE) -Advanced is designed to address small cells such as femto cells or pico cells to address the rapidly increasing wireless data traffic demands. Introduced.
- 3GPP 3rd generation partnership project
- LTE Long Term Evolution
- An object of the present invention is to provide an interference control method and an apparatus using the same, which can manage interference between a macro cell and a small cell and improve frequency efficiency in a HetNet (Heterogeneous Network) system.
- HetNet Heterogeneous Network
- Another object of the present invention is to provide a method for controlling inter-cell interference (ICI) supported by a cluster coordinator node (CCN) and an apparatus using the same.
- ICI inter-cell interference
- Another object of the present invention is to provide a method for controlling ICI of a user equipment (UE) existing in the coverage of a small base station and an apparatus using the same.
- UE user equipment
- a method for controlling inter-cell interference in a HetNet (Heterogeneous Network) system in which a macro cell and a femto cell are mixed includes overhearing a control channel of the macro cell, determining an interference candidate resource to be subjected to inter-cell interference control based on the control channel, and information on the interference candidate resource. Transmitting the interference control message.
- HetNet Heterogeneous Network
- the method may further include determining an interference candidate terminal, which is a target of inter-cell interference control, from among terminals located in the femto cell.
- the control channel may be a downlink control channel transmitted from the macro base station to the terminal or an uplink control channel transmitted from the terminal to the macro base station.
- the determining of the interference candidate resource may include determining a downlink channel state of the terminal by decoding the uplink control channel.
- an inter-cell interference control apparatus in a HetNet (Heterogeneous Network) system in which a macro cell and a femto cell are mixed includes a processor for implementing a radio frequency (RF) unit and a radio interface protocol for transmitting and receiving radio signals.
- the processor overhears the control channel of the macro cell, determines an interference candidate resource that is an object of inter-cell interference control based on the control channel, and includes interference information including information on the interference candidate resource. Send a message.
- RF radio frequency
- a quality of service (QoS) of a macro terminal (UE) may be guaranteed.
- HetNet Heterogeneous Network
- ICI Inter Cell Interference
- FIG. 5 shows a method of controlling ICI in a HetNet system according to the present invention.
- FIG. 6 illustrates a method (adaptable fixed resource allocation) for controlling ICI in a HetNet system according to an embodiment of the present invention.
- FIG. 7 is an example illustrating a signal flow for each entity in the embodiment of FIG. 6.
- FIG. 8 illustrates a method (adaptive dynamic resource allocation) for controlling ICI in a HetNet system according to an embodiment of the present invention.
- FIG. 9 is an example illustrating a signal flow for each entity in the embodiment of FIG. 8.
- FIG. 10 illustrates dynamic resource allocation in a HetNet system according to an embodiment of the present invention.
- FIG. 11 illustrates an example of resource allocation according to the embodiment of FIG. 6.
- FIG. 12 illustrates an example of resource allocation according to the embodiment of FIG. 8.
- FIG. 13 shows an example of a method for controlling ICI in a HetNet system according to the present invention.
- CCC 14 is a block diagram illustrating a cluster coordinator node (CCC) in which an embodiment of the present invention is implemented.
- CCC cluster coordinator node
- HetNet Heterogeneous Network
- the HetNet system includes at least one enhanced Node-B (eNB).
- the eNB provides services for a particular geographic area (generally called a cell).
- UE User equipment
- MS mobile station
- MT mobile terminal
- UT user terminal
- SS subscriber station
- wireless device wireless device
- An eNB generally refers to a fixed station for communicating with a UE, and may be referred to in other terms, such as a base station (BS), a base transceiver system (BTS), and an access point (AP).
- BS base station
- BTS base transceiver system
- AP access point
- the eNB may be classified into a macro eNB, a femto eNB, a pico eNB, and the like according to service coverage.
- the macro eNB 110 is classified as a large eNB, a femto eNB and a pico eNB as a small eNB.
- femto eNB and pico eNB may be called HeNB (Home eNB).
- the UE typically belongs to one cell, and the cell to which the UE belongs is called a serving cell.
- An eNB that provides a communication service for a serving cell is called a serving eNB.
- the serving eNB of the macro UE (MUE) 115 is the macro eNB 110
- the serving eNB of the HUE (Home UE 125) is the HeNB 120.
- downlink means communication from the eNB to the UE
- uplink means communication from the UE to the eNB.
- the transmitter is part of the eNB and the receiver may be part of the UE.
- the transmitter may be part of the UE and the receiver may be part of the eNB.
- the plurality of small cells may share one CCN (Cluster Coordinator Node) 130.
- the CCN is located in the center of a plurality of small cells and controls inter-cell interference (ICI) occurring between the macro cell and the small cell.
- ICI inter-cell interference
- the CCN 130 overhears the downlink signal transmitted from the macro eNB 110 and / or the uplink signal transmitted from the MUE 115 to determine how radio resources are allocated to the MUE 115. Can be.
- Overhearing is to open a signal that is not targeted, for example, means that the CCN listens to a signal transmitted from the macro eNB to the MUE.
- the control channel of the UE to be overheared must be decoded.
- an identifier (ID: idendtifier) of the UE, an authority for the UE, and / or authentication may be required.
- a femto cell will be described as an example among small cells for convenience of description.
- the technical spirit of the present invention is not limited thereto.
- the technical idea of the present invention can be easily applied to pico cell or device-to-device (D2D) communication.
- D2D device-to-device
- FFR fractional frequency reuse
- CCN may require the following functions to control the interference between the macro cell and femto cell.
- the CCN manages the interference between the macro cell and the femto cell.
- CCN may have a separate cell ID according to the characteristics of the node. If the CCN has a cell ID, the CCN may generate a cell separate from the macro cell.
- the CCN may transmit a dedicated control signal to each cell.
- the UE cannot recognize the presence of the CCN. That is, the CCN is transparent to the UE.
- a separate wired / wireless interface may be defined for the CCN to transmit control signals. If a wireless interface is defined, a dedicated channel can be allocated for the transmission of control signals.
- the CCN may transmit control signals to the eNB, but may not transmit control signals to the UE.
- the CCN manages a plurality of small cells and can form small cell groups in cluster units.
- CCN may overhear the control signal transmitted from the eNB and the UE.
- the control signal is decoded and used as information for controlling the ICI.
- ICI Inter Cell Interference
- ICI occurs between a macro cell and a femto cell in downlink.
- the link from the macro eNB 210 to the MUE 215 and the link from the HeNB 220 to the HUE 225 are co-channel deployment, that is, the same radio resource is used. If used, ICI may occur.
- ICI occurs between a macro cell and a femto cell in uplink.
- the link from the MUE 315 to the macro eNB 310 and the link from the HUE 325 to the HeNB 320 use the same radio resource in the adjacent area, ICI may occur.
- both downlink and uplink may exist in the same time-domain, and downlink and uplink in the frequency-domain. Links can be separated.
- the link between the macro eNB and the MUE and the link between the HeNB and the HUE may exist in the same frequency resource due to the frequency reuse of the femto cell.
- co-channel interference may occur.
- FIG. 5 shows a method of controlling ICI in a HetNet system according to the present invention.
- a CCN is disposed around at least one femto cell in which ICI can occur.
- multiple femto cells may share one CCN, and the CCN may be located at the center of multiple femto cells.
- the CCN overhears the control signal transmitted from the macro eNB to the MUE and / or the uplink signal transmitted from the MUE transmitted from the MUE (S510).
- the control signal may be a signal transmitted through a physical downlink control channel (PDCCH)
- the uplink signal may be a signal transmitted through a physical uplink control channel (PUCCH) and a physical uplink shared channel (PUSCH).
- PDCCH physical downlink control channel
- PUSCH physical uplink shared channel
- the CCN performs a series of processes for controlling the ICI based on the overheated signal (S520). Detailed description of the process will be described later.
- the CCN transmits a message for controlling the ICI to the macro eNB and / or a specific HeNB (S530).
- the message may include a current channel state, information on whether a conflict occurs in the allocated resource, a command for disabling / prohibiting allocation for a specific resource, and the like.
- the message may be transmitted in a broadcast manner.
- the macro eNB and / or the HeNB Upon receiving the message for controlling the ICI, the macro eNB and / or the HeNB performs resource allocation based on the message (S540).
- the communication of the macro cell is a policy priority over the femto cell, pico cell communication or D2D communication, and generally, resource management of a small cell is more flexible and easier than resource management of a large cell. Accordingly, the CCN transmits a message for controlling ICI to the HeNB, and the HeNB receiving the message allocates resources to the HUE based on the message.
- FIG. 6 illustrates a method (adaptable fixed resource allocation) for controlling ICI in a HetNet system according to an embodiment of the present invention.
- the CCN overhears the PDCCH transmitted from the macro eNB to the MUE (S610).
- the CCN may have an ID of the corresponding MUE to decode the PDCCH, and the decoded PDCCH may be stored and recorded in a buffer.
- the CCN can control the ICI for all the MUE located in the vicinity, but can also control the ICI only for a specific MUE. That is, the CCN may determine a MUE requiring ICI control in a MUE located nearby and control ICI only for the corresponding MUE. For example, the CCN may overhear an uplink signal of the MUE and determine whether to perform ICI control on the corresponding MUE. If the ICI control is necessary MUE S, it defines the MUE that does not require the control by ICI T can be expressed as shown in equation (1).
- ⁇ MUE is the power of the uplink signal overheated in CCN
- ⁇ is a predetermined threshold.
- the CCN determines the corresponding MUE as a MUE S requiring ICI control.
- a large power of the uplink signal may mean that the corresponding MUE is located in close proximity to the CCN or that the channel state between the corresponding MUE and the macro eNB is not good. Accordingly, the CCN may determine whether to perform ICI control on the MUE by overhearing the uplink signal of the MUE.
- the CCN may obtain information about downlink and uplink resources allocated to the MUE through PDCCH decoding.
- the CCN determines a resource capable of generating ICI as an interference candidate resource based on the obtained information (S620). For example, a resource allocated to a MUE requiring ICI control may be determined as an interference candidate resource.
- the CCN transmits information about interference candidate resources to the macro eNB and / or the HeNB (S630). For example, the CCN may transmit the index of the interference candidate resource.
- the macro eNB receiving the information fixedly allocates resources to the corresponding MUE. However, the macro eNB newly performs resource allocation of the corresponding MUE in the following cases.
- the macro eNB may dynamically perform resource allocation according to scheduling such as Round Robin (RR) and Proportional Fairness (PF).
- RR Round Robin
- PF Proportional Fairness
- the CCN repeats the above-described process and continuously updates information on resources for which ICI can occur. If there is a change in the resource allocated to the MUE requiring ICI control, the CCN may inform the macro eNB and / or the HeNB of the change.
- FIG. 7 is an example illustrating a signal flow for each entity in the embodiment of FIG. 6.
- the CCN overhears the PDCCH transmitted from the macro eNB to the MUE (S710).
- the CCN decodes the PDCCH to obtain information about a resource allocated to the MUE, and generates an interference control message based on the obtained information (S720).
- the interference control message may include a current channel state, information on whether a conflict occurs in an allocated resource, a command for allocating / prohibiting allocation for a specific resource, information on a resource in which ICI may occur, and the like.
- CCN transmits the interference control message to the macro eNB and / or HeNB (S730).
- the macro eNB and / or the HeNB allocates resources based on this, and performs communication with the UE using the allocated resources (S740).
- Steps S710 to S740 are performed recursively, and details thereof are as described above with reference to FIG. 6 and will be omitted.
- resource allocation in the above-described process includes both resource allocation in downlink and uplink. That is, the adaptive fixed resource allocation method can be applied to both downlink and uplink.
- FIG. 8 illustrates a method (adaptive dynamic resource allocation) for controlling ICI in a HetNet system according to an embodiment of the present invention.
- the CCN overhears the PUCCH transmitted from the UE to the eNB and decodes the PUDCH (S810). At this time, it is preferable that overhearing for uplink such as PUCCH is performed only for MUE. In the case of HUE, it is difficult to form a link due to the distance limitation between HUE and CCN. That is, the CCN preferably overhears the PUCCH transmitted from the MUE to the macro eNB.
- the CCN can control the ICI for all the MUE located in the vicinity, but can also control the ICI only for a specific MUE.
- the CCN may determine a MUE requiring ICI control in a MUE located nearby and control ICI only for the corresponding MUE. To this end, the CCN may overhear the uplink signal of the MUE, and determine whether to perform ICI control for the corresponding MUE based on this.
- the CCN can obtain information about the channel state and the scheduling request of the downlink through PUCCH decoding.
- the CCN determines, based on the obtained information, a resource capable of generating ICI as an interference candidate resource (S820).
- a resource allocated to a MUE requiring ICI control may be determined as an interference candidate resource.
- a resource having a poor downlink channel state may be determined as an interference candidate resource.
- the CCN transmits information on interference candidate resources to the macro eNB and / or HeNB (S830). For example, the CCN may transmit the index of the interference candidate resource.
- the macro eNB receiving the information fixedly allocates a resource to the corresponding MUE, and the HeNB cannot use the resource.
- FIG. 9 is an example illustrating a signal flow for each entity in the embodiment of FIG. 8.
- the CCN overhears the PUCCH transmitted from the MUE to the macro eNB (S910).
- CCN decodes the PUCCH to obtain information about the channel state and scheduling request of the downlink, and generates an interference control message based on the obtained information (S920).
- the interference control message may include a current channel state, information on whether a conflict occurs in an allocated resource, a command for allocating / prohibiting allocation for a specific resource, information on a resource in which ICI may occur, and the like.
- CCN transmits the interference control message to the macro eNB and / or HeNB (S930).
- the macro eNB and / or the HeNB allocates resources based on this, and performs communication with the UE using the allocated resources (S940).
- Steps S910 to S950 are performed recursively, and details thereof are as described above with reference to FIG. 8 and will be omitted. Through the above-described process, downlink resources can be dynamically allocated.
- FIG. 10 illustrates dynamic resource allocation in a HetNet system according to an embodiment of the present invention.
- macro eNBs and HeNBs of the HetNet system use various scheduling methods such as RR, PF, and maximum carrier to interference and noise ratio (CINR). ) Can be assigned dynamically.
- resource blocks may be non-overlap as shown in FIG. 10.
- the CCN overhears the PDCCH transmitted from the macro eNB to the MUE and transmits interference candidate resources to the macro eNB and / or the HeNB.
- the macro eNB and / or HeNB performs resource allocation based on this.
- the macro eNB and / or HeNB performs resource allocation based on the information.
- the macro eNB may perform dynamic resource allocation including interference candidate resources
- the HeNB may perform dynamic resource allocation by excluding interference candidate resources.
- the macro eNB may fixedly allocate the interference candidate resource to the MUE where ICI may occur.
- the CCN overhears the PUCCH transmitted from the MUE to the macro eNB and transmits the interference candidate resource to the macro eNB and / or the HeNB.
- the macro eNB and / or HeNB performs resource allocation based on this.
- the macro eNB and / or HeNB performs resource allocation based on the information.
- the macro eNB may perform dynamic resource allocation including interference candidate resources
- the HeNB may perform dynamic resource allocation by excluding interference candidate resources.
- FIG. 13 shows an example of a method for controlling ICI in a HetNet system according to the present invention.
- the CCN overhears the control channel of the macro cell (S1310).
- the control channel may be a PDCCH transmitted from the macro eNB to the MUE or a PUCCH transmitted from the MUE to the macro eNB.
- the CCN determines a resource in which ICI may occur based on the control channel (S1320).
- the CCN may obtain information about downlink and uplink resources of the MUE.
- the CCN may determine a MUE in which ICI may occur through Equation 1 in the resource, and may determine a resource allocated to the MUE as an interference candidate resource.
- the CCN may obtain information about the downlink channel state of the corresponding MUE.
- the CCN may determine a resource having a poor downlink channel state as an interference candidate resource.
- CCN transmits an interference control message to the macro eNB and / or HeNB (S1330).
- the interference control message includes information on an interference candidate resource that may cause ICI, and may indicate a command to allocate / prohibit allocation of the corresponding resource.
- CCC 14 is a block diagram illustrating a cluster coordinator node (CCC) in which an embodiment of the present invention is implemented.
- CCC cluster coordinator node
- the CCN 1400 includes a processor 1410, a memory 1420, and an RF unit 1430.
- the memory 1420 is connected to the processor 1410 and stores various information for driving the processor 1410.
- the RF unit 1430 is connected to the processor 1410 and transmits and / or receives a radio signal.
- the processor 1410 implements the proposed functions, processes, and / or methods. In the embodiments of FIGS. 5 through 13, the operation of the CCN may be implemented by the processor 1410.
- the processor may include application-specific integrated circuits (ASICs), other chipsets, logic circuits, and / or data processing devices.
- the memory may include read-only memory (ROM), random access memory (RAM), flash memory, memory card, storage medium and / or other storage device.
- the RF unit may include a baseband circuit for processing a radio signal.
- the above-described technique may be implemented as a module (process, function, etc.) for performing the above-described function.
- the module may be stored in memory and executed by a processor.
- the memory may be internal or external to the processor and may be coupled to the processor by various well known means.
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Abstract
Description
Claims (12)
- 매크로 셀과 펨토 셀이 혼재되어 있는 HetNet(Heterogeneous Network) 시스템에서의 셀 간 간섭 제어 방법에 있어서,상기 매크로 셀의 제어 채널을 오버히어(overhear)하는 단계;상기 제어 채널에 기반하여 셀 간 간섭 제어의 대상이 되는 간섭 후보 자원을 결정하는 단계; 및상기 간섭 후보 자원에 관한 정보를 포함하는 간섭 제어 메시지를 전송하는 단계를 포함하는 것을 특징으로 하는 방법.
- 제 1 항에 있어서,상기 펨토 셀에 위치하는 단말들 중에서 셀 간 간섭 제어의 대상이 되는 간섭 후보 단말을 결정하는 단계를 더 포함하되,상기 간섭 후보 자원은 상기 간섭 후보 단말에 할당되는 자원인 것을 특징으로 하는 방법.
- 제 2 항에 있어서,상기 간섭 후보 단말은 상기 간섭 후보 단말로부터 전송되는 신호의 파워가 소정의 임계값보다 큰 단말인 것을 특징으로 하는 방법.
- 제 1 항에 있어서,상기 제어 채널은 매크로 기지국에서 단말로 전송되는 하향링크 제어 채널인 것을 특징으로 하는 방법.
- 제 1 항에 있어서,상기 제어 채널은 단말에서 매크로 기지국으로 전송되는 상향링크 제어 채널인 것을 특징으로 하는 방법.
- 제 5 항에 있어서,상기 간섭 후보 자원을 결정하는 단계는상기 상향링크 제어 채널을 디코딩하여 상기 단말의 하향링크 채널 상태를 확인하는 단계를 포함하되,상기 간섭 후보 자원은 상기 단말의 하향링크 채널 상태에 기반하여 결정되는 것을 특징으로 하는 방법.
- 매크로 셀과 펨토 셀이 혼재되어 있는 HetNet(Heterogeneous Network) 시스템에서의 셀 간 간섭 제어 장치에 있어서,무선 신호를 송신 및 수신하는 RF(Radio Frequency) 부; 및상기 RF부와 연결되어, 무선 인터페이스 프로토콜을 구현하는 프로세서를 포함하고, 상기 프로세서는상기 매크로 셀의 제어 채널을 오버히어(overhear)하고,상기 제어 채널에 기반하여 셀 간 간섭 제어의 대상이 되는 간섭 후보 자원을 결정하고,상기 간섭 후보 자원에 관한 정보를 포함하는 간섭 제어 메시지를 전송하는 것을 특징으로 하는 장치.
- 제 7 항에 있어서,상기 프로세서는 상기 펨토 셀에 위치하는 단말들 중에서 셀 간 간섭 제어의 대상이 되는 간섭 후보 단말을 결정하되,상기 간섭 후보 자원은 상기 간섭 후보 단말에 할당되는 자원인 것을 특징으로 하는 장치.
- 제 8 항에 있어서,상기 간섭 후보 단말은 상기 간섭 후보 단말로부터 전송되는 신호의 파워가 소정의 임계값보다 큰 단말인 것을 특징으로 하는 장치.
- 제 7 항에 있어서,상기 제어 채널은 매크로 기지국에서 단말로 전송되는 하향링크 제어 채널인 것을 특징으로 하는 장치.
- 제 7 항에 있어서,상기 제어 채널은 단말에서 매크로 기지국으로 전송되는 상향링크 제어 채널인 것을 특징으로 하는 장치.
- 제 11 항에 있어서,상기 프로세서는 상기 상향링크 제어 채널을 디코딩하여 상기 단말의 하향링크 채널 상태를 확인함으로써 상기 간섭 후보 자원을 결정하되,상기 간섭 후보 자원은 상기 단말의 하향링크 채널 상태에 기반하여 결정되는 것을 특징으로 하는 장치.
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US14/412,159 US9577777B2 (en) | 2012-07-02 | 2012-12-28 | Method and apparatus for controlling inter-cellular interference in HetNet system |
| KR1020147034868A KR102130015B1 (ko) | 2012-07-02 | 2012-12-28 | HetNet 시스템에서 셀 간 간섭을 제어하는 방법 및 장치 |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US201261666940P | 2012-07-02 | 2012-07-02 | |
| US61/666,940 | 2012-07-02 |
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| WO2014007445A1 true WO2014007445A1 (ko) | 2014-01-09 |
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| PCT/KR2012/011815 Ceased WO2014007445A1 (ko) | 2012-07-02 | 2012-12-28 | HetNet 시스템에서 셀 간 간섭을 제어하는 방법 및 장치 |
Country Status (3)
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|---|---|
| US (1) | US9577777B2 (ko) |
| KR (1) | KR102130015B1 (ko) |
| WO (1) | WO2014007445A1 (ko) |
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| US9838448B2 (en) * | 2012-12-11 | 2017-12-05 | Panasonic Corporation | Method for reducing interference caused by overlapping channels in a wireless communication system |
| EP2892296B1 (en) * | 2014-01-06 | 2017-07-26 | Fujitsu Limited | Radio resource allocation method and base station for use in cellular wireless communication systems |
Citations (3)
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| KR20110046231A (ko) * | 2009-10-28 | 2011-05-04 | 엘지전자 주식회사 | 무선통신 시스템에서 셀간 간섭을 완화하는 장치 및 방법 |
| WO2011074865A2 (ko) * | 2009-12-15 | 2011-06-23 | 엘지전자 주식회사 | 이종(heterogeneous) 셀 간에 간섭을 제거하기 위한 방법 및 장치 |
| KR20120050456A (ko) * | 2009-07-22 | 2012-05-18 | 콸콤 인코포레이티드 | 피어-투-피어 통신으로 인한 간섭의 완화를 위한 방법 및 장치 |
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| US8081999B2 (en) * | 2004-09-14 | 2011-12-20 | Nokia Corporation | Enhanced assisted cell change |
| KR100663557B1 (ko) * | 2004-11-08 | 2007-01-02 | 삼성전자주식회사 | 분산 무선 통신 시스템에서의 셀간 간섭 제거 방법 |
| BRPI0717362A2 (pt) * | 2006-10-31 | 2014-04-01 | Qualcomm Inc | Controle de potência inter-célula na presença de reuso de frequência fracionária. |
| US8554200B2 (en) * | 2008-09-12 | 2013-10-08 | Nokia Corporation | Method and apparatus for providing interference measurements for device to-device communication |
| BRPI0924403A2 (pt) * | 2009-03-17 | 2016-01-26 | Huawei Tech Co Ltd | método e aparelho para a estimativa de uma qualidade de canal de enlace descendente |
| EP2510733A4 (en) * | 2009-12-11 | 2017-05-17 | Nokia Technologies Oy | Method, apparatus and computer program product for allocating resources in wireless communication network |
| KR20120053943A (ko) * | 2010-11-18 | 2012-05-29 | (주)휴맥스 | 하향링크에서 소형 기지국에 의한 간섭 완화 방법 및 그 방법을 지원하는 기지국 및 단말 |
| US8914055B2 (en) * | 2012-03-21 | 2014-12-16 | Telefonaktiebolaget L M Ericsson (Publ) | Dynamic resource selection to reduce interference that results from direct device to device communications |
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- 2012-12-28 WO PCT/KR2012/011815 patent/WO2014007445A1/ko not_active Ceased
- 2012-12-28 KR KR1020147034868A patent/KR102130015B1/ko not_active Expired - Fee Related
- 2012-12-28 US US14/412,159 patent/US9577777B2/en not_active Expired - Fee Related
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| KR20120050456A (ko) * | 2009-07-22 | 2012-05-18 | 콸콤 인코포레이티드 | 피어-투-피어 통신으로 인한 간섭의 완화를 위한 방법 및 장치 |
| KR20110046231A (ko) * | 2009-10-28 | 2011-05-04 | 엘지전자 주식회사 | 무선통신 시스템에서 셀간 간섭을 완화하는 장치 및 방법 |
| WO2011074865A2 (ko) * | 2009-12-15 | 2011-06-23 | 엘지전자 주식회사 | 이종(heterogeneous) 셀 간에 간섭을 제거하기 위한 방법 및 장치 |
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Also Published As
| Publication number | Publication date |
|---|---|
| US20150180601A1 (en) | 2015-06-25 |
| KR20150035598A (ko) | 2015-04-06 |
| KR102130015B1 (ko) | 2020-07-03 |
| US9577777B2 (en) | 2017-02-21 |
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