WIRELESS COMMUNICATION SYSTEMS COEXISTENCE
20170331758 · 2017-11-16
Inventors
Cpc classification
H04L47/58
ELECTRICITY
H04W16/14
ELECTRICITY
International classification
Abstract
One or more wireless communication systems may coexist at about the same geographical location and be configured to access the same radio channel. The coexistence of these systems may cause collisions and degrade throughput. Although countermeasures, such as reserving airtime with a resource assignment, may be taken to avoid collisions, these countermeasures are degrading throughput as well. The reserved airtime is reduced by adding a start time to the resource assignment. The reduced airtime may be used by others for performing a transmission, thus increasing the throughput and efficiency of the access to the radio channel.
Claims
1. Communication arrangement comprising a first wireless communication system configured for accessing a radio channel and a second wireless communication system configured for accessing the radio channel; wherein the first wireless communication system comprises: wireless user equipment comprising a reservation request unit configured for transmitting a resource request message for reserving access to the radio channel; and a wireless access node comprising a scheduler configured for receiving the resource request message and upon receiving, generating and providing a resource assignment for reserving access time for the wireless user equipment to access the radio channel; wherein the second wireless communication system comprises a wireless station comprising a reservation handling unit configured for obtaining the resource assignment from the wireless access node and for preventing the wireless station from accessing the radio channel during the access time of the resource assignment; and wherein the resource assignment comprises a start time for indicating a start of the access time of the resource assignment for allowing the wireless station access to the radio channel until the start time.
2. Communication arrangement according to claim 1, wherein the resource assignment also comprises an end time for indicating an end of the access time of the resource assignment.
3. Communication arrangement according to claim 1, wherein the scheduler is further configured for composing a resource assignment message, which is transmitted to the wireless user equipment, the resource assignment message comprising the resource assignment.
4. Communication arrangement according to claim 1, wherein the first and the second wireless communication system adhere to a different radio access technology.
5. Communication arrangement according to claim 1, wherein the first wireless communication system is configured to operate according to an LTE standard, such as according to an LTE-LAA standard and/or an LTE-U standard, and wherein the resource assignment is configured for providing access to the radio channel for an up-link transmission.
6. Wireless station configured for use in a communication arrangement, the communication arrangement comprising a first wireless communication system configured for accessing a radio channel and a second wireless communication system configured for accessing the radio channel; wherein the first wireless communication system comprises: wireless user equipment comprising a reservation request unit configured for transmitting a resource request message for reserving access to the radio channel; and a wireless access node comprising a scheduler configured for receiving the resource request message and upon receiving, generating and providing a resource assignment for reserving access time for the wireless user equipment to access the radio channel; wherein the second wireless communication system comprises the wireless station comprising a reservation handling unit configured for obtaining the resource assignment from the wireless access node and for preventing the wireless station from accessing the radio channel during the access time of the resource assignment; and wherein the resource assignment comprises a start time for indicating a start of the access time of the resource assignment for allowing the wireless station access to the radio channel until the start time.
7. Wireless station according to claim 6, wherein the reservation handling unit is further configured for, upon obtaining the resource assignment, wirelessly broadcasting an assignment publication message comprising the resource assignment for preventing other wireless stations of the second wireless communication system located within the radio range from accessing the radio channel during the access time of the resource assignment.
8. Wireless station according to claim 6, wherein the second wireless communication system is configured to operate according to an IEEE802.11 standard and the wireless station is an IEEE802.11 access point or IEEE802.11 client.
9. Wireless station according to claim 7, wherein the second wireless communication system is configured to operate according to an IEEE802.11 standard and the wireless station is an IEEE802.11 access point or IEEE802.11 client; and the assignment publication message is a clear to send message according to an IEEE802.11 standard, which is extended for incorporating the start time or a request to send message according to an IEEE802.11 standard, which is extended for incorporating the start time.
10. Wireless user equipment configured for use in a communication arrangement, the communication arrangement comprising a first wireless communication system configured for accessing a radio channel and a second wireless communication system configured for accessing the radio channel; wherein the first wireless communication system comprises: the wireless user equipment comprising a reservation request unit configured for transmitting a resource request message for reserving access to the radio channel; and a wireless access node comprising a scheduler configured for receiving the resource request message and upon receiving, generating and providing a resource assignment for reserving access time for the wireless user equipment to access the radio channel; wherein the second wireless communication system comprises a wireless station comprising a reservation handling unit configured for obtaining the resource assignment from the wireless access node and for preventing the wireless station from accessing the radio channel during the access time of the resource assignment; wherein the resource assignment comprises a start time for indicating a start of the access time of the resource assignment for allowing the wireless station access to the radio channel until the start time; and wherein the wireless user equipment comprises the wireless station.
11. Wireless user equipment according to claim 10, configured to operate according to an LTE standard, such as according to an LTE-LAA standard and/or an LTE-U standard, the wireless user equipment being a user equipment (UE).
12. Wireless access node configured for use in a communication arrangement, the communication arrangement comprising a first wireless communication system configured for accessing a radio channel and a second wireless communication system configured for accessing the radio channel; wherein the first wireless communication system comprises: wireless user equipment comprising a reservation request unit configured for transmitting a resource request message for reserving access to the radio channel; and the wireless access node comprising a scheduler configured for receiving the resource request message and upon receiving, generating and providing a resource assignment for reserving access time for the wireless user equipment to access the radio channel; wherein the second wireless communication system comprises a wireless station comprising a reservation handling unit configured for obtaining the resource assignment from the wireless access node and for preventing the wireless station from accessing the radio channel during the access time of the resource assignment; wherein the resource assignment comprises a start time for indicating a start of the access time of the resource assignment for allowing the wireless station access to the radio channel until the start time, wherein the wireless access node comprises the wireless station.
13. Wireless access node according claim 12, configured to operate according to an LTE standard, such as according to an LTE-LAA standard and/or an LTE-U standard, and being an E-UTRAN Node B or Evolved Node B (eNB).
14. Method for operating a wireless station for a communication arrangement, the communication arrangement comprising a first wireless communication system configured for accessing a radio channel and a second wireless communication system configured for accessing the radio channel; wherein the first wireless communication system comprises: wireless user equipment comprising a reservation request unit configured for transmitting a resource request message for reserving access to the radio channel; and a wireless access node comprising a scheduler configured for receiving the resource request message and upon receiving, generating and providing a resource assignment for reserving access time for the wireless user equipment to access the radio channel; wherein the second wireless communication system comprises the wireless station comprising a reservation handling unit configured for obtaining the resource assignment from the wireless access node and for preventing the wireless station from accessing the radio channel during the access time of the resource assignment; wherein the resource assignment comprises a start time for indicating a start of the access time of the resource assignment for allowing the wireless station access to the radio channel until the start time; and wherein the method comprises the steps of: obtaining the resource assignment from the wireless access node; and preventing the wireless station from accessing the radio channel during the access time of the resource assignment.
15. Method for operating wireless user equipment for a communication arrangement, the communication arrangement comprising a first wireless communication system configured for accessing a radio channel and a second wireless communication system configured for accessing the radio channel; wherein the first wireless communication system comprises: the wireless user equipment comprising a reservation request unit configured for transmitting a resource request message for reserving access to the radio channel; and a wireless access node comprising a scheduler configured for receiving the resource request message and upon receiving, generating and providing a resource assignment for reserving access time for the wireless user equipment to access the radio channel; wherein the second wireless communication system comprises a wireless station comprising a reservation handling unit configured for obtaining the resource assignment from the wireless access node and for preventing the wireless station from accessing the radio channel during the access time of the resource assignment; wherein the resource assignment comprises a start time for indicating a start of the access time of the resource assignment for allowing the wireless station access to the radio channel until the start time; and wherein the method comprises the steps of: transmitting the resource request message for reserving access to the radio channel; obtaining the resource assignment from the wireless access node; and preventing the wireless station from accessing the radio channel during the access time of the resource assignment.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0040] These and other aspects of the invention will be apparent from and elucidated further with reference to the embodiments described by way of example in the following description and with reference to the accompanying drawings, in which:
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[0050] The figures are purely diagrammatic and not drawn to scale. In the Figures, elements which correspond to elements already described may have the same reference numerals.
DETAILED DESCRIPTION
[0051] A description of example embodiments of the invention follows.
[0052]
[0053] The communication arrangement comprises a first wireless communication system 201 and a second wireless communication system 202. The first wireless communication system comprises wireless user equipment 105 and a wireless access node 106. The first wireless communication system may adhere to a first radio access technology or standard. The second wireless communication system may adhere to a second radio access technology or standard. The first wireless communication system may be a centrally organised wireless communication system. The wireless access node may control the wireless transmissions for this wireless communication system. The wireless user equipment and the wireless access node may communicate wirelessly with each other. The wireless user equipment may adhere to the transmission control of the wireless access node. The wireless user equipment and the wireless access node have both a radio range. The radio range may be defined as the range in which a transmission of the transmitting device can be correctly received. The radio ranges of the wireless user equipment and the wireless access node have to respectively comprise the location of the wireless access node and the location of the wireless user equipment to be able to wirelessly communicate with each other.
[0054] The second wireless communication system comprises a wireless station 107. The second wireless communication system may be a centrally controlled wireless communication system, a distributed controlled wireless communication system or ad hoc controlled wireless communication system. The wireless access node and the wireless station may communicate with each other either via a wired or wireless link. The wireless station has a radio range. The radio range may also be defined as the range in which a transmission corrupts a reception of another transmission. The radio range of the wireless station has to overlap with at least the radio range of the wireless user equipment and/or wireless access node. Typically, the wireless station 107 has a radio range covering at least a location of the wireless user equipment 105 or a location of the wireless access node 106.
[0055] The wireless user equipment may have data for transmission to the wireless access node. The wireless user equipment may expect to receive data, which needs to be transmitted to the wireless access node. The wireless user equipment may expect to receive data at regular intervals, which data may need to be transmitted to the wireless access node at regular intervals. The wireless user equipment starts the process for reserving access time by composing a reservation request message 109. The reservation request message is transmitted to the wireless access node and provided to a scheduler for scheduling 111. The wireless access node transmits, after scheduling, a resource assignment message 112 to the wireless user equipment. The resource assignment message may comprise a resource assignment. The resource assignment may comprise a start time 135 and an end time 136. The start time may indicate a start of the reserved access time. The end time may indicate an end of the reserved access time. The start time and the end time together may specify a duration 131 of the reserved access time. The wireless user equipment may process the resource assignment. The wireless user equipment may wait 114 after processing for the resource assignment to occur in time. During the wait the wireless user equipment may perform other tasks. During the access time, the wireless user equipment processes 115 the data to prepare the data for transmission to the wireless access node. During the access time one or more data messages 116, 116′ may be transmitted to the wireless access node, which may process the received data messages.
[0056] Around the moment in time of the transmission of the resource assignment message 112 the scheduler may also transmit a reservation message to the wireless station. The transmission of the reservation message to the wireless station may be before or after the transmission of the resource assignment message. The transmission of the reservation message to the wireless station has to be at least before the start of the start time in the resource assignment. The transmission of the reservation message may be via a wired or wireless link or a combination of wired and wireless links. The transmission of the reservation message may be via Ethernet, WiFi or any other suitable communication standard. In the case that the wireless access node comprises the wireless station, the transmission of the reservation message may also be done via an internal bus or memory copy.
[0057] The wireless station may, upon receiving and/or obtaining the reservation message, process 121 the reservation message. After processing the wireless station may broadcast an assignment publication message 122. The broadcast assignment publication message may notify every other wireless station of the second wireless communication system located within radio range of the wireless station of an upcoming transmission. The other wireless stations as well as the wireless station can now refrain from accessing the radio channel during the access time of the resource assignment. All wireless stations not accessing the radio channel during the access time of the resource assignment may prevent thereby collisions between transmissions. Corrupted transmissions effectively may cause loss of data and decreased efficiency of the radio channel and may cause retransmissions.
[0058] The assignment publication message may comprise the resource assignment. The resource assignment, received by the wireless station, may comprises the start time 135 and the duration 131. The resource assignment, received by the wireless station, may comprises the start time 135 and the end time 136.
[0059] The resource assignment according to the invention allows the wireless station of the second wireless communication system access to the radio channel until the start time of the reserved access time by the wireless user equipment. Hence the time until the start of the reserved access time may be labelled freed time 132. The freed time may be available for access to the radio channel by the wireless station.
[0060] The assignment publication message 122 according to the invention allows all wireless stations of the second wireless communication system access to the radio channel during the time until the start of the access time reserved by the wireless user equipment. Hence the time until the start of the reserved access time may be labelled freed time 132. The freed time may be available for access to the radio channel by the second wireless communication system.
[0061] The radio channel assignment of the first radio access technology may be the same as the radio channel assignment of the second radio access technology, such as wherein the first and second radio access technology operate according to the LTE standard. The radio channel assignment of the first radio access technology may be different from the radio channel assignment of the second radio access technology, such as wherein the first radio access technology operates according to the LTE standard and the second radio access technology operates according to the IEEE802.11 standard. A radio channel of the second radio access technology may overlap with a radio channel of the first radio access technology. Thus to prevent collisions between transmissions of the first and second radio access technology, a resource assignment may prevent a wireless station belonging to the second radio access technology from accessing the one or more radio channels of the first radio access technology. Thus to prevent collisions between transmissions of the first and second radio access technology, a resource assignment may be broadcasted on one or more radio channels of the second radio access technology. Even if radio channels of the first and second radio technology may not overlap but are in close proximity, interference and thus corruption of transmissions may occur. This interference may come forth from the side lobs of the transmission in a radio channel according to a radio access technology. The wireless station may also refrain from accessing a radio channel of the second radio access technology, which radio channel is in such close proximity of the radio channel of the first radio access technology for which the resource assignment is made that interference may take place. The wireless station may also broadcast the assignment publication message in a radio channel of the second radio access technology, which radio channel is in such close proximity of the radio channel of the first radio access technology for which the resource assignment is made that interference may take place.
[0062]
[0063] The wireless user equipment comprises a reservation request unit 209, a resource assignment processing unit 213 and a data transmit unit 215. The reservation request unit starts the process for reserving access time by composing a reservation request message 109. The reservation request unit further transmits the reservation request message to the wireless access node. The resource assignment processing unit receives a resource assignment message 112 comprising a resource assignment. The resource assignment processing unit may, according to the resource assignment, handle set timers for later in time triggering the data transmit unit for transmission. The data transmit unit composes data messages 116, 116′ for transmission to the wireless access node. The wireless access node processes 117, 117′ the received data messages.
[0064] In the embodiment shown, the wireless access node comprises a scheduler 211. The scheduler receives the reservation request message 109 and processes the reservation request message. The scheduler may assign a radio channel for a certain time or a reserved access time for one or more transmissions of the wireless user equipment. The reserved access time may be communicated as a resource assignment. The resource assignment may be specified by a start time 135 and an end time 136. The scheduler may further compose the resource assignment message 112 and may transmit the resource assignment message to the wireless user equipment. The scheduler may further transmit the resource assignment in a reservation message 120 to the wireless station.
[0065] The wireless station of the second wireless communication system comprises a reservation handling unit 221. The reservation handling unit receives the reservation message for handling 121 the reservation message. The reservation handling unit may, optionally, as part of the processing, compose a broadcast assignment publication message 122. The broadcast assignment publication message is broadcasted over the radio channel of the second wireless communication system, which radio channel has an overlap or is in close proximity of the radio channel of the first wireless communication system. The broadcast assignment publication message may also be a unicast message to at least one other wireless station, multiple unicast messages to other wireless stations or multiple unicast messages to all other wireless station located within radio range of the wireless station.
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[0067] The wireless user equipment further comprises a wireless station 107. The wireless station of a second wireless communication system comprises a reservation handling unit 221. The different units 209, 213, 215 and 221 may have the same behaviour as described above. The reservation handling unit may receive the resource assignment through the reception of the reservation message 120, as described above. Alternatively the reservation handling unit may receive the resource assignment from the resource assignment processing unit 213. This provides the advantage of reducing the amount of wireless transmissions. The wireless station may use the antenna 205 of the wireless user equipment.
[0068] For example, if the first radio access technology is LTE enabled for the ISM band and the second radio access technology is WiFi for the ISM band, then an example of a combination is a WiFi enabled mobile phone or smartphone.
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[0070] The wireless access node further comprises a wireless station 107. The wireless station of a second wireless communication system comprises a reservation handling unit 221. The different units 211 and 221 may have the same behaviour as described above. The wireless station may use the antenna 205′ of the wireless access node.
[0071] For example, if the first radio access technology is LTE enabled for the ISM band and the second radio access technology is WiFi for the ISM band, then an example of a combination is a PCell of an LTE enabled network comprising a WiFi interface or an SCell of an LTE enabled network comprising a WiFi interface. PCell is an abbreviation of primary cell, which serves at least the purpose of anchoring the UE to the network by establishing and maintaining a radio resource control (RRC) connection and transmitting signalling information. SCell is an abbreviation of secondary cell, which is used for transmission of downlink and uplink data.
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[0073] The auxiliary wireless access node or S-cell may be an auxiliary transmitter for transmitting in the unlicensed spectrum, such as the ISM band. The auxiliary wireless access node and the wireless access node may communicate with each other via an X2 interface 230 or any other suitable interface. The auxiliary wireless access node may be at the same physical position of the wireless access node or may be placed at a distance. Multiple auxiliary wireless access nodes may provide access to the unlicensed spectrum per wireless access node. The radio ranges of the wireless access node and the auxiliary wireless access node may be different. A resource request 110 transmitted to the wireless access node may be for reserving resources at the auxiliary wireless access node. The auxiliary wireless access node or S-cell may use the unlicensed spectrum to communicate 232 according to the LTE-U standard with the wireless user equipment. The resource assignment may be for the unlicensed LTE standard communication.
[0074] The second wireless communication system comprises a first wireless station 107 and a third wireless station 107. The first and third wireless station may communicate 233 using the WiFi standard in the unlicensed spectrum, such as the ISM band.
[0075] In the case that the scheduler of the wireless access node provides a resource assignment to the wireless user equipment, the scheduler may also provide the resource assignment to the first and/or third wireless stations via a suitable communication standard. The suitable communication standard may be wired and/or wireless.
[0076] While the wireless access node assigns a channel of the first wireless communication system, the first and third wireless station should refrain from accessing the same radio channel to prevent collisions of transmissions or an adjacent radio channel to prevent interference of transmissions. For example, if only the first wireless station receives the resource assignment from the wireless access node via a reservation message 120, then the resource assignment may be broadcasted in an assignment publication message 122 for preventing the third wireless station as well as the first wireless station to transmit during the access time of the resource assignment.
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[0078] The method starts with transmitting 123 the reservation request message 110. The transmitted reservation request message may comprise a request for reserving access to a radio channel of a first wireless communication system. The reservation request message may comprise a requested end time for requesting an end time of the reserved access. The reservation request message may comprise a requested start time for requesting a start time of the reserved access. The reservation request message may comprise a requested duration for requesting a duration of the reserved access.
[0079] After transmitting the method continues with the step of receiving and/or obtaining 126 the resource assignment message 112 from a wireless access node. The resource assignment message may comprise a resource assignment. The resource assignment may internally be provided to the wireless station by the wireless user equipment. Alternatively the method may continue with the step of receiving and/or obtaining 125 a reservation message by the wireless station.
[0080] After receiving and/or obtaining, the method continues with the step of preventing 128 access of the wireless station to the radio channel during the access time of the resource assignment.
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[0082] The method starts with receiving and/or obtaining 125 the resource assignment from the wireless access node. The resource assignment may be transmitted to the wireless station via a reservation message 120.
[0083] After receiving and/or obtaining, the method may continue with the optional step of wirelessly broadcasting 127 an assignment publication message 122 comprising the resource assignment. Other wireless stations located within radio range of the wireless station may receive the broadcasted assignment publication message for preventing transmissions of the other wireless stations during the time the radio channel is reserved for access for the wireless user equipment.
[0084] After the step of receiving and/or obtaining or broadcasting, the method continues with the step of preventing 128 transmissions of the wireless station during the time the radio channel is reserved for access for the wireless user equipment.
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[0087] Data processing system 60 may include at least one processor 61 coupled to memory elements 62 through a system bus 63. As such, the data processing system 60 may store program code within memory elements 62. Further, processor 61 may execute the program code accessed from memory elements 62 via system bus 63. In one aspect, data processing system 60 may be implemented as a computer that is suitable for storing and/or executing program code. It should be appreciated, however, that data processing system 60 may be implemented in the form of any system including a processor and memory that is capable of performing the functions described within this specification.
[0088] Memory elements 62 may include one or more physical memory devices such as, for example, local memory 64 and one or more bulk storage devices 65. Local memory may refer to random access memory or other non-persistent memory device(s) generally used during actual execution of the program code. A bulk storage device 65 may be implemented as a hard drive or other persistent data storage device. The data processing system 60 may also include one or more cache memories (not shown) that provide temporary storage of at least some program code in order to reduce the number of times program code must be retrieved from bulk storage device 65 during execution.
[0089] Input/output (I/O) devices depicted as input device 66 and output device 67 optionally can be coupled to the data processing system 60. Examples of input devices may include, but are not limited to, for example, a keyboard, a pointing device such as a mouse, a touchscreen, or the like. Examples of output device may include, but are not limited to, for example, a monitor or display, speakers, or the like. Input device 66 and/or output device 67 may be coupled to data processing system 60 either directly or through intervening I/O controllers. A network adapter 68 may also be coupled to data processing system 60 to enable it to become coupled to other systems, computer systems, remote network devices, and/or remote storage devices through intervening private or public networks. The network adapter 68 may comprise a data receiver for receiving data that is transmitted by said systems, devices and/or networks to said data processing system 60 and a data transmitter for transmitting data to said systems, devices and/or networks. Modems, cable modems, and Ethernet cards are examples of different types of network adapters that may be used with data processing system 60.
[0090] As pictured in
[0091] In one aspect, for example, data processing system 60 may represent a multipoint transmission control system MTC or a user device UE. In that case, application 69 may represent a client application that, when executed, configures data processing system 60 to perform the various functions described herein with reference to an MTC or a user equipment. Examples of an MTC include a base station of a telecommunications network providing cellular wireless access, e.g. a NodeB or an eNB. The user equipment can include, but is not limited to, a personal computer, a portable computer, a mobile phone, or the like.
[0092] In another aspect, data processing system 60 may represent a transmission node TN as described herein, in which case application 69, when executed, may configure data processing system 60 to perform operations as described in the present disclosure.
[0093] It is noted that the method has been described in terms of steps to be performed, but it is not to be construed that the steps described must be performed in the exact order described and/or one after another. One skilled in the art may envision to change the order of the steps and/or to perform steps in parallel to achieve equivalent technical results.
[0094] The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the singular forms “a,” “an,” and “the” are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms “comprises” and/or “comprising,” when used in this specification, specify the presence of stated features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof.
[0095] The corresponding structures, materials, acts, and equivalents of all means or step plus function elements in the claims below are intended to include any structure, material, or act for performing the function in combination with other claimed elements as specifically claimed. The description of the present invention has been presented for purposes of illustration and description, but is not intended to be exhaustive or limited to the invention in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art without departing from the scope and spirit of the invention. The embodiment was chosen and described in order to best explain the principles of the invention and the practical application, and to enable others of ordinary skill in the art to understand the invention for various embodiments with various modifications as are suited to the particular use contemplated.
[0096] Various embodiments of the invention may be implemented as a program product for use with a computer system or a processor, where the program(s) of the program product define functions of the embodiments (including the methods described herein). In one embodiment, the program(s) can be contained on a variety of non-transitory computer-readable storage media (generally referred to as “storage”), where, as used herein, the expression “non-transitory computer readable storage media” comprises all computer-readable media, with the sole exception being a transitory, propagating signal. In an-other embodiment, the program(s) can be contained on a variety of transitory computer-readable storage media. Illustrative computer-readable storage media include, but are not limited to: (i) non-writable storage media (e.g., read-only memory devices within a computer such as CD-ROM disks readable by a CD-ROM drive, ROM chips or any type of solid-state non-volatile semiconductor memory) on which information is permanently stored; and (ii) writable storage media (e.g., flash memory, floppy disks within a diskette drive or hard disk drive or any type of solid-state random-access semiconductor memory) on which alterable information is stored.
TABLE-US-00002 Reference list 60 data processing system 61 processor 62 memory elements 63 system bus 64 local memory 65 storage devices 66 input device 67 output device 68 network adapter 69 application 100 sequence diagram 105 wireless user equipment 106 wireless access node 107 wireless station 108 auxiliary wireless access node 109 composing reservation request message 110 reservation request message 111 scheduling 112 resource assignment message 113 handling resource assignment message 114 wait for transmission 115 transmission processing 116, transmission data messages 116′ 117, processing received data message 117′ 120 reservation message 121 handling reservation message 122 assignment publication message 123 transmitting reservation request message 125 receiving and/or obtaining reservation message by the wireless station 126 receiving and/or obtaining resource assignment message by the wireless user equipment 127 broadcasting assignment publication message 128 preventing access 130 reserved time prior art 131 duration access time 132 freed time 135 start time 136 end time 200 communication arrangement 201 first wireless communication system 202 second wireless communication system 205, antenna 205′, 205″ 209 reservation request unit 211 scheduler 213 resource assignment processing unit 215 data transmit unit 221 reservation handling unit 230 X2 interface 231 LTE licensed communication 232 LTE unlicensed communication 233 WiFi communication 400 computer program product 410 writable part 420 computer program
[0097] While this invention has been particularly shown and described with references to example embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the scope of the invention encompassed by the appended claims.