RU2019118801A - Сетевая архитектура, способы и устройства для сети беспроводной связи - Google Patents
Сетевая архитектура, способы и устройства для сети беспроводной связи Download PDFInfo
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- RU2019118801A RU2019118801A RU2019118801A RU2019118801A RU2019118801A RU 2019118801 A RU2019118801 A RU 2019118801A RU 2019118801 A RU2019118801 A RU 2019118801A RU 2019118801 A RU2019118801 A RU 2019118801A RU 2019118801 A RU2019118801 A RU 2019118801A
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- H04L41/0233—Object-oriented techniques, for representation of network management data, e.g. common object request broker architecture [CORBA]
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- Y02D30/70—Reducing energy consumption in communication networks in wireless communication networks
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Claims (37)
1. Способ, в пользовательском оборудовании (UE), имеющем множество антенн, приспособленных для формирования диаграммы направленности, для работы в сети беспроводной связи, причем способ содержит этапы, на которых:
определяют, на основе одного или более из оценочных потерь на трассе, оценочного оставшегося срока службы батареи для UE и потребления ресурса батареи для UE, следует ли увеличить или уменьшить количество антенн, используемых для формирования диаграммы направленности; и
увеличивают или уменьшают число антенн, используемых в формировании диаграммы направленности, для одной или более последующих операций передачи или приема,
при этом способ дополнительно содержит этапы, на которых:
принимают, в первом подкадре нисходящей линии связи, первую передачу с мультиплексированием с ортогональным частотным разделением каналов (OFDM), отформатированную в соответствии с первой нумерологией, и
принимают, во втором подкадре нисходящей линии связи, вторую передачу OFDM, отформатированную в соответствии со второй нумерологией, причем вторая нумерология отличается от первой нумерологии
2. Способ по п. 1, в котором упомянутое определение дополнительно основывается на желательной скорости передачи данных.
3. Способ по п. 1, в котором упомянутое определение дополнительно основывается на желательной минимальной ширине полосы.
4. Способ по п. 1, дополнительно содержащий этапы, на которых:
принимают сигнал нисходящей линии связи, содержащий индекс конфигурации доступа к восходящей линии связи;
используют индекс конфигурации доступа к восходящей линии связи для идентификации конфигурации доступа к восходящей линии связи среди заранее определенного множества конфигураций доступа к восходящей линии связи; и
осуществляют передачу в сеть беспроводной связи в соответствии с идентифицированной конфигурацией доступа к восходящей линии связи.
5. Способ по п. 1, в котором первая нумерология имеет первый шаг поднесущей, а вторая нумерология имеет второй шаг поднесущей, причем первый шаг поднесущей отличается от второго шага поднесущей.
6. Способ по п. 1, в котором первый и второй подкадры нисходящей линии связи принимаются на одной и той же несущей частоте.
7. Способ по п. 1, в котором подкадры первой и второй нумерологий содержат первое и второе заранее определенные количества символов OFDM, соответственно.
8. Способ по п. 1, в котором по меньшей мере одна из первой и второй нумерологий содержит подкадры, имеющие длительность 250 микросекунд или менее.
9. Способ по п. 1, дополнительно содержащий этапы, на которых:
принимают и обрабатывают первые данные Уровня 2 на первом физическом канале данных, каковые прием и обработка первых данных Уровня 2 содержат использование мягкого объединения HARQ; и
принимают и обрабатывают вторые данные Уровня 2 на втором физическом канале данных, каковые прием и обработка вторых данных Уровня 2 не содержат мягкого объединения HARQ.
10. Беспроводное устройство, содержащее радиочастотную схему и множество антенн, приспособленных для формирования диаграммы направленности, и дополнительно содержащее схему обработки, соединенную, с возможностью взаимодействия, с радиочастотной схемой и выполненную с возможностью:
определять, на основе одного или более из оценочных потерь на трассе, оценочного оставшегося срока службы батареи для беспроводного устройства и потребления ресурса батареи для беспроводного устройства, следует ли увеличить или уменьшить количество антенн, используемых для формирования диаграммы направленности;
увеличивать или уменьшать число антенн, используемых в формировании диаграммы направленности, для одной или более последующих операций передачи или приема,
принимать, в первом подкадре нисходящей линии связи, первую передачу с мультиплексированием с ортогональным частотным разделением каналов (OFDM), отформатированную в соответствии с первой нумерологией; и
принимать, во втором подкадре нисходящей линии связи, вторую передачу OFDM, отформатированную в соответствии со второй нумерологией, причем вторая нумерология отличается от первой нумерологии
11. Беспроводное устройство по п. 10, в котором схема обработки выполнена с возможностью определять, следует ли увеличить или уменьшить количество антенн, используемых для формирования диаграммы направленности, на основе желательной скорости передачи данных.
12. Беспроводное устройство по п. 10, в котором схема обработки выполнена с возможностью определять, следует ли увеличить или уменьшить количество антенн, используемых для формирования диаграммы направленности, на основе желательной минимальной ширине полосы.
13. Беспроводное устройство по п. 10, в котором схема обработки дополнительно выполнена с возможностью:
принимать сигнал нисходящей линии связи, содержащий индекс конфигурации доступа к восходящей линии связи;
использовать индекс конфигурации доступа к восходящей линии связи для идентификации конфигурации доступа к восходящей линии связи среди заранее определенного множества конфигураций доступа к восходящей линии связи; и
осуществлять передачу в сеть беспроводной связи в соответствии с идентифицированной конфигурацией доступа к восходящей линии связи.
14. Беспроводное устройство по п. 10, при этом первая нумерология имеет первый шаг поднесущей, а вторая нумерология имеет второй шаг поднесущей, причем первый шаг поднесущей отличается от второго шага поднесущей.
15. Беспроводное устройство по п. 10, при этом первый и второй подкадры нисходящей линии связи принимаются на одной и той же несущей частоте.
16. Беспроводное устройство по п. 10, при этом подкадры первой и второй нумерологий содержат первое и второе заранее определенные количества символов OFDM, соответственно.
17. Беспроводное устройство по п. 10, при этом по меньшей мере одна из первой и второй нумерологий содержит подкадры, имеющие длительность 250 микросекунд или менее.
18. Беспроводное устройство по п. 10, в котором схема обработки дополнительно выполнена с возможностью:
принимать и обрабатывать первые данные Уровня 2 на первом физическом канале данных, каковые прием и обработка первых данных Уровня 2 содержат использование мягкого объединения HARQ; и
принимать и обрабатывать вторые данные Уровня 2 на втором физическом канале данных, каковые прием и обработка вторых данных Уровня 2 не содержат мягкого объединения HARQ.
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