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Paper Citation Record · LEDGER

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization

As of 9 August 2026, this Paper Citation Record lists 37 of 37 outbound references and 1 inbound Pith citation observation for arXiv:2606.02369.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2606.02369 v1

Coverage vector

measured 37 of 37 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-06-28T12:56:42.058925Z

measured 38 of 38 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-09T06:31:02.800959+00:00

measured 1 of 1 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-06-26T06:18:10.433337Z

measured 0 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: pith, observed 2026-07-04T12:39:49.668722Z

Reference resolution

37 of 37 outbound references displayed

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  • verified fuzzy0
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External citation measurements

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Outbound references

Observation d4dad722-eb4a-46e0-860b-e998ed1a172c · outbound

This paper cites Analog signal process- ing: A possible alternative or complement to dominantly digital radio schemes,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Analog signal process- ing: A possible alternative or complement to dominantly digital radio schemes,

Reference 1

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Observation 572a6f51-079a-4f22-a16e-d997fd7050be · outbound

This paper cites Analog computing for signal processing and communications – part I: Computing with microwave networks,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Analog computing for signal processing and communications – part I: Computing with microwave networks,

Reference 2

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Observation e60c45e0-33c4-4918-bd99-c7615599fc8c · outbound

This paper cites Analog computing for signal processing and communications – part II: Toward gigantic MIMO beamforming,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Analog computing for signal processing and communications – part II: Toward gigantic MIMO beamforming,

Reference 3

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Observation 944efd42-a8cf-4e66-8e29-e432aced7914 · outbound

This paper cites Capacity of MIMO Systems Aided by Microwave Linear Analog Computers (MiLACs).

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Capacity of MIMO Systems Aided by Microwave Linear Analog Computers (MiLACs)

Reference 4

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arxiv_id, observed 2026-07-02T00:56:25.557967Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-09T06:31:02.800959+00:00.

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Observation 3e042460-7629-4c3b-acc6-2d5ffae3769d · outbound

This paper cites Microwave linear analog computer (MiLAC)-aided multiuser MISO: Fundamental limits and beamforming design.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Microwave linear analog computer (MiLAC)-aided multiuser MISO: Fundamental limits and beamforming design

Reference 5

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arxiv_id, observed 2026-07-02T00:56:25.572922Z

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Observation 66fdb984-9432-4b36-8945-b2c10a8e73c9 · outbound

This paper cites Physics-compliant modeling and optimization of MIMO sys- tems aided by microwave linear analog computers.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Physics-compliant modeling and optimization of MIMO sys- tems aided by microwave linear analog computers

Reference 6

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Observation 63976ba0-afe3-4c82-8ba1-ddc8b9d3b590 · outbound

This paper cites Channel estimation in MIMO systems aided by microwave linear analog computers (MiLACs).

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Channel estimation in MIMO systems aided by microwave linear analog computers (MiLACs)

Reference 7

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Observation f2a78c2b-908e-4ac9-b2af-57e022b74b19 · outbound

This paper cites MIMO systems aided by microwave linear analog computers: Capacity-achieving architectures with reduced circuit complexity,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization MIMO systems aided by microwave linear analog computers: Capacity-achieving architectures with reduced circuit complexity,

Reference 8

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Observation 10ae4a37-46e2-4751-949d-a90ab95c879a · outbound

This paper cites Modeling and architecture design of reconfigurable intelligent surfaces using scattering parameter network analysis,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Modeling and architecture design of reconfigurable intelligent surfaces using scattering parameter network analysis,

Reference 9

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Observation 4883a913-9aad-4a51-b0ad-cded587f2d1c · outbound

This paper cites Reconfigurable intelligent surfaces 2.0: Beyond diagonal phase shift matrices,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Reconfigurable intelligent surfaces 2.0: Beyond diagonal phase shift matrices,

Reference 10

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Observation e2b0739b-5623-4a49-9f05-e9a06a295f59 · outbound

This paper cites A tutorial on beyond- diagonal reconfigurable intelligent surfaces: Modeling, architectures, system design and optimization, and applications,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization A tutorial on beyond- diagonal reconfigurable intelligent surfaces: Modeling, architectures, system design and optimization, and applications,

Reference 11

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Observation 314850ca-96cb-451b-b307-3838ae4f5ed9 · outbound

This paper cites Beyond-diagonal RIS in multiuser MIMO: Graph theoretic modeling and optimal architectures with low complex- ity,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Beyond-diagonal RIS in multiuser MIMO: Graph theoretic modeling and optimal architectures with low complex- ity,

Reference 12

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Observation e70eed0e-2916-47e2-966e-3b3f2bf5e38a · outbound

This paper cites Beyond-diagonal RIS architecture design and optimization under physics-consistent models,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Beyond-diagonal RIS architecture design and optimization under physics-consistent models,

Reference 13

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Observation 906587f4-6034-48ce-8417-0bc9e20cabff · outbound

This paper cites Lossy beyond diagonal reconfigurable intelligent surfaces: Modeling and optimization,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Lossy beyond diagonal reconfigurable intelligent surfaces: Modeling and optimization,

Reference 15

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Observation 0a1da9a8-28df-4904-aa22-45825da91a32 · outbound

This paper cites Quantization-Aware EE Optimization and SE-EE Tradeoff for MiLAC-Aided MU-MISO Beamforming.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Quantization-Aware EE Optimization and SE-EE Tradeoff for MiLAC-Aided MU-MISO Beamforming

Reference 16

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local_arxiv, observed 2026-07-02T00:56:25.553920Z

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No event found in the named queried sources as of 2026-08-09T06:31:02.800959+00:00.

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Observation 48b7155c-94a0-4cc0-b17c-1dbf04555df7 · outbound

This paper cites Mixed-integer nonlinear programming 2018,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Mixed-integer nonlinear programming 2018,

Reference 17

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Observation 0e490418-c80e-4f45-bfeb-bba6e9cf7bfb · outbound

This paper cites A low-overhead incorporation-extrapolation based few-shot CSI feedback framework for massive MIMO systems,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization A low-overhead incorporation-extrapolation based few-shot CSI feedback framework for massive MIMO systems,

Reference 18

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Observation 551b0d9f-d985-40a0-ac9d-0771e8d4f1bb · outbound

This paper cites Joint training scattering matrix learning and channel estimation for beyond-diagonal reconfigurable intelligent surfaces,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Joint training scattering matrix learning and channel estimation for beyond-diagonal reconfigurable intelligent surfaces,

Reference 19

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arxiv_id, observed 2026-07-02T00:56:25.577898Z

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No event found in the named queried sources as of 2026-08-09T06:31:02.800959+00:00.

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Observation 6422f42c-6849-4fb2-a3c8-a63c4f18ddfa · outbound

This paper cites Deep learning-based channel extrapolation for dual-band massive MIMO systems,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Deep learning-based channel extrapolation for dual-band massive MIMO systems,

Reference 20

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Observation 5ad2a4cf-8ce9-4563-aa29-eaaa8afce955 · outbound

This paper cites Beyond-Diagonal RIS Under Non-Idealities: Learning-Based Architecture Discovery and Optimization.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Beyond-Diagonal RIS Under Non-Idealities: Learning-Based Architecture Discovery and Optimization

Reference 21

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Observation e9e595df-9cdb-4c7f-ac7b-345f4c62cb7f · outbound

This paper cites an unresolved cited work.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Unresolved cited work

Reference 22

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Observation a2dab715-ef34-4360-a941-b14cf26a6813 · outbound

This paper cites Clerckx and C.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Clerckx and C

Reference 23

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Observation f577eade-79a9-4d0e-b398-dbc8d82252ca · outbound

This paper cites Sleep modes for enhanced battery life of 5G mobile terminals,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Sleep modes for enhanced battery life of 5G mobile terminals,

Reference 24

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Observation 1912a3d8-f2af-42fb-b2e1-3c11b0c15d45 · outbound

This paper cites Hardware-aware energy efficiency optimization in wireless communi- cations using a gearbox-PHY,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Hardware-aware energy efficiency optimization in wireless communi- cations using a gearbox-PHY,

Reference 25

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Observation c3264743-8260-429e-97b2-675ea14763b9 · outbound

This paper cites Millimeter wave receiver efficiency: A comprehensive comparison of beamforming schemes with low resolution adcs,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Millimeter wave receiver efficiency: A comprehensive comparison of beamforming schemes with low resolution adcs,

Reference 26

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Observation 31593a03-6be9-47b9-a912-67b348947b9c · outbound

This paper cites Mixed-ADC/DAC multipair massive MIMO relaying systems: Performance analysis and power optimization,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Mixed-ADC/DAC multipair massive MIMO relaying systems: Performance analysis and power optimization,

Reference 27

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Observation f7b864c3-942b-4fd1-99c5-222096a2c678 · outbound

This paper cites Estimating or Propagating Gradients Through Stochastic Neurons for Conditional Computation.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Estimating or Propagating Gradients Through Stochastic Neurons for Conditional Computation

Reference 28

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No event found in the named queried sources as of 2026-08-09T06:31:02.800959+00:00.

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Observation 99355a38-55f4-4a5d-a4bd-e3322a302a0c · outbound

This paper cites Deep residual learning for image recognition,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Deep residual learning for image recognition,

Reference 29

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Reference 30

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No event found in the named queried sources as of 2026-08-09T06:31:02.800959+00:00.

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Observation 6620715d-80cb-40c1-806e-42fa0635a4a9 · outbound

This paper cites Deep learning-based power allocation for cell-free massive MIMO networks with adaptive access point power control,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Deep learning-based power allocation for cell-free massive MIMO networks with adaptive access point power control,

Reference 31

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Observation fbebd06c-e540-4afd-868c-544b1d06092c · outbound

This paper cites Deep learning-based power allocation in massive MIMO systems with SLNR and SINR criterions,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Deep learning-based power allocation in massive MIMO systems with SLNR and SINR criterions,

Reference 32

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Observation 3a70d896-13e4-409e-98bd-34d6eeafb736 · outbound

This paper cites Deep learning power allocation in massive MIMO,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Deep learning power allocation in massive MIMO,

Reference 33

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Observation 20dbbced-4162-407f-99b4-c430a8fb70c9 · outbound

This paper cites Shortcut learning in deep neural networks,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Shortcut learning in deep neural networks,

Reference 34

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Observation 222298f5-4b96-47b2-9de0-6cf1b66b0e17 · outbound

This paper cites A 7.5-GS/s 3.8-ENOB 52-mW flash ADC with clock duty cycle control in 65nm CMOS,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization A 7.5-GS/s 3.8-ENOB 52-mW flash ADC with clock duty cycle control in 65nm CMOS,

Reference 35

Resolution
unresolved
no resolver link, observed 2026-06-28T12:56:42.058925Z

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source=pdf_text observed=2026-06-28T12:56:42.058925Z digest=sha256:9404603fdf833584942aa1644a9283c9079b1909d818292de0e05cc81be4bfd5

Observation ce616141-0561-42b2-8209-6724f2095353 · outbound

This paper cites Modeling and minimization of transceiver power consumption in wireless networks,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Modeling and minimization of transceiver power consumption in wireless networks,

Reference 36

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unresolved
no resolver link, observed 2026-06-28T12:56:42.058925Z

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source=pdf_text observed=2026-06-28T12:56:42.058925Z digest=sha256:6cdb338e3d869cf9f1a15bc12927bc66c271b4f4c5ca230f239e2c74952193bc

Observation cc6d513c-2fb4-4410-86ee-0f4bd052978d · outbound

This paper cites Reconfigurable intelligent surface: Power consumption modeling and practical measurement validation,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization Reconfigurable intelligent surface: Power consumption modeling and practical measurement validation,

Reference 37

Resolution
unresolved
no resolver link, observed 2026-06-28T12:56:42.058925Z

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source=pdf_text observed=2026-06-28T12:56:42.058925Z digest=sha256:c85a999375d92454663c4e9ea434f39799d9543ef646e89233e0846adfdd3fab

Observation bcf8270f-edfc-4543-818b-acdd01a5808b · outbound

This paper cites PyTorch: An imperative style, high- performance deep learning library,.

Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization PyTorch: An imperative style, high- performance deep learning library,

Reference 38

Resolution
unresolved
no resolver link, observed 2026-06-28T12:56:42.058925Z

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source=pdf_text observed=2026-06-28T12:56:42.058925Z digest=sha256:a8c0da7435c8492acdb63d9fceb28c1d1bd76e0796004878ad67baee569d3548

Pith citing papers

Observation e2279a2a-011b-4763-b746-72dd965ab9e0 · inbound

How Many RF Chains Does a Microwave Linear Analog Computer (MiLAC) Need to Match the Fully-Digital Cram\'er-Rao Bound? cites this paper.

How Many RF Chains Does a Microwave Linear Analog Computer (MiLAC) Need to Match the Fully-Digital Cram\'er-Rao Bound? Lossy Microwave Linear Analog Computer (MiLAC) for Future MIMO: Learning-based Architecture Designs for Spectral and Energy Efficiency Maximization

Reference 31

Resolution
verified exact
local_arxiv, observed 2026-07-04T12:39:49.670099Z

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No event found in the named queried sources as of 2026-08-09T06:31:02.800959+00:00.

source=pdf_text observed=2026-06-26T06:18:10.433337Z digest=sha256:00b02d3ed270a33daf7e2d379964e2259fdc53bbeb70ebf1e7052c028ae2ecda