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full_name
large_stringlengths
16
29
orbit_condition_code
int64
0
9
n_viable_trajectories
int64
1
11M
observation_magnitude
float64
13.6
24
obs_flag
large_stringclasses
2 values
max_diameter_m
float64
1.2
5.74k
min_diameter_m
float64
0.27
1.28k
designation
large_stringlengths
4
10
min_delta_v_kms
float64
3.39
12
min_mission_duration_days
int64
18
450
(2010 PS66)
6
9,060
23.69
S
73
16
2010 PS66
10.27
210
429389 (2010 PR10)
0
10,245
23.92
362
81
429389
8.399
130
(2010 PH9)
7
5
null
37
8.3
2010 PH9
11.417
354
(2010 MB)
1
2,609
22.39
94
21
2010 MB
10.097
330
(2010 KV7)
8
24,374
null
49
11
2010 KV7
8.524
282
(2010 JK1)
2
776,043
22.87
103
23
2010 JK1
4.839
106
(2010 HA)
0
603,708
19.26
121
27
2010 HA
6.319
114
(2010 GP67)
0
685
20.47
262
59
2010 GP67
10.261
178
(2010 FY9)
7
184,326
null
32
7.1
2010 FY9
6.35
66
(2010 FV9)
2
53,031
23.21
65
14
2010 FV9
8.005
226
(2010 FM)
7
1,315
20.65
S
30
6.6
2010 FM
10.157
154
(2010 FT)
7
51,821
22.24
S
56
13
2010 FT
7.911
210
(2023 EQ)
6
196
22.04
S
92
21
2023 EQ
11.093
338
(2010 DE2)
7
36
22.55
S
34
7.6
2010 DE2
11.336
362
(2010 CP19)
8
8
null
51
11
2010 CP19
11.372
346
(2010 CJ18)
7
2,005
null
34
7.6
2010 CJ18
9.312
330
(2010 CE55)
0
20,202
21.78
282
63
2010 CE55
9.064
154
(2010 CD55)
2
111,351
23.74
166
37
2010 CD55
8.301
242
(2023 FP1)
6
283,179
22.17
S
38
8.5
2023 FP1
6.406
42
(2023 AS)
6
27,601
null
25
5.5
2023 AS
7.399
114
(2010 CB19)
7
518
23.48
S
98
22
2010 CB19
11.065
378
453563 (2010 BB)
0
7
21.84
703
157
453563
11.73
354
(2010 AR1)
7
313
23.83
54
12
2010 AR1
11.205
226
(2010 AL30)
3
1,239
22.14
28
6.3
2010 AL30
10.904
378
(2010 AN61)
6
68,320
null
31
6.9
2010 AN61
7.837
298
(2010 AF30)
0
17
22.79
351
78
2010 AF30
11.815
402
(2010 AG3)
7
1,693
null
25
5.5
2010 AG3
10.672
266
(2009 YS)
7
18,067
23.98
S
68
15
2009 YS
8.711
178
(2009 YR)
6
1,077,818
21.91
S
20
4.4
2009 YR
4.643
50
(2009 YF)
7
477,268
23.73
89
20
2009 YF
5.63
74
(2009 XZ6)
7
12,299
23.66
S
45
10
2009 XZ6
8.802
178
490581 (2009 WZ104)
0
1,519
13.94
526
118
490581
9.766
130
(2009 XP2)
6
56
null
71
16
2009 XP2
11.693
370
(2009 WW7)
7
22,093
null
13
2.9
2009 WW7
9.357
266
(2009 WV7)
7
400
23.52
S
51
11
2009 WV7
11.168
258
(2009 WR52)
6
539,192
19.77
S
17
3.8
2009 WR52
5.298
146
(2009 WM105)
6
17,334
23.69
195
44
2009 WM105
9.12
138
(2026 MC2)
6
91,389
null
17
3.8
2026 MC2
7.037
34
(2026 LB1)
5
309,789
null
8.6
1.9
2026 LB1
6.053
34
(2009 WG7)
8
19,900
23.1
S
37
8.3
2009 WG7
9.233
154
(2009 WG106)
7
2,696
22.29
S
62
14
2009 WG106
9.736
114
(2009 WF54)
9
363
23.56
S
54
12
2009 WF54
11.27
234
(2009 WD54)
8
3,593
null
16
3.5
2009 WD54
10.715
194
(2009 VT)
0
3
23.67
272
61
2009 VT
11.937
354
(2025 VE6)
6
267
null
49
11
2025 VE6
10.687
114
(2009 WC106)
8
159,378
20.49
S
62
14
2009 WC106
5.824
186
(2009 VM24)
8
655
21.43
S
35
7.8
2009 VM24
10.483
346
(2009 VS25)
6
14,162
23.2
S
103
23
2009 VS25
10.276
346
(2009 VA)
9
323
null
15
3.3
2009 VA
10.394
338
(2009 UZ87)
6
152,545
22.75
51
11
2009 UZ87
8.317
146
(2009 UY19)
2
381,362
18.63
160
36
2009 UY19
5.079
98
(2023 FS1)
6
1,261
null
72
16
2023 FS1
10.612
234
(2009 UX87)
7
2,155
22.12
S
68
15
2009 UX87
10.385
178
523632 (2009 UX17)
0
2,098
22.33
388
87
523632
10.469
338
(2009 UD2)
0
1,255
22.38
282
63
2009 UD2
10.361
218
(2009 UK20)
6
286,623
23.84
S
43
10
2009 UK20
6.347
146
(2009 UD)
5
803,316
23.4
28
6.3
2009 UD
4.673
74
(2009 UB)
9
2,968
23.59
S
62
14
2009 UB
10.222
218
(2009 TP)
6
428,390
22.18
148
33
2009 TP
6.173
162
(2009 TM8)
6
11
null
16
3.6
2009 TM8
11.888
306
(2009 TJ4)
7
80,310
20.95
S
47
10
2009 TJ4
6.843
114
(2009 TD8)
7
45,536
23.83
S
32
7.3
2009 TD8
9.323
210
(2009 TD17)
7
223,112
23.54
S
22
5
2009 TD17
6.583
162
837134 (2013 CQ35)
0
12
21.63
849
190
837134
11.485
354
(2022 WT11)
3
7,322
22.51
120
27
2022 WT11
9.608
346
(2022 WJ10)
6
1,553
null
24
5.3
2022 WJ10
11.014
338
(2007 RV12)
7
2
19.94
S
59
13
2007 RV12
11.893
394
(2009 SJ)
8
351
23.53
S
54
12
2009 SJ
10.667
338
(2009 SC170)
8
2,185
23.33
S
20
4.4
2009 SC170
10.107
162
(2009 SH1)
9
26,665
null
10
2.3
2009 SH1
8.548
202
(2009 RU1)
0
403
21.45
112
25
2009 RU1
11.484
314
(2009 RH)
8
5,922
23.7
S
135
30
2009 RH
9.022
242
(2009 QR)
7
19,630
null
26
5.8
2009 QR
8.201
74
(2009 QE34)
6
15,533
22.99
148
33
2009 QE34
9.977
210
(2022 YJ4)
7
48,997
21.3
S
31
7
2022 YJ4
7.866
146
(2009 PD)
8
22,125
23.34
S
112
25
2009 PD
8.469
194
(2009 OS5)
0
410,475
22.28
103
23
2009 OS5
6.078
42
(2009 KR4)
8
327
22.95
S
78
17
2009 KR4
10.569
146
(2008 YV32)
7
111
20.55
S
43
10
2008 YV32
11.407
282
(2016 DZ21)
7
684
null
65
14
2016 DZ21
11.18
322
(2009 HG)
0
1,152
23.39
105
24
2009 HG
11.083
298
(2009 HC)
0
1,001,682
23.94
91
20
2009 HC
4.44
66
(2025 QB5)
6
719
null
57
13
2025 QB5
10.205
98
(2009 FX4)
7
19,477
19.35
S
65
14
2009 FX4
9.479
234
(2009 FK)
7
29
23.38
S
17
3.8
2009 FK
11.877
210
(2009 ET)
9
730
null
27
6
2009 ET
11.07
186
(2009 FE19)
7
28
null
32
7.3
2009 FE19
11.521
346
465617 (2009 EK1)
0
157
20.86
416
93
465617
10.244
330
(2009 EH1)
8
483
null
22
4.9
2009 EH1
10.365
362
457663 (2009 DN1)
0
67
20.23
684
153
457663
11.413
170
(2009 DC45)
8
21
null
23
5.3
2009 DC45
11.711
354
(2009 DC1)
6
1,871
23.99
123
28
2009 DC1
11.214
330
(2009 CV)
0
487,542
19.05
108
24
2009 CV
5.949
50
(2009 CE)
1
6,973
23.07
107
24
2009 CE
9.934
154
(2009 BW2)
2
1,105,655
23.25
74
17
2009 BW2
5.154
90
(2009 BO5)
7
484
null
34
7.6
2009 BO5
11.104
266
528807 (2009 BL71)
0
24,468
22.72
300
67
528807
8.914
306
(2009 BF58)
7
37
null
27
6
2009 BF58
11.648
282
(2009 BG)
7
7,281
23.76
S
62
14
2009 BG
9.581
314
(2013 CN118)
8
15,891
23.18
S
63
14
2013 CN118
9.805
330
End of preview. Expand in Data Studio

NASA NHATS Near-Earth Accessible Asteroids

Rosetta spacecraft approaching Comet 67P/Churyumov-Gerasimenko

Credit: NASA/ESA

Part of a dataset collection on Hugging Face.

Dataset description

Near-Earth asteroids accessible for human space flight missions, from NASA JPL's NHATS study. Includes delta-v requirements and trajectory counts.

The NHATS study identifies near-Earth asteroids that could be reached by crewed spacecraft with relatively low delta-v (velocity change) requirements. These are potential targets for human exploration missions, sample return, and in-situ resource utilisation (ISRU).

Each asteroid in this dataset has at least one viable round-trip trajectory with total delta-v under 12 km/s, total mission duration under 450 days, and stay time of at least 8 days. The dataset is continuously updated as new asteroids are discovered and orbits are refined.

The delta-v requirement is the single most important metric for mission feasibility in space exploration. Unlike terrestrial travel where distance dominates cost, spaceflight cost scales with the velocity change needed to match orbits with a target. A round-trip delta-v under 6 km/s -- comparable to what is needed to reach the lunar surface and return -- makes an asteroid reachable with existing or near-term propulsion technology. The most accessible targets in this dataset have delta-v requirements below 5 km/s, making them energetically easier to reach than the Moon despite being millions of kilometers away.

Mission duration and the number of viable trajectories provide complementary selection criteria. A target with thousands of viable trajectories offers scheduling flexibility -- crucial for mission planning that must account for launch window constraints, spacecraft readiness, and orbital mechanics.

These asteroids are also prime candidates for in-situ resource utilization (ISRU) -- extracting water, metals, and volatiles from asteroid material to support deep-space operations. The combination of low delta-v accessibility and potential resource richness makes NHATS targets central to long-term plans for a sustained human presence beyond low Earth orbit.

This dataset is suitable for tabular regression tasks.

Schema

Column Type Description Sample Null %
full_name str Full formatted name/designation including any IAU proper name (2010 PS66) 0.0%
orbit_condition_code int64 MPC orbit uncertainty metric (0-9); 0 = well-determined multi-opposition orbit, 9 = very poorly constrained single-opposition arc; affects reliability of accessibility predictions 6 0.0%
n_viable_trajectories int64 Total number of viable round-trip trajectory opportunities found by NHATS, counting all launch dates and mission profiles; higher = more scheduling flexibility 9060 0.0%
observation_magnitude float64 Observed visual magnitude at the time of discovery or most recent apparition; null when not available; fainter (larger) values indicate smaller or more distant objects 23.69 40.9%
obs_flag str Observation flag from NHATS indicating whether the object is currently observable or has upcoming observing opportunities S 0.2%
max_diameter_m float64 Estimated upper bound on effective diameter in meters, derived from absolute magnitude H and assumed minimum albedo; null when H magnitude is unavailable 73.0 0.0%
min_diameter_m float64 Estimated lower bound on effective diameter in meters, derived from absolute magnitude H and assumed maximum albedo; null when H magnitude is unavailable 16.0 0.0%
designation str Primary MPC asteroid designation (e.g., '2021 PH27', '1999 AO10') 2010 PS66 0.0%
min_delta_v_kms float64 Minimum total delta-v (Earth departure + outbound transfer + return) for any viable round-trip trajectory in km/s; <6 km/s = energetically comparable to reaching the lunar surface; NHATS search limit is 12 km/s 10.27 0.0%
min_mission_duration_days int64 Minimum total round-trip mission duration in days across all viable trajectories; NHATS search limit is 450 days; shorter durations preferred for crewed missions due to life support and radiation constraints 210 0.0%

Quick stats

  • 7,047 accessible asteroids
  • Mean minimum delta-v: 9.04 km/s
  • Lowest delta-v target: 3.39 km/s
  • 710 targets with delta-v < 6 km/s

Usage

from datasets import load_dataset

ds = load_dataset("juliensimon/nhats-accessible-asteroids", split="train")
df = ds.to_pandas()
from datasets import load_dataset

ds = load_dataset("juliensimon/nhats-accessible-asteroids", split="train")
df = ds.to_pandas()

# Easiest targets to reach
easy = df.nsmallest(20, "min_delta_v_kms")
print(easy[["designation", "min_delta_v_kms", "min_mission_duration_days", "n_viable_trajectories"]])

# Targets with many trajectory options
flexible = df.nlargest(20, "n_viable_trajectories")
print(flexible[["designation", "n_viable_trajectories", "min_delta_v_kms"]])

# Delta-v distribution
import matplotlib.pyplot as plt
fig, ax = plt.subplots(figsize=(10, 5))
ax.hist(df["min_delta_v_kms"].dropna(), bins=50)
ax.set_xlabel("Min delta-v (km/s)")
ax.set_ylabel("Count")
ax.set_title("NHATS Asteroid Delta-v Distribution")
plt.show()

Data source

https://cneos.jpl.nasa.gov/nhats/

If you find this dataset useful, please consider giving it a like on Hugging Face. It helps others discover it.

About the author

Created by Julien Simon — AI Operating Partner at Fortino Capital. Part of the Space Datasets collection.

Citation

@dataset{nhats_accessible_asteroids,
  title = {NASA NHATS Near-Earth Accessible Asteroids},
  author = {juliensimon},
  year = {2026},
  url = {https://huggingface.co/datasets/juliensimon/nhats-accessible-asteroids},
  publisher = {Hugging Face}
}

License

CC-BY-4.0

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