Michigan test archive

1999 Michigan State Police Patrol Vehicle Test

The Crown Victoria becomes the Police Interceptor, a Camaro runs 159 again, and the special-service trucks go to the back of the book.

This page is built from the complete report rather than a summary bulletin, which means it carries every individual lap by every driver, every one of the twelve braking stops, the quarter-mile times, and the department’s scoring formula written out step by step. Thirteen vehicles were evaluated on September 19–21, 1998 — acceleration, top speed and braking at the Chrysler Proving Grounds at Chelsea, dynamics at Michigan International Speedway.

Three things changed permanently this year. The first is a name: Ford’s entry is no longer listed as a Crown Victoria but as the Police Interceptor, sales code P71 — 215 horsepower, 3.55 gears, and a 139.1-foot stop. The second is a formal split. Michigan wrote down the difference between a police-package vehicle, engineered for the full spectrum of patrol work including pursuit, and a special-service vehicle that is not, and it moved three vehicles — a four-wheel-drive Tahoe, a four-wheel-drive Expedition and a two-wheel-drive Explorer — into an appendix stamped with the warning that they are not engineered for high-speed or pursuit driving.

The third is on the individual test sheets: the acceleration requirements are set by class. A police sedan had to reach 60 in 10.0 seconds, a Camaro in 7.8, a Tahoe in 11.0. That is not new — the 1996 sheets already hold the Camaro to 7.8 and the Cherokee and Explorer to 12.3 — but the sport-utility bar has tightened, from 12.3 to 11.0.

And the fastest cars finally got room to run. Moved off the speedway and onto Chrysler’s proving ground, both Camaros recorded 159 mph — level with the 1996 automatic — with the 6-speed car crossing the quarter-mile at 100.50 mph in 14.60 seconds.

The 1999 qualification bars, by class. Police sedans — the Police Interceptor, the Lumina and the Volvo S–70 — had to reach 60 mph within 10.0 seconds, 80 within 17.2 and 100 within 28.2. The Camaros were held to 7.8, 12.8 and 21.0. The Tahoe was allowed 11.0, 18.5 and 32.0; the Cherokees 11.0, 21.0 and 35.0. The Volvo V–70 wagon’s sheet lists no requirement at all. Every vehicle was also measured on the distance needed to reach 110 and 120 mph, and braking became far more demanding: twelve measured 60-to-0 impending-skid stops in two phases of six, each phase preceded by two 90-to-0 heat-up decelerations and separated by a four-minute heat soak.

Police package — acceleration, top speed and braking

Source: 1999 Model Year Patrol Vehicle Testing, NCJ 173937. Acceleration is the average of four runs, two northbound and two southbound. ** = vehicle equipped with an electronic speed limiter. Braking is the average of twelve 60-to-0 impending-skid stops; the stopping distance is computed from that average. All vehicles had anti-lock brakes. All cars ran with a clean roof — no lightbar, no A-pillar spotlights — so in-service performance would be lower.
Vehicle0–60 (s)0–100 (s)Top speed110 in120 in¼ mileBrakes (ft/s²)60–0 (ft)
Chevrolet Camaro (6-speed)6.1214.461590.34 mi0.49 mi14.60 @ 100.50
Chevrolet Camaro (automatic)6.3215.181590.36 mi0.48 mi14.71 @ 98.4027.78139.4
Volvo S–70T5 Sedan8.8621.301460.51 mi0.72 mi16.89 @ 89.0024.50158.0
Volvo V–70T5 Wagon9.2422.371400.56 mi0.82 mi17.18 @ 87.8824.49158.1
Ford Police Interceptor8.5525.33129 **0.80 mi1.44 mi16.63 @ 84.1327.83139.1
Chevrolet Lumina9.3226.71124 **0.73 mi2.09 mi17.14 @ 83.2323.53164.6
Chevrolet Tahoe (2WD)10.1632.001210.98 mi4.51 mi17.63 @ 80.0023.20166.9
Jeep Cherokee (2WD)10.0932.77111 **1.09 minot reached17.64 @ 78.5824.17160.2
Jeep Cherokee (4WD)10.8836.66111 **1.36 minot reached18.14 @ 76.3322.34173.3
Ford Police Interceptor (CNG)12.4038.21106 **not reachednot reached18.97 @ 76.2326.64145.4

Gold row: 159 mph, level with the 1996 automatic’s 159 — and a measured figure again, after the 1998 test had held its fastest cars to 150 because the track ran out of room. The 6-speed reached 110 mph in a third of a mile. Both Camaros cleared their own tightened 7.8-second gate by well over a second.

Two near-misses are worth the ink. The Lumina reached 120 mph in 2.09 miles against a two-mile requirement — nine hundredths of a mile short, roughly 475 feet. And the Tahoe’s 0–100 of 32.00 seconds is its class requirement of 32.0 seconds, met exactly, to the hundredth. It then needed 4.51 miles to reach 120. The four-wheel-drive Cherokee, by contrast, missed its own 35.0-second 0–100 bar outright, at 36.66. The muted row is the natural-gas Interceptor: 178 horsepower against the gasoline car’s 215, a 2.73 axle against 3.55, and 291 pounds heavier. It never reached 110 mph at all.

And note what braking now rewards. The Police Interceptor stopped in 139.1 feet — three tenths of a foot better than the Camaro, and the best in the test — while the four-wheel-drive Cherokee needed 173.3 and faded visibly between phases, from 23.16 ft/s² down to 21.52.

Complete acceleration ladders — every 10-mph increment
Averages of four runs, in seconds, from the report’s summary tables.
0 to…Camaro 6-spdCamaro autoVolvo S–70Volvo V–70InterceptorLuminaTahoe 2WDCherokee 2WDCherokee 4WDInterceptor CNG
20 mph1.721.642.562.651.732.152.102.062.192.59
30 mph2.602.583.864.032.933.383.503.473.714.48
40 mph3.543.575.235.474.564.855.175.035.386.44
50 mph4.804.816.837.196.346.877.477.428.048.85
60 mph6.126.328.869.248.559.3210.1610.0910.8812.40
70 mph7.817.9311.1311.5511.3912.1013.3213.2614.5316.17
80 mph9.659.8013.6714.3014.9615.6917.6218.4020.3820.85
90 mph11.7512.3617.2717.9619.2720.5523.9524.5827.3127.41
100 mph14.4615.1821.3022.3725.3326.7132.0032.7736.6638.21

The Volvo sedan is the interesting shape here. It is slower off the line than the Police Interceptor to 60 mph — 8.86 against 8.55 — and then beats it to 100 by four full seconds. A turbocharged 2.3-liter Volvo with 236 horsepower against a 4.6-liter V8 with 215.

Vehicle dynamics — every lap, every driver

Four drivers — Sergeants Stevens, Clark, Rothermel and Pokora — ran each car over the 1.635-mile road course at Michigan International Speedway, sixteen timed laps per vehicle.

Lap times in minutes, seconds and hundredths, as printed. The overall average for each vehicle is the average of its fastest 12 laps — arithmetic confirmed against every vehicle in this table.
VehicleDriverLap 1Lap 2Lap 3Lap 4
Chevrolet Camaro (automatic)overall average 1:20.37
Stevens1:20.571:21.491:21.751:21.39
Clark1:20.581:20.261:19.991:19.99
Rothermel1:19.961:19.601:20.741:19.84
Pokora1:20.771:20.941:21.211:22.10
Chevrolet Camaro (6-speed manual)overall average 1:21.65
Stevens1:22.201:22.701:21.481:22.81
Clark1:20.601:21.761:21.191:21.27
Rothermel1:21.111:22.221:21.541:21.91
Pokora1:22.321:22.251:23.611:23.85
Volvo S–70T5 Sedanoverall average 1:24.29
Stevens1:24.961:24.111:24.691:24.74
Clark1:24.431:24.341:23.961:24.44
Rothermel1:24.361:24.001:23.921:23.53
Pokora1:25.961:26.101:25.681:25.44
Volvo V–70T5 Wagonoverall average 1:25.28
Stevens1:25.101:25.571:26.151:26.15
Clark1:25.431:24.651:24.961:25.51
Rothermel1:24.351:25.791:25.311:26.19
Pokora1:25.391:25.511:26.091:25.79
Ford Police Interceptoroverall average 1:25.87
Stevens1:26.911:26.561:26.711:26.56
Clark1:25.221:25.361:25.481:25.32
Rothermel1:25.191:25.511:25.851:25.76
Pokora1:27.241:27.711:28.141:27.51
Jeep Cherokee (2WD)overall average 1:26.54
Stevens1:27.271:27.211:27.091:26.69
Clark1:26.691:26.261:26.671:26.48
Rothermel1:25.591:25.951:26.481:26.30
Pokora1:27.431:28.251:27.081:27.92
Chevrolet Luminaoverall average 1:26.80
Stevens1:27.701:26.931:27.701:27.23
Clark1:26.391:26.551:26.791:26.56
Rothermel1:26.111:26.341:26.871:26.38
Pokora1:27.841:28.601:28.381:27.95
Chevrolet Tahoe (2WD)overall average 1:27.57
Stevens1:27.951:27.751:27.421:28.23
Clark1:27.411:27.781:27.451:27.77
Rothermel1:27.451:27.301:27.061:27.26
Pokora1:30.201:29.371:29.981:30.35
Jeep Cherokee (4WD)overall average 1:27.62
Stevens1:28.111:28.731:28.271:28.03
Clark1:27.191:27.721:27.121:26.73
Rothermel1:27.601:26.731:27.621:27.59
Pokora1:29.221:28.971:29.991:29.30
Ford Police Interceptor (CNG)overall average 1:30.58
Stevens1:32.381:32.801:32.011:32.25
Clark1:29.981:29.621:30.471:30.28
Rothermel1:30.331:30.021:30.361:30.13
Pokora1:31.181:32.811:31.271:31.34

A note this data settles. The report’s methodology section says the score is the average of the fastest of at least nine timed laps, while its tables have long carried a footnote saying the fastest twelve — a contradiction visible in the bulletins going back years. With the individual laps now in hand, the arithmetic answers it: every published average in this table is the mean of that vehicle’s fastest twelve laps, exact to the hundredth in all ten cases. The footnote is right; the methodology paragraph is loose.

The human variable is also visible. Across every single vehicle, one driver is consistently the slowest and another consistently among the quickest — the spread between them running from about a second and a half in the Volvos to nearly three seconds in the Tahoe. Which is exactly why the program averages twelve laps from at least three drivers rather than printing a best lap.

What went wrong during testing — the report’s own disclosures

The 1999 book is unusually candid about its own conduct, and every item below is disclosed in the report’s preface rather than dug out of the data.

The Volvo sedan was retested, and scored on the worse run. The manufacturer felt the S–70 was not running correctly; the test driver and observer agreed. Volvo asked for a retest, it was granted, and the second set of results came out worse than the first. Michigan used the second set for the score anyway.

The Camaro ate its brakes. The pads and rotors on the automatic Camaro required replacement partway through the dynamics session, after two of the four drivers had completed their practice and timed runs.

The natural-gas car ran out of fuel. The CNG Police Interceptor needed refueling after three drivers had finished at the speedway — unsurprising for a car carrying four tanks holding the equivalent of ten gallons against the gasoline car’s nineteen.

Two Fords arrived with green brakes. The Explorer’s and Expedition’s brakes had not been burnished by the manufacturer before testing, so the report advises that their Phase II figures — taken after the first six stops had bedded things in — are the more representative numbers.

Only one Camaro was braked. Because the two cars have identical braking systems and nearly identical test weight, only the automatic was submitted for brake testing. This also explains the missing Camaro brake row in the 1997 and 1998 bulletins, which never gave a reason.

Other conditions worth recording: every vehicle ran with a clean roof, no lightbar and no A-pillar spotlights, and the report says plainly that once the emergency equipment is installed, performance will be somewhat lower than reported. The Jeeps were driven in “3” rather than overdrive; the 6-speed Camaro made its top-speed run in fifth. The Volvos’ traction control was switched off for dynamics and their transmissions were set to “S” for Sport.

Ergonomics and communications

Source: NCJ 173937. Totals over 29 attributes graded 1 to 10 by at least four officers, with the installation and communications portion assessed by the MSP Communications Division and Vehicle and Travel Services. City fuel economy is the EPA estimate to the nearest tenth, which is the figure actually scored.
VehicleErgonomics & communicationsEPA city (mpg)
Chevrolet Tahoe (2WD)222.0713.1
Ford Police Interceptor217.8715.9
Ford Police Interceptor (CNG)215.2314.3
Chevrolet Lumina189.7918.1
Volvo S–70T5 Sedan182.6418.4
Volvo V–70T5 Wagon181.6118.4
Jeep Cherokee176.5915.9 (2WD) / 15.8 (4WD)
Chevrolet Camaro155.4316.8 (auto) / 18.5 (6-speed)

Because the full report prints all 29 line items rather than just the totals, two scores stand out that a summary would have hidden. The Jeep Cherokee scored 0.50 out of 10 for its power window switch and 0.89 for its automatic door lock switch — a fair indication that the officers were scoring equipment the vehicle did not really have. The Camaro, meanwhile, took 1.60 for rear-seat legroom and 1.80 for rear-seat entry and exit, which is what a 26.8-inch rear compartment earns from people who have to put someone in it.

The Tahoe won this category for the third consecutive year, but the gap has closed hard: 222.07 against the Police Interceptor’s 217.87, where a year earlier it had been nineteen points clear of the Crown Victoria.

How Michigan actually turns test data into a purchase

The full report prints the scoring method in seven steps, and it is worth understanding because it explains every “winner” on every page of this archive.

Raw scores are recorded in each of the six categories in their own units — seconds, ft/s², miles per hour, points, miles per gallon. In each category the best-scoring vehicle becomes the benchmark and receives a deviation factor of zero. Every other vehicle’s deviation factor is the absolute difference between its score and the best score, divided by the best score. That factor is multiplied by the category weight — dynamics 30, acceleration 20, braking 20, top speed 15, ergonomics and communications 10, fuel economy 5 — to give a weighted category score, and the six are added together into a total weighted score. Lower is better: a perfect vehicle, best in all six categories, would score zero.

Then comes the part that makes these books a purchasing instrument rather than a magazine test. Michigan takes one percent of the lowest bid price received as its bid adjustment figure, multiplies each vehicle’s total weighted score by that figure, and adds the result to that vehicle’s actual bid. The vehicle with the lowest adjusted bid price wins — and the state then pays the real bid price, not the adjusted one. Performance doesn’t win the contract on its own; it buys a discount against the sticker.

The report illustrates this with worked examples using hypothetical figures rather than the year’s real bids, so no bid prices are quoted here. The 1999 winner and the actual bid table are not in the published report.

The special-service vehicles

Three vehicles were moved out of the competitive evaluation entirely and into an appendix headed with a warning in capitals that they are not engineered for high-speed or pursuit applications: a four-wheel-drive Chevrolet Tahoe at 5,403 pounds, a four-wheel-drive Ford Expedition at 5,650 pounds, and a two-wheel-drive Ford Explorer with the 211-horsepower 4.0-liter. They were evaluated on acceleration, top speed, braking, fuel economy and ergonomics — but not on vehicle dynamics, because that test simulates a pursuit.

Michigan’s framing of the split is worth reading as policy rather than paperwork. The report acknowledges the argument over what counts as a police package will be with the industry for some time, states that vehicles capable of the full range of police work up to and including pursuit have earned the name, and says that manufacturers offer special-service vehicles for agencies that need cargo capacity or other attributes without pursuit capability. A year earlier Ford had indicated that its trucks were not intended as pursuit vehicles, and they had not been lap-timed. Now Michigan had built that distinction into the structure of the book.

Source: 1999 Model Year Patrol Vehicle Testing, Appendix II, p. 79 — the special-service summary. Same procedures as the police-package vehicles, without the road course. ** = vehicle equipped with an electronic speed limiter. The report notes that the Explorer’s and Expedition’s brakes had not been burnished before testing, so their Phase II figures are the more representative.
Vehicle0–60 (s)0–100 (s)Top speed¼ mileBrakes (ft/s²)60–0 (ft)
Chevrolet Tahoe (4WD)11.06not reached97 **18.24 @ 76.5020.93185.0
Ford Expedition (4WD)11.0438.26107 **18.10 @ 77.9322.85169.4
Ford Explorer (2WD)9.88not reached99 **17.55 @ 80.8021.04184.1

All three carry the limiter mark, and none reached 110 mph. The four-wheel-drive Tahoe’s computed 185.0-foot stop and the Explorer’s 184.1 are the two longest in the books held from 1995 on; the Expedition’s Phase II rate of 23.07 against a Phase I of 22.64 is the unburnished-brake effect the report describes. Ergonomics and communications: Tahoe 4WD 222.05, Expedition 220.19, Explorer 202.52.

Notes on this page’s source

Unlike most pages in this archive, this one is built from the full report — 1999 Model Year Patrol Vehicle Testing, NCJ 173937, published February 1999 — and not from the four-page NLECTC bulletin, which is a separate document (NCJ 206106, October 1998). Every figure above comes from the book’s own tables.

The report’s preface states that 1999 was the program’s 23rd year of testing, which places the first evaluation in 1976 — while the NIJ’s own program description says Michigan has evaluated patrol vehicles every fall since 1975. That one-year gap is now settled, and not in the NIJ’s favour. The 1996 report calls itself the 20th annual evaluation, the 2001 report the 25th year, and the 1980 report’s preface states outright that the programme “was developed in 1976 by the Policy Development and Evaluation Section of the Michigan Department of State Police, in cooperation with the Purchasing Division of the Michigan Department of Management and Budget.” Four departmental statements, one of them written only three years after the event, all agreeing. The federal summary is the outlier.

That 1980 sentence is worth reading twice for a second reason. The programme was created with the state’s purchasing division, not by the police alone — which is where the bid adjustment comes from, and why these books are procurement documents rather than road tests.

Not reproduced here: the individual vehicle specification sheets, the per-stop braking sheets for all twelve stops of each car, the 1998-to-1999 comparison charts in Appendix I, and the acceleration ladders and line-item ergonomics for the three special-service vehicles in Appendix II. Those are in the linked original.

What 1999 settled

Michigan admitted that “police car” had stopped being one thing. The acceleration bar had been set by class since at least the 1996 book — a pony car held to 7.8 seconds, a sedan to 10.0, a sport utility now to 11.0, and a Volvo wagon to nothing at all. What was new was that the department drew a hard line around the word itself: pursuit-capable vehicles are police package, everything else is special service and goes in the back of the book with a warning label.

And the two oldest ideas in the archive finished first at what they each did. A Camaro ran 159 mph, matching the 1996 car, on a proving ground long enough to let it try. And a big rear-drive Ford sedan — newly renamed Police Interceptor, the name it would carry for the rest of its life — stopped from 60 mph in 139.1 feet, shorter than the Camaro, shorter than the Volvos, shortest in the test.

Source. U.S. Department of Justice, Office of Justice Programs, National Institute of Justice, National Law Enforcement and Corrections Technology Center: 1999 Model Year Patrol Vehicle Testing, February 1999, NCJ 173937. Prepared by the Michigan State Police Training Division with Independent Testing & Consulting, Inc., Eaton Rapids, Michigan; testing manager Lance Miller; program contact Sgt. David Halliday, MSP Precision Driving Unit. Vehicles tested September 19–21, 1998. All figures transcribed directly from the report. Read the record and download at the National Institute of Justice, and see how these videos are researched.